{"id":1077,"date":"2022-05-31T22:18:03","date_gmt":"2022-05-31T22:18:03","guid":{"rendered":"http:\/\/www.elsi.jp\/research\/publications\/list_2021\/"},"modified":"2022-06-02T09:18:04","modified_gmt":"2022-06-02T09:18:04","slug":"list_2021","status":"publish","type":"page","link":"https:\/\/www.elsi.jp\/en\/research\/publications\/list_2021\/","title":{"rendered":"Publications in 2021"},"content":{"rendered":"\r\n<dl>\n    <dt>Adam, Zachary R.; Fahrenbach, Albert C.; Jacobson, Sofia M.; Kacar, Betul; Zubarev, Dmitry Yu<\/dt>\n    <dd>&#8220;Radiolysis generates a complex organosynthetic chemical network&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Scientific Reports<\/em>, <strong>11<\/strong>, 1743, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41598-021-81293-6\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Akil, Caner; Kitaoku, Yoshihito; Tran, Linh T.; Liebl, David; Choe, Han; Muengsaen, Duangkamon; Suginta, Wipa; Schulte, Albert; Robinson, Robert C.<\/dt>\n    <dd>&#8220;Mythical origins of the actin cytoskeleton&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Current Opinion in Cell Biology<\/em>, <strong>68<\/strong>, 55-55, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.ceb.2020.08.011\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Arakawa, Sota; Hyodo, Ryuki; Shoji, Daigo; Genda, Hidenori<\/dt>\n    <dd>&#8220;Tidal Evolution of the Eccentric Moon around Dwarf Planet (225088) Gonggong&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomical Journal<\/em>, <strong>162<\/strong>, 226, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-3881\/ac1f91\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ballmer, Maxim D.; Noack, Lena<\/dt>\n    <dd>&#8220;The Diversity of Exoplanets: From Interior Dynamics to Surface Expressions&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Elements<\/em>, <strong>17<\/strong>, 245-245, 2021, <a href=\"http:\/\/doi.org\/10.2138\/gselements.17.4.245\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Barucci, Maria Antonietta; Reess, Jean-Michel; Bernardi, Pernelle; Doressoundiram, Alain; Fornasier, Sonia; Le Du, Michel; Iwata, Takahiro; Nakagawa, Hiromu; Nakamura, Tomoki; Andre, Yves; Aoki, Shohei; Arai, Takehiko; Baldit, Elisa; Beck, Pierre; Buey, Jean-Tristan; Canalias, Elisabet; Castelnau, Matthieu; Charnoz, Sebastien; Chaussidon, Marc; Chapron, Frederic; Ciarletti, Valerie; Delbo, Marco; Dubois, Bruno; Gauffre, Stephane; Gautier, Thomas; Genda, Hidenori; Hassen-Khodja, Rafik; Hervet, Gilles; Hyodo, Ryuki; Imbert, Christian; Imamura, Takeshi; Jorda, Laurent; Kameda, Shingo; Kouach, Driss; Kouyama, Toru; Kuroda, Takeshi; Kurokawa, Hiroyuki; Lapaw, Laurent; Lasue, Jeremie; Le Deit, Laetitia; Ledot, Aurelien; Leyrat, Cedric; Le Ruyet, Bertrand; Matsuoka, Moe; Merlin, Frederic; Miyamoto, Hideaki; Moynier, Frederic; Napoleon Nguyen Tuong; Ogohara, Kazunori; Osawa, Takahito; Parisot, Jerome; Pistre, Laurie; Quertier, Benjamin; Raymond, Sean N.; Rocard, Francis; Sakanoi, Takeshi; Sato, Takao M.; Sawyer, Eric; Tache, Feriel; Tremolieres, Sylvain; Tsuchiya, Fuminori; Vernazza, Pierre; Zeganadin, Didier<\/dt>\n    <dd>&#8220;MIRS: an imaging spectrometer for the MMX mission&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Earth Planets and Space<\/em>, <strong>73<\/strong>, 211, 2021, <a href=\"http:\/\/doi.org\/10.1186\/s40623-021-01423-2\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Bekaert, David, V; Gazel, Esteban; Turner, Stephen; Behn, Mark D.; de Moor, J. Marten; Zahirovic, Sabin; Manea, Vlad C.; Hoernle, Kaj; Fischer, Tobias P.; Hammerstrom, Alexander; Seltzer, Alan M.; Kulongoski, Justin T.; Patel, Bina S.; Schrenk, Matthew O.; Halldorsson, Saemundur A.; Nakagawa, Mayuko; Ramirez, Carlos J.; Krantz, John A.; Yucel, Mustafa; Ballentine, Christopher J.; Giovannelli, Donato; Lloyd, Karen G.; Barry, Peter H.<\/dt>\n    <dd>&#8220;High <sup>3<\/sup>He\/<sup>4<\/sup>He in central Panama reveals a distal connection to the Galapagos plume&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Proceedings of the National Academy of Sciences of the United States of America<\/em>, <strong>118<\/strong>, e2110997118, 2021, <a href=\"http:\/\/doi.org\/10.1073\/pnas.2110997118\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Bernasconi, S. M.; Daeron, M.; Bergmann, K. D.; Bonifacie, M.; Meckler, A. N.; Affek, H. P.; Anderson, N.; Bajnai, D.; Barkan, E.; Beverly, E.; Blamart, D.; Burgener, L.; Calmels, D.; Chaduteau, C.; Clog, M.; Davidheiser-Kroll, B.; Davies, A.; Dux, F.; Eiler, J.; Elliott, B.; Fetrow, A. C.; Fiebig, J.; Goldberg, S.; Hermoso, M.; Huntington, K. W.; Hyland, E.; Ingalls, M.; Jaggi, M.; John, C. M.; Jost, A. B.; Katz, S.; Kelson, J.; Kluge, T.; Kocken, I. J.; Laskar, A.; Leutert, T. J.; Liang, D.; Lucarelli, J.; Mackey, T. J.; Mangenot, X.; Meinicke, N.; Modestou, S. E.; Mueller, I. A.; Murray, S.; Neary, A.; Packard, N.; Passey, B. H.; Pelletier, E.; Petersen, S.; Piasecki, A.; Schauer, A.; Snell, K. E.; Swart, P. K.; Tripati, A.; Upadhyay, D.; Vennemann, T.; Winkelstern, I.; Yarian, D.; Yoshida, N.; Zhang, N.; Ziegler, M.<\/dt>\n    <dd>&#8220;InterCarb: A Community Effort to Improve Interlaboratory Standardization of the Carbonate Clumped Isotope Thermometer Using Carbonate Standards&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochemistry Geophysics Geosystems<\/em>, <strong>22<\/strong>, e2020GC009588, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020GC009588\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Biasi, Joseph; Kirschvink, Joseph L.; Fu, Roger R.<\/dt>\n    <dd>&#8220;Characterizing the Geomagnetic Field at High Southern Latitudes: Evidence From the Antarctic Peninsula&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Solid Earth<\/em>, <strong>126<\/strong>, e2021JB023273, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021JB023273\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Biehl, Martin; Witkowski, Olaf<\/dt>\n    <dd>&#8220;Investigating Transformational Complexity: Counting Functions a Region Induces on Another in Elementary Cellular Automata&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Complexity<\/em>, <strong>2021<\/strong>, 7501405, 2021, <a href=\"http:\/\/doi.org\/10.1155\/2021\/7501405\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Bonati, I; Ramirez, R. M.<\/dt>\n    <dd>&#8220;The influence of surface CO<sub>2<\/sub> condensation on the evolution of warm and cold rocky planets orbiting Sun-like stars&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Monthly Notices of the Royal Astronomical Society<\/em>, <strong>504<\/strong>, 1029-1029, 2021, <a href=\"http:\/\/doi.org\/10.1093\/mnras\/stab891\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Bonati, Irene; Lasbleis, Marine; Noack, Lena<\/dt>\n    <dd>&#8220;Structure and Thermal Evolution of Exoplanetary Cores&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Planets<\/em>, <strong>126<\/strong>, e2020JE006724, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020JE006724\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Borin, Joshua M.; Avrani, Sarit; Barrick, Jeffrey E.; Petrie, Katherine L.; Meyer, Justin R.<\/dt>\n    <dd>&#8220;Coevolutionary phage training leads to greater bacterial suppression and delays the evolution of phage resistance&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Proceedings of the National Academy of Sciences of the United States of America<\/em>, <strong>118<\/strong>, e2104592118, 2021, <a href=\"http:\/\/doi.org\/10.1073\/pnas.2104592118\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Brasser, R.; Mojzsis, S. J.; Werner, S. C.; Abramov, O.<\/dt>\n    <dd>&#8220;A new estimate for the age of highly-siderophile element retention in the lunar mantle from late accretion&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>361<\/strong>, 114389, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2021.114389\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Butch, Christopher J.; Meringer, Markus; Gagnon, Jean-Sebastien; Cleaves, H. James, II<\/dt>\n    <dd>&#8220;Open questions in understanding life&#8217;s origins&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Communications Chemistry<\/em>, <strong>4<\/strong>, 11, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s42004-021-00448-8\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fabbris, G.; Thorn, A.; Bi, W.; Abramchuk, M.; Bahrami, F.; Kim, J. H.; Shinmei, T.; Irifune, T.; Tafti, F.; Kolmogorov, A. N.; Haskel, D.<\/dt>\n    <dd>&#8220;Complex pressure-temperature structural phase diagram of the honeycomb iridate Cu<sub>2<\/sub>IrO<sub>3<\/sub>&#8220;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physical Review B<\/em>, <strong>104<\/strong>, 14102, 2021, <a href=\"http:\/\/doi.org\/10.1103\/PhysRevB.104.014102\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Frost, Daniel A.; Lasbleis, Marine; Chandler, Brian; Romanowicz, Barbara<\/dt>\n    <dd>&#8220;Dynamic history of the inner core constrained by seismic anisotropy&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Geoscience<\/em>, <strong>14<\/strong>, 531, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41561-021-00761-w\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fujii, Michiko S.; Saitoh, Takayuki R.; Hirai, Yutaka; Wang, Long<\/dt>\n    <dd>&#8220;SIRIUS project. III. Star-by-star simulations of star cluster formation using a direct <em>N<\/em>-body integrator with stellar feedback&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Publications of the Astronomical Society of Japan<\/em>, <strong>73<\/strong>, 1074-1074, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pasj\/psab061\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fujii, Michiko S.; Saitoh, Takayuki R.; Wang, Long; Hirai, Yutaka<\/dt>\n    <dd>&#8220;SIRIUS project. II. A new tree-direct hybrid code for smoothed particle hydrodynamics\/<em>N<\/em>-body simulations of star clusters&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Publications of the Astronomical Society of Japan<\/em>, <strong>73<\/strong>, 1057-1057, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pasj\/psab037\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fujii, Yuka; Matsuo, Taro<\/dt>\n    <dd>&#8220;Detecting Atmospheric Molecules of Nontransiting Temperate Terrestrial Exoplanets Using High-resolution Spectroscopy in the Mid-infrared Domain&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomical Journal<\/em>, <strong>161<\/strong>, 180, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-3881\/abe129\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fukui, A.; Korth, J.; Livingston, J. H.; Twicken, J. D.; Zapatero Osorio, M. R.; Jenkins, J. M.; Mori, M.; Murgas, F.; Ogihara, M.; Narita, N.; Palle, E.; Stassun, K. G.; Nowak, G.; Ciardi, D. R.; Alvarez-Hernandez, L.; Bejar, V. J. S.; Casasayas-Barris, N.; Crouzet, N.; de Leon, J. P.; Esparza-Borges, E.; Hidalgo Soto, D.; Isogai, K.; Kawauchi, K.; Klagyivik, P.; Kodama, T.; Kurita, S.; Kusakabe, N.; Luque, R.; Madrigal-Aguado, A.; Montanes Rodriguez, P.; Morello, G.; Nishiumi, T.; Orell-Miquel, J.; Oshagh, M.; Parviainen, H.; Sanchez-Benavente, M.; Stangret, M.; Terada, Y.; Watanabe, N.; Chen, G.; Tamura, M.; Bosch-Cabot, P.; Bowen, M.; Eastridge, K.; Freour, L.; Gonzales, E.; Guerra, P.; Jundiyeh, Y.; Kim, T. K.; Kroer, L., V; Levine, A. M.; Morgan, E. H.; Reefe, M.; Tronsgaard, R.; Wedderkopp, C. K.; Wittrock, J.; Collins, K. A.; Hesse, K.; Latham, D. W.; Ricker, G. R.; Seager, S.; Vanderspek, R.; Winn, J.; Bachelet, E.; Bowman, M.; McCully, C.; Daily, M.; Harbeck, D.; Volgenau, N. H.<\/dt>\n    <dd>&#8220;TOI-1749: an M dwarf with a Trio of Planets including a Near-resonant Pair&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomical Journal<\/em>, <strong>162<\/strong>, 167, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-3881\/ac13a5\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Fullerton, Katherine M.; Schrenk, Matthew O.; Yucel, Mustafa; Manini, Elena; Basili, Marco; Rogers, Timothy J.; Fattorini, Daniele; Di Carlo, Marta; D&#8217;Errico, Giuseppe; Regoli, Francesco; Nakagawa, Mayuko; Vetriani, Costantino; Smedile, Francesco; Ramirez, Carlos; Miller, Heather; Morrison, Shaunna M.; Buongiorno, Joy; Jessen, Gerdhard L.; Steen, Andrew D.; Martinez, Maria; de Moor, J. Maarten; Barry, Peter H.; Giovannelli, Donato; Lloyd, Karen G.<\/dt>\n    <dd>&#8220;Effect of tectonic processes on biosphere-geosphere feedbacks across a convergent margin&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Geoscience<\/em>, <strong>14<\/strong>, 301, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41561-021-00725-0\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Gastoldi, Lucia; Ward, Lewis M.; Nakagawa, Mayuko; Giordano, Mario; McGlynn, Shawn E.<\/dt>\n    <dd>&#8220;Changes in ATP Sulfurylase Activity in Response to Altered Cyanobacteria Growth Conditions&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Microbes and Environments<\/em>, <strong>36<\/strong>, ME20145, 2021, <a href=\"http:\/\/doi.org\/10.1264\/jsme2.ME20145\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Gilbert, Alexis<\/dt>\n    <dd>&#8220;The Organic Isotopologue Frontier&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Annual Review of Earth and Planetary Sciences, Vol 49, 2021<\/em>, <strong>49<\/strong>, 435-435, 2021, <a href=\"http:\/\/doi.org\/10.1146\/annurev-earth-071420-053134\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Giri, Chaitanya; Cleaves, Henderson James, II; Meringer, Markus; Chandru, Kuhan<\/dt>\n    <dd>&#8220;The Post-COVID-19 Era: Interdisciplinary Demands of Contagion Surveillance Mass Spectrometry for Future Pandemics&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Sustainability<\/em>, <strong>13<\/strong>, 7614, 2021, <a href=\"http:\/\/doi.org\/10.3390\/su13147614\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Giri, Chaitanya; Steele, Andrew; Fries, Marc<\/dt>\n    <dd>&#8220;Evidence for protosolar graphene in Allende and QUE 94366 CV3 meteorites&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Planetary and Space Science<\/em>, <strong>203<\/strong>, 105267, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.pss.2021.105267\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Goldman, Aaron D.; Kacar, Betul<\/dt>\n    <dd>&#8220;Cofactors are Remnants of Life&#8217;s Origin and Early Evolution&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Molecular Evolution<\/em>, <strong>89<\/strong>, 127-127, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s00239-020-09988-4\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Goto, Kosuke T.; Sekine, Yasuhito; Ito, Takashi; Suzuki, Katsuhiko; Anbar, Ariel D.; Gordon, Gwyneth W.; Harigane, Yumiko; Maruoka, Teruyuki; Shimoda, Gen; Kashiwabara, Teruhiko; Takaya, Yutaro; Nozaki, Tatsuo; Hein, James R.; Tetteh, George M.; Nyame, Frank K.; Kiyokawa, Shoichi<\/dt>\n    <dd>&#8220;Progressive ocean oxygenation at &sim; 2.2 Ga inferred from geochemistry and molybdenum isotopes of the Nsuta Mn deposit, Ghana&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Chemical Geology<\/em>, <strong>567<\/strong>, 120116, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.chemgeo.2021.120116\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Green, Theodore; Slotznick, Sarah P.; Jaqueto, Plinio; Raub, Timothy D.; Tohver, Eric; Playton, Ted E.; Haines, Peter W.; Kirschvink, Joseph L.; Hocking, Roger M.; Montgomery, Paul<\/dt>\n    <dd>&#8220;High-Resolution Late Devonian Magnetostratigraphy From the Canning Basin, Western Australia: A Re-Evaluation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Frontiers in Earth Science<\/em>, <strong>9<\/strong>, 757749, 2021, <a href=\"http:\/\/doi.org\/10.3389\/feart.2021.757749\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Guttenberg, Nicholas; Chen, Huan; Mochizuki, Tomohiro; Cleaves, H. James, II<\/dt>\n    <dd>&#8220;Classification of the Biogenicity of Complex Organic Mixtures for the Detection of Extraterrestrial Life&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Life (Basel)<\/em>, <strong>11<\/strong>, 234, 2021, <a href=\"http:\/\/doi.org\/10.3390\/life11030234\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hammerli, Johannes; Greber, Nicolas D.; Martin, Laure; Bouvier, Anne-Sophie; Kemp, Anthony I. S.; Fiorentini, Marco L.; Spangenberg, Jorge E.; Ueno, Yuichiro; Schaltegger, Urs<\/dt>\n    <dd>&#8220;Tracing sulfur sources in the crust via SIMS measurements of sulfur isotopes in apatite&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Chemical Geology<\/em>, <strong>579<\/strong>, 120242, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.chemgeo.2021.120242\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hasegawa, Masahiro; Hirose, Kei; Oka, Kenta; Ohishi, Yasuo<\/dt>\n    <dd>&#8220;Liquidus Phase Relations and Solid-Liquid Partitioning in the Fe-Si-C System Under Core Pressures&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geophysical Research Letters<\/em>, <strong>48<\/strong>, e2021GL092681, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021GL092681\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hattori, Shohei; Iizuka, Yoshinori; Alexander, Becky; Ishino, Sakiko; Fujita, Koji; Zhai, Shuting; Sherwen, Tomas; Oshima, Naga; Uemura, Ryu; Yamada, Akinori; Suzuki, Nozomi; Matoba, Sumito; Tsuruta, Asuka; Savarino, Joel; Yoshida, Naohiro<\/dt>\n    <dd>&#8220;Isotopic evidence for acidity-driven enhancement of sulfate formation after SO<sub>2<\/sub> emission control&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Science Advances<\/em>, <strong>7<\/strong>, eabd4610, 2021, <a href=\"http:\/\/doi.org\/10.1126\/sciadv.abd4610\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hirai, Yutaka; Fujii, Michiko S.; Saitoh, Takayuki R.<\/dt>\n    <dd>&#8220;SIRIUS project. I. Star formation models for star-by-star simulations of star clusters and galaxy formation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Publications of the Astronomical Society of Japan<\/em>, <strong>73<\/strong>, 1036-1036, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pasj\/psab038\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hirose, Kei; Wood, Bernard; Vocadlo, Lidunka<\/dt>\n    <dd>&#8220;Light elements in the Earth&#8217;s core&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Reviews Earth &amp; Environment<\/em>, <strong>2<\/strong>, 645-645, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s43017-021-00203-6\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hsiao, Tsun-Hsien; Chen, Yi-Lung; Meng, Menghsiao; Chuang, Meng-Rong; Horinouchi, Masae; Hayashi, Toshiaki; Wang, Po-Hsiang; Chiang, Yin-Ru<\/dt>\n    <dd>&#8220;Mechanistic and phylogenetic insights into actinobacteria-mediated oestrogen biodegradation in urban estuarine sediments&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Microbial Biotechnology<\/em>, <strong>14<\/strong>, 1212-1212, 2021, <a href=\"http:\/\/doi.org\/10.1111\/1751-7915.13798\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hyodo, Ryuki; Genda, Hidenori<\/dt>\n    <dd>&#8220;Erosion and Accretion by Cratering Impacts on Rocky and Icy Bodies&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal<\/em>, <strong>913<\/strong>, 77, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-4357\/abf6d8\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hyodo, Ryuki; Genda, Hidenori; Brasser, Ramon<\/dt>\n    <dd>&#8220;Modification of the composition and density of Mercury from late accretion&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>354<\/strong>, 114064, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2020.114064\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hyodo, Ryuki; Guillot, Tristan; Ida, Shigeru; Okuzumi, Satoshi; Youdin, Andrew N.<\/dt>\n    <dd>&#8220;Planetesimal formation around the snow line: II. Dust or pebbles?&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomy &amp; Astrophysics<\/em>, <strong>646<\/strong>, A14, 2021, <a href=\"http:\/\/doi.org\/10.1051\/0004-6361\/202039894\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Hyodo, Ryuki; Ida, Shigeru; Guillot, Tristan<\/dt>\n    <dd>&#8220;A no-drift runaway pile-up of pebbles in protoplanetary disks in which midplane turbulence increases with radius&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomy &amp; Astrophysics<\/em>, <strong>645<\/strong>, L9, 2021, <a href=\"http:\/\/doi.org\/10.1051\/0004-6361\/202040031\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ida, Shigeru; Guillot, Tristan; Hyodo, Ryuki; Okuzumi, Satoshi; Youdin, Andrew N.<\/dt>\n    <dd>&#8220;Planetesimal formation around the snow line: I. Monte Carlo simulations of silicate dust pile-up in a turbulent disk&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomy &amp; Astrophysics<\/em>, <strong>646<\/strong>, A13, 2021, <a href=\"http:\/\/doi.org\/10.1051\/0004-6361\/202039705\">DOI<\/a><\/dd>\n<\/dl>\n<dt>Iino, Takao; Shono, Nobuaki; Ito, Kimio; Nakamura, Ryuhei; Sueoka, Kazuo; Harayama, Shigeaki; Ohkuma, Moriya<\/dt>\n<dd>&#8220;Nitrite as a causal factor for nitrate-dependent anaerobic corrosion of metallic iron induced by Prolixibacter strains&#8221;<\/dd>\n<dd style=\"margin-left:40px;\"><em>Microbiologyopen<\/em>, <strong>10<\/strong>, e1225, 2021, <a href=\"http:\/\/doi.org\/10.1002\/mbo3.1225\">DOI<\/a>\n<dl>\n    <dt>Isa, Junko; Orthous-Daunay, Francois-regis; Beck, Pierre; Herd, Christopher D. K.; Vuitton, Veronique; Flandinet, Laurene<\/dt>\n    <dd>&#8220;Aqueous Alteration on Asteroids Simplifies Soluble Organic Matter Mixtures&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal Letters<\/em>, <strong>920<\/strong>, L39, 2021, <a href=\"http:\/\/doi.org\/10.3847\/2041-8213\/ac2b34\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ishigaki, Yota; Kominami, Junko; Makino, Junichiro; Fujimoto, Masaki; Iwasawa, Masaki<\/dt>\n    <dd>&#8220;Particle-particle particle-tree code for planetary system formation with individual cut-off method: GPLUM&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Publications of the Astronomical Society of Japan<\/em>, <strong>73<\/strong>, 660-660, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pasj\/psab028\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ishino, S.; Hattori, S.; Legrand, M.; Chen, Q.; Alexander, B.; Shao, J.; Huang, J.; Jaegle, L.; Jourdain, B.; Preunkert, S.; Yamada, A.; Yoshida, N.; Savarino, J.<\/dt>\n    <dd>&#8220;Regional Characteristics of Atmospheric Sulfate Formation in East Antarctica Imprinted on <sup>17<\/sup>O-Excess Signature&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Atmospheres<\/em>, <strong>126<\/strong>, e2020JD033583, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020JD033583\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Javier Avila, Patricio; Grassi, Tommaso; Bovino, Stefano; Chiavassa, Andrea; Ercolano, Barbara; Oscar Danielache, Sebastian; Simoncini, Eugenio<\/dt>\n    <dd>&#8220;Presence of water on exomoons orbiting free-floating planets: a case study&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>International Journal of Astrobiology<\/em>, <strong>20<\/strong>, PII S1473550421000173, 2021, <a href=\"http:\/\/doi.org\/10.1017\/S1473550421000173\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Jia, Tony Z.; Bapat, Niraja, V; Verma, Ajay; Mamajanov, Irena; Cleaves, H. James, II; Chandru, Kuhan<\/dt>\n    <dd>&#8220;Incorporation of Basic alpha-Hydroxy Acid Residues into Primitive Polyester Microdroplets for RNA Segregation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Biomacromolecules<\/em>, <strong>22<\/strong>, 1484-1484, 2021, <a href=\"http:\/\/doi.org\/10.1021\/acs.biomac.0c01697\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Jia, Tony Z.; Caudan, Melina; Mamajanov, Irena<\/dt>\n    <dd>&#8220;Origin of Species before Origin of Life: The Role of Speciation in Chemical Evolution&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Life (Basel)<\/em>, <strong>11<\/strong>, 154, 2021, <a href=\"http:\/\/doi.org\/10.3390\/life11020154\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Jia, Tony Z.; Wang, Po-Hsiang; Niwa, Tatsuya; Mamajanov, Irena<\/dt>\n    <dd>&#8220;Connecting primitive phase separation to biotechnology, synthetic biology, and engineering&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Biosciences<\/em>, <strong>46<\/strong>, 79, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s12038-021-00204-z\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Johnson-Finn, Kristin N.; Williams, Lynda B.; Gould, Ian R.; Hartnett, Hilairy E.; Shock, Everett L.<\/dt>\n    <dd>&#8220;Hydrothermal One-Electron Oxidation of Carboxylic Acids in the Presence of Iron Oxide Minerals&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>ACS Earth and Space Chemistry<\/em>, <strong>5<\/strong>, 2715-2715, 2021, <a href=\"http:\/\/doi.org\/10.1021\/acsearthspacechem.1c00139\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kacar, Betul; Garcia, Amanda K.; Anbar, Ariel D.<\/dt>\n    <dd>&#8220;Evolutionary History of Bioessential Elements Can Guide the Search for Life in the Universe&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Chembiochem<\/em>, <strong>22<\/strong>, 114-114, 2021, <a href=\"http:\/\/doi.org\/10.1002\/cbic.202000500\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kitadai, Norio; Nakamura, Ryuhei; Yamamoto, Masahiro; Okada, Satoshi; Takahagi, Wataru; Nakano, Yuko; Takahashi, Yoshio; Takai, Ken; Oono, Yoshi<\/dt>\n    <dd>&#8220;Thioester synthesis through geoelectrochemical CO<sub>2<\/sub> fixation on Ni sulfides&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Communications Chemistry<\/em>, <strong>4<\/strong>, 37, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s42004-021-00475-5\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kitadai, Norio; Nishiuchi, Kumiko; Nakano, Yuko<\/dt>\n    <dd>&#8220;A comprehensive predictive model for selenate adsorption on oxide minerals&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochemical Journal<\/em>, <strong>55<\/strong>, 193-193, 2021, <a href=\"http:\/\/doi.org\/10.2343\/geochemj.2.0628\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kitadai, Norio; Nishiuchi, Kumiko; Takahagi, Wataru<\/dt>\n    <dd>&#8220;Thermodynamic Impact of Mineral Surfaces on Amino Acid Polymerization: Aspartate Dimerization on Two-Line Ferrihydrite, Anatase, and &gamma;-Alumina&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Minerals<\/em>, <strong>11<\/strong>, 234, 2021, <a href=\"http:\/\/doi.org\/10.3390\/min11030234\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kodama, T.; Genda, H.; Leconte, J.; Abe-Ouchi, A.<\/dt>\n    <dd>&#8220;The Onset of a Globally Ice-Covered State for a Land Planet&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Planets<\/em>, <strong>126<\/strong>, e2021JE006975, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021JE006975\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Koyama, Shungo; Terada, Naoki; Nakagawa, Hiromu; Kuroda, Takeshi; Sekine, Yasuhito<\/dt>\n    <dd>&#8220;Stability of Atmospheric Redox States of Early Mars Inferred from Time Response of the Regulation of H and O Losses&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal<\/em>, <strong>912<\/strong>, 135, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-4357\/abf0ac\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Krupovic, Mart; Turner, Dann; Morozova, Vera; Dyall-Smith, Mike; Oksanen, Hanna M.; Edwards, Rob; Dutilh, Bas E.; Lehman, Susan M.; Reyes, Alejandro; Baquero, Diana P.; Sullivan, Matthew B.; Uchiyama, Jumpei; Nakavuma, Jesca; Barylski, Jakub; Young, Mark J.; Du, Shishen; Alfenas-Zerbini, Poliane; Kushkina, Alla; Kropinski, Andrew M.; Kurtboke, Ipek; Brister, J. Rodney; Lood, Cedric; Sarkar, B. L.; Yigang, Tong; Liu, Ying; Huang, Li; Wittmann, Johannes; Chanishvili, Nina; van Zyl, Leonardo J.; Rumnieks, Janis; Mochizuki, Tomohiro; Jalasvuori, Matti; Aziz, Ramy K.; Lobocka, Malgorzata; Stedman, Kenneth M.; Shkoporov, Andrey N.; Gillis, Annika; Peng, Xu; Enault, Francois; Knezevic, Petar; Lavigne, Rob; Rhee, Sung-Keun; Cvirkaite-Krupovic, Virginija; Moraru, Cristina; Moreno Switt, Andrea I.; Poranen, Minna M.; Millard, Andrew; Prangishvili, David; Adriaenssens, Evelien M.<\/dt>\n    <dd>&#8220;Bacterial Viruses Subcommittee and Archaeal Viruses Subcommittee of the ICTV: update of taxonomy changes in 2021&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Archives of Virology<\/em>, <strong>166<\/strong>, 3239-3239, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s00705-021-05205-9\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kunitomo, Masanobu; Ida, Shigeru; Takeuchi, Taku; Panic, Olja; Miley, James M.; Suzuki, Takeru K.<\/dt>\n    <dd>&#8220;Photoevaporative Dispersal of Protoplanetary Disks around Evolving Intermediate-mass Stars&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal<\/em>, <strong>909<\/strong>, 109, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-4357\/abdb2a\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kurokawa, Hiroyuki<\/dt>\n    <dd>&#8220;Hydrated crust stores Mars&#8217; missing water&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Science<\/em>, <strong>372<\/strong>, 27-27, 2021, <a href=\"http:\/\/doi.org\/10.1126\/science.abh4469\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kurokawa, Hiroyuki; Miura, Yayoi N.; Sugita, Seiji; Cho, Yuichiro; Leblanc, Francois; Terada, Naoki; Nakagawa, Hiromu<\/dt>\n    <dd>&#8220;Mars&#8217; atmospheric neon suggests volatile-rich primitive mantle&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>370<\/strong>, 114685, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2021.114685\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kurosawa, Kosuke; Genda, Hidenori; Azuma, Shintaro; Okazaki, Keishi<\/dt>\n    <dd>&#8220;The Role of Post-Shock Heating by Plastic Deformation During Impact Devolatilization of Calcite (CaCO<sub>3<\/sub>)&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geophysical Research Letters<\/em>, <strong>48<\/strong>, e2020GL091130, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020GL091130\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Kuwahara, Hideharu; Itoh, Shoichi; Suzumura, Akimasa; Nakada, Ryoichi; Irifune, Tetsuo<\/dt>\n    <dd>&#8220;Nearly Carbon-Saturated Magma Oceans in Planetary Embryos During Core Formation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geophysical Research Letters<\/em>, <strong>48<\/strong>, e2021GL092389, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021GL092389\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Lammer, Helmut; Brasser, Ramon; Johansen, Anders; Scherf, Manuel; Leitzinger, Martin<\/dt>\n    <dd>&#8220;Formation of Venus, Earth and Mars: Constrained by Isotopes&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Space Science Reviews<\/em>, <strong>217<\/strong>, 7, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s11214-020-00778-4\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Lee, Ji-Eun; Yamaguchi, Akira; Ooka, Hideshi; Kazami, Tomohiro; Miyauchi, Masahiro; Kitadai, Norio; Nakamura, Ryuhei<\/dt>\n    <dd>&#8220;In situ FTIR study of CO<sub>2<\/sub> reduction on inorganic analogues of carbon monoxide dehydrogenase&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Chemical Communications<\/em>, <strong>57<\/strong>, 3267-3267, 2021, <a href=\"http:\/\/doi.org\/10.1039\/d0cc07318k\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Lim, Kang Wei; Bonati, Irene; Hernlund, John W.<\/dt>\n    <dd>&#8220;A Hybrid Mechanism for Enhanced Core-Mantle Boundary Chemical Interaction&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geophysical Research Letters<\/em>, <strong>48<\/strong>, e2021GL094456, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021GL094456\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Linard, Benjamin; Ebersberger, Ingo; McGlynn, Shawn E.; Glover, Natasha; Mochizuki, Tomohiro; Patricio, Mateus; Lecompte, Odile; Nevers, Yannis; Thomas, Paul D.; Gabaldon, Toni; Sonnhammer, Erik; Dessimoz, Christophe; Uchiyama, Ikuo<\/dt>\n    <dd>&#8220;Ten Years of Collaborative Progress in the Quest for Orthologs&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Molecular Biology and Evolution<\/em>, <strong>38<\/strong>, 3033-3033, 2021, <a href=\"http:\/\/doi.org\/10.1093\/molbev\/msab098\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Liu, Qi; Yin, Xinya; Zhang, Yining; Julien, Maxime; Zhang, Naizhong; Gilbert, Alexis; Yoshida, Naohiro; Liu, Yun<\/dt>\n    <dd>&#8220;Theoretical calculation of position-specific carbon and hydrogen isotope equilibriums in butane isomers&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Chemical Geology<\/em>, <strong>561<\/strong>, 120031, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.chemgeo.2020.120031\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Maeda, Koki; Nguyen, Van Thu; Suzuki, Tomoyuki; Yamada, Keita; Kudo, Kushi; Hikita, Chie; Le, Van Phong; Nguyen, Minh Chon; Yoshida, Naohiro<\/dt>\n    <dd>&#8220;Network analysis and functional estimation of the microbiome reveal the effects of cashew nut shell liquid feeding on methanogen behaviour in the rumen&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Microbial Biotechnology<\/em>, <strong>14<\/strong>, 277-277, 2021, <a href=\"http:\/\/doi.org\/10.1111\/1751-7915.13702\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Mah, Jingyi; Brasser, Ramon<\/dt>\n    <dd>&#8220;Isotopically distinct terrestrial planets via local accretion&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>354<\/strong>, 114052, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2020.114052\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Mamajanov, Irena<\/dt>\n    <dd>&#8220;Single-molecule origin of life scenario: Necessity and feasibility: Comment on &#8220;Insoluble organic matter in chondrites: Archetypal melanin-like PAH-based multifunctionality at the origin of life?&#8221; by Marco d&#8217;Ischia et al.&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physics of Life Reviews<\/em>, <strong>38<\/strong>, 143-143, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.plrev.2021.04.007\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Matsumura, Soko; Brasser, Ramon; Ida, Shigeru<\/dt>\n    <dd>&#8220;N-body simulations of planet formation via pebble accretion: II. How various giant planets form&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomy &amp; Astrophysics<\/em>, <strong>650<\/strong>, A116, 2021, <a href=\"http:\/\/doi.org\/10.1051\/0004-6361\/202039210\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Matsu&#8217;ura, Fumihiro; Nakada, Ryoichi; Usui, Tomohiro; Sawaki, Yusuke; Ueno, Yuichiro; Kajitani, Iori; Saitoh, Masafumi<\/dt>\n    <dd>&#8220;Spatial distribution and speciation of sulfur in Ediacaran limestones with mu-XRF imaging and XANES spectroscopy: Implications for diagenetic mobilization of sulfur species&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochimica et Cosmochimica Acta<\/em>, <strong>306<\/strong>, 20-20, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.gca.2021.05.010\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Miki, Kenji; Fujita, Toshio; Sahashi, Norio<\/dt>\n    <dd>&#8220;Development and application of a method to classify airborne pollen taxa concentration using light scattering data&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Scientific Reports<\/em>, <strong>11<\/strong>, 22371, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41598-021-01919-7\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Miki, Kenji; Kawashima, Shigeto<\/dt>\n    <dd>&#8220;Estimation of pollen counts from light scattering intensity when sampling multiple pollen taxa &#8211; establishment of an automated multi-taxa pollen counting estimation system (AME system)&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Atmospheric Measurement Techniques<\/em>, <strong>14<\/strong>, 685-685, 2021, <a href=\"http:\/\/doi.org\/10.5194\/amt-14-685-2021\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Miley, James M.; Panic, Olja; Booth, Richard A.; Ilee, John D.; Ida, Shigeru; Kunitomo, Masanobu<\/dt>\n    <dd>&#8220;The impact of pre-main sequence stellar evolution on mid-plane snowline locations and C\/O in planet forming discs&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Monthly Notices of the Royal Astronomical Society<\/em>, <strong>500<\/strong>, 4658-4658, 2021, <a href=\"http:\/\/doi.org\/10.1093\/mnras\/staa3517\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Mitchell, Ross N.; Thissen, Christopher J.; Evans, David A. D.; Slotznick, Sarah P.; Coccioni, Rodolfo; Yamazaki, Toshitsugu; Kirschvink, Joseph L.<\/dt>\n    <dd>&#8220;A Late Cretaceous true polar wander oscillation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Communications<\/em>, <strong>12<\/strong>, 3629, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41467-021-23803-8\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Nakada, Ryoichi; Tanabe, Gaku; Kajitani, Iori; Usui, Tomohiro; Shidare, Masashi; Yokoyama, Tetsuya<\/dt>\n    <dd>&#8220;EXAFS Determination of Clay Minerals in Martian Meteorite Allan Hills 84001 and Its Implication for the Noachian Aqueous Environment&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Minerals<\/em>, <strong>11<\/strong>, 176, 2021, <a href=\"http:\/\/doi.org\/10.3390\/min11020176\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Nishida, Akifumi; Nakagawa, Mayuko; Yamamura, Masayuki<\/dt>\n    <dd>&#8220;Determinism of microbial community assembly by drastic environmental change&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>PLOS ONE<\/em>, <strong>16<\/strong>, e0260591, 2021, <a href=\"http:\/\/doi.org\/10.1371\/journal.pone.0260591\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Nomura, Hideko; Tsukagoshi, Takashi; Kawabe, Ryohei; Muto, Takayuki; Kanagawa, Kazuhiro D.; Aikawa, Yuri; Akiyama, Eiji; Okuzumi, Satoshi; Ida, Shigeru; Lee, Seokho; Walsh, Catherine; Millar, T. J.<\/dt>\n    <dd>&#8220;High Spatial Resolution Observations of Molecular Lines toward the Protoplanetary Disk around TW Hya with ALMA&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal<\/em>, <strong>914<\/strong>, 113, 2021, <a href=\"http:\/\/doi.org\/10.3847\/1538-4357\/abfb6a\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ohta, Kenji; Hirose, Kei<\/dt>\n    <dd>&#8220;The thermal conductivity of the Earth&#8217;s core and implications for its thermal and compositional evolution&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>National Science Review<\/em>, <strong>8<\/strong>, nwaa303, 2021, <a href=\"http:\/\/doi.org\/10.1093\/nsr\/nwaa303\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Okuda, Yoshiyuki; Kimura, Seiji; Ohta, Kenji; Park, Yohan; Wakamatsu, Tatsuya; Mashino, Izumi; Hirose, Kei<\/dt>\n    <dd>&#8220;A cylindrical SiC heater for an externally heated diamond anvil cell to 1500 K&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Review of Scientific Instruments<\/em>, <strong>92<\/strong>, 15119, 2021, <a href=\"http:\/\/doi.org\/10.1063\/5.0036551\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ooka, Hideshi; Wintzer, Marie E.; Nakamura, Ryuhei<\/dt>\n    <dd>&#8220;Non-Zero Binding Enhances Kinetics of Catalysis: Machine Learning Analysis on the Experimental Hydrogen Binding Energy of Platinum&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>ACS Catalysis<\/em>, <strong>11<\/strong>, 6298-6298, 2021, <a href=\"http:\/\/doi.org\/10.1021\/acscatal.1c01018\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ozawa, K.; Hirose, K.; Kuwayama, Y.; Takahashi, Y.<\/dt>\n    <dd>&#8220;The pressure-induced local structural change around tungsten in silicate glass&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochemical Perspectives Letters<\/em>, <strong>18<\/strong>, 6-6, 2021, <a href=\"http:\/\/doi.org\/10.7185\/geochemlet.2116\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Patwardhan, Sushmita; Smedile, Francesco; Giovannelli, Donato; Vetriani, Costantino<\/dt>\n    <dd>&#8220;Metaproteogenomic Profiling of Chemosynthetic Microbial Biofilms Reveals Metabolic Flexibility During Colonization of a Shallow-Water Gas Vent&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Frontiers in Microbiology<\/em>, <strong>12<\/strong>, 638300, 2021, <a href=\"http:\/\/doi.org\/10.3389\/fmicb.2021.638300\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Penev, Petar, I; Alvarez-Carreno, Claudia; Smith, Eric; Petrov, Anton S.; Williams, Loren Dean<\/dt>\n    <dd>&#8220;TwinCons: Conservation score for uncovering deep sequence similarity and divergence&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>PLOS Computational Biology<\/em>, <strong>17<\/strong>, e1009541, 2021, <a href=\"http:\/\/doi.org\/10.1371\/journal.pcbi.1009541\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Petrie, Katherine Lynn; Xie, Rujia<\/dt>\n    <dd>&#8220;Resequencing of Microbial Isolates: A Lab Module to Introduce Novices to Command-Line Bioinformatics&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Frontiers in Microbiology<\/em>, <strong>12<\/strong>, 578859, 2021, <a href=\"http:\/\/doi.org\/10.3389\/fmicb.2021.578859\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Petrillo, Claudia; Castaldi, Stefany; Lanzilli, Mariamichela; Selci, Matteo; Cordone, Angelina; Giovannelli, Donato; Isticato, Rachele<\/dt>\n    <dd>&#8220;Genomic and Physiological Characterization of Bacilli Isolated From Salt-Pans With Plant Growth Promoting Features&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Frontiers in Microbiology<\/em>, <strong>12<\/strong>, 715678, 2021, <a href=\"http:\/\/doi.org\/10.3389\/fmicb.2021.715678\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Prondzinsky, Paula; Berkemer, Sarah J.; Ward, Lewis M.; McGlynn, Shawn E.<\/dt>\n    <dd>&#8220;The Thermosynechococcus Genus: Wide Environmental Distribution, but a Highly Conserved Genomic Core&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Microbes and Environments<\/em>, <strong>36<\/strong>, ME20138, 2021, <a href=\"http:\/\/doi.org\/10.1264\/jsme2.ME20138\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Reyes, Sabrina Galinanes; Kuruma, Yutetsu; Fujimi, Mai; Yamazaki, Masako; Eto, Sumie; Nishikawa, Shota; Tamaki, Satoshi; Kobayashi, Asaki; Mizuuchi, Ryo; Rothschild, Lynn; Ditzler, Mark; Fujishima, Kosuke<\/dt>\n    <dd>&#8220;PURE mRNA display and cDNA display provide rapid detection of core epitope motif via high-throughput sequencing&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Biotechnology and Bioengineering<\/em>, <strong>118<\/strong>, 1736-1736, 2021, <a href=\"http:\/\/doi.org\/10.1002\/bit.27696\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Rivera-Valentin, Edgard G.; Filiberto, Justin; Lynch, Kennda L.; Mamajanov, Irena; Lyons, Timothy W.; Schulte, Mitch; Mendez, Abel<\/dt>\n    <dd>&#8220;Introduction-First Billion Years: Habitability&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrobiology<\/em>, <strong>21<\/strong>, 893-893, 2021, <a href=\"http:\/\/doi.org\/10.1089\/ast.2020.2314\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Saitoh, Masafumi; Isozaki, Yukio<\/dt>\n    <dd>&#8220;Carbon Isotope Chemostratigraphy Across the Permian-Triassic Boundary at Chaotian, China: Implications for the Global Methane Cycle in the Aftermath of the Extinction&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Frontiers in Earth Science<\/em>, <strong>8<\/strong>, 596178, 2021, <a href=\"http:\/\/doi.org\/10.3389\/feart.2020.596178\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Safrit, Taylor K; Steckloff, Jordan K; Bosh, Amanda S; Nesvorny, David; Walsh, Kevin; Brasser, Ramon; Minton, David A<\/dt>\n    <dd>&#8220;The Formation of Bilobate Comet Shapes through Sublimative Torques&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>The Planetary Science Journal<\/em>, <strong>2<\/strong>, 14, 2021, <a href=\"http:\/\/doi.org\/10.3847\/psj\/abc9c8\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Saitoh, Masafumi; Olivier, Nicolas; Garcon, Marion; Boyet, Maud; Thomazo, Christophe; Alleon, Julien; Moyen, Jean-Francois; Motto-Ros, Vincent; Marin-Carbonne, Johanna<\/dt>\n    <dd>&#8220;Metamorphic origin of anastomosing and wavy laminas overprinting putative microbial deposits from the 3.22 Ga Moodies Group (Barberton Greenstone Belt)&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Precambrian Research<\/em>, <strong>362<\/strong>, 106306, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.precamres.2021.106306\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Saitoh, Masafumi; Ueno, Yuichiro; Isozaki, Yukio; Yoshida, Naohiro<\/dt>\n    <dd>&#8220;Multiple sulfur isotope chemostratigraphy across the Permian-Triassic boundary at Chaotian, China: Implications for a shoaling model of toxic deep-waters&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Island Arc<\/em>, <strong>30<\/strong>, e12398, 2021, <a href=\"http:\/\/doi.org\/10.1111\/iar.12398\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Sakuraba, Haruka; Kurokawa, Hiroyuki; Genda, Hidenori; Ohta, Kenji<\/dt>\n    <dd>&#8220;Numerous chondritic impactors and oxidized magma ocean set Earth&#8217;s volatile depletion&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Scientific Reports<\/em>, <strong>11<\/strong>, 20894, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41598-021-99240-w\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Samuel, Henri; Ballmer, Maxim D.; Padovan, Sebastiano; Tosi, Nicola; Rivoldini, Attilio; Plesa, Ana-Catalina<\/dt>\n    <dd>&#8220;The Thermo-Chemical Evolution of Mars With a Strongly Stratified Mantle&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Planets<\/em>, <strong>126<\/strong>, e2020JE006613, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020JE006613\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Sanden, Sebastian A.; Szilagyi, Robert K.; Li, Yamei; Kitadai, Norio; Webb, Samuel M.; Yano, Takaaki; Nakamura, Ryuhei; Hara, Masahiko; McGlynn, Shawn E.<\/dt>\n    <dd>&#8220;Electrochemically induced metal- vs. ligand-based redox changes in mackinawite: identification of a Fe<sup>3+<\/sup>&#8211; and polysulfide-containing intermediate&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Dalton Transactions<\/em>, <strong>50<\/strong>, 11763-11763, 2021, <a href=\"http:\/\/doi.org\/10.1039\/d1dt01684a\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Sharma, Siddhant; Arya, Aayush; Cruz, Romulo; Cleaves, Henderson, II<\/dt>\n    <dd>&#8220;Automated Exploration of Prebiotic Chemical Reaction Space: Progress and Perspectives&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Life (Basel)<\/em>, <strong>11<\/strong>, 1140, 2021, <a href=\"http:\/\/doi.org\/10.3390\/life11111140\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Shepard, Eric M.; Impano, Stella; Duffus, Benjamin R.; Pagnier, Adrien; Duschene, Kaitlin S.; Betz, Jeremiah N.; Byer, Amanda S.; Galambas, Amanda; McDaniel, Elizabeth C.; Watts, Hope; McGlynn, Shawn E.; Peters, John W.; Broderick, William E.; Broderick, Joan B.<\/dt>\n    <dd>&#8220;HydG, the dangler iron, and catalytic production of free CO and CN<sup>&#8211;<\/sup>: implications for [FeFe]-hydrogenase maturation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Dalton Transactions<\/em>, <strong>50<\/strong>, 10405-10405, 2021, <a href=\"http:\/\/doi.org\/10.1039\/d1dt01359a\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Shephard, Grace E.; Houser, Christine; Hernlund, John W.; Valencia-Cardona, Juan J.; Tronnes, Reidar G.; Wentzcovitch, Renata M.<\/dt>\n    <dd>&#8220;Seismological expression of the iron spin crossover in ferropericlase in the Earth&#8217;s lower mantle&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Communications<\/em>, <strong>12<\/strong>, 5905, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41467-021-26115-z\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Shi, Jingming; Fonda, Emiliano; Botti, Silvana; Marques, Miguel A. L.; Shinmei, Toru; Irifune, Tetsuo; Flank, Anne-Marie; Lagarde, Pierre; Polian, Alain; Itie, Jean-Paul; San-Miguel, Alfonso<\/dt>\n    <dd>&#8220;Halogen molecular modifications at high pressure: the case of iodine&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physical Chemistry Chemical Physics<\/em>, <strong>23<\/strong>, 3321-3321, 2021, <a href=\"http:\/\/doi.org\/10.1039\/d0cp05942k\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Shidare, Masashi; Nakada, Ryoichi; Usui, Tomohiro; Tobita, Minato; Shimizu, Kenji; Takahashi, Yoshio; Yokoyama, Tetsuya<\/dt>\n    <dd>&#8220;Survey of impact glasses in shergottites searching for Martian sulfate using X-ray absorption near-edge structure&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochimica et Cosmochimica Acta<\/em>, <strong>313<\/strong>, 85-85, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.gca.2021.08.026\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Shimizu, Takayuki; Hayashi, Yuuki; Arai, Munehito; McGlynn, Shawn E.; Masuda, Tatsuru; Masuda, Shinji<\/dt>\n    <dd>&#8220;Repressor Activity of SqrR, a Master Regulator of Persulfide-Responsive Genes, Is Regulated by Heme Coordination&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Plant and Cell Physiology<\/em>, <strong>62<\/strong>, 100-100, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pcp\/pcaa144\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Smith, Eric; Krishnamurthy, Supriya<\/dt>\n    <dd>&#8220;Eikonal solutions for moment hierarchies of chemical reaction networks in the limits of large particle number&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Physics A &#8211; Mathematical and Theoretical<\/em>, <strong>54<\/strong>, 185002, 2021, <a href=\"http:\/\/doi.org\/10.1088\/1751-8121\/abe6ba\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Smith, Harrison B.; Drew, Alexa; Malloy, John F.; Walker, Sara Imari<\/dt>\n    <dd>&#8220;Seeding Biochemistry on Other Worlds: Enceladus as a Case Study&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrobiology<\/em>, <strong>21<\/strong>, 177-177, 2021, <a href=\"http:\/\/doi.org\/10.1089\/ast.2019.2197\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Smith, Harrison B.; Kim, Hyunju; Walker, Sara I.<\/dt>\n    <dd>&#8220;Scarcity of scale-free topology is universal across biochemical networks&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Scientific Reports<\/em>, <strong>11<\/strong>, 6542, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41598-021-85903-1\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Suda, Takuma; Saitoh, Takayuki R.; Moritani, Yuki; Matsuno, Tadafumi; Shigeyama, Toshikazu<\/dt>\n    <dd>&#8220;First star survivors as metal-rich halo stars that experienced supernova explosions in binary systems&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Publications of the Astronomical Society of Japan<\/em>, <strong>73<\/strong>, 609-609, 2021, <a href=\"http:\/\/doi.org\/10.1093\/pasj\/psab024\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Sugiura, Keisuke; Kobayashi, Hiroshi; Watanabe, Sei-ichiro; Genda, Hidenori; Hyodo, Ryuki; Inutsuka, Shu-ichiro<\/dt>\n    <dd>&#8220;SPH simulations for shape deformation of rubble-pile asteroids through spinup: The challenge for making top-shaped asteroids Ryugu and Bennu&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>365<\/strong>, 114505, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2021.114505\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Suzuki, T.; Shinnaka, Y.; Majumdar, L.; Shibata, T.; Shibaike, Y.; Nomura, H.; Minamoto, H.<\/dt>\n    <dd>&#8220;Possibility of concentration of nonvolatile species near the surface of comet 67P\/Churyumov-Gerasimenko&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astronomy &amp; Astrophysics<\/em>, <strong>645<\/strong>, A134, 2021, <a href=\"http:\/\/doi.org\/10.1051\/0004-6361\/202038491\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Tabata, Haruhisa; Sekine, Yasuhito; Kanzaki, Yoshiki; Sugita, Seiji<\/dt>\n    <dd>&#8220;An experimental study of photo-oxidation of Fe(II): Implications for the formation of Fe(III) (hydro)oxides on early Mars and Earth&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochimica et Cosmochimica Acta<\/em>, <strong>299<\/strong>, 35-35, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.gca.2021.02.006\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Tagawa, Shoh; Sakamoto, Naoya; Hirose, Kei; Yokoo, Shunpei; Hernlund, John; Ohishi, Yasuo; Yurimoto, Hisayoshi<\/dt>\n    <dd>&#8220;Experimental evidence for hydrogen incorporation into Earth&#8217;s core&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Nature Communications<\/em>, <strong>12<\/strong>, 2588, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41467-021-22035-0\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Taguchi, Koudai; Gilbert, Alexis; Ueno, Yuichiro<\/dt>\n    <dd>&#8220;Standardization for <sup>13<\/sup>C-<sup>13<\/sup>C clumped isotope analysis by the fluorination method&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Rapid Communications in Mass Spectrometry<\/em>, <strong>35<\/strong>, e9109, 2021, <a href=\"http:\/\/doi.org\/10.1002\/rcm.9109\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Tan, Shuya; Sekine, Yasuhito; Shibuya, Takazo; Miyamoto, Chihiro; Takahashi, Yoshio<\/dt>\n    <dd>&#8220;The role of hydrothermal sulfate reduction in the sulfur cycles within Europa: Laboratory experiments on sulfate reduction at 100 MPa&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>357<\/strong>, 114222, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2020.114222\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Toyoda, Sakae; Kakimoto, Takahito; Kudo, Kushi; Yoshida, Naohiro; Sasano, Daisuke; Kosugi, Naohiro; Ishii, Masao; Kameyama, Sohiko; Inagawa, Mahomi; Yoshikawa-Inoue, Hisayuki; Nishino, Shigeto; Murata, Akihiko; Ishidoya, Shigeyuki; Morimoto, Shinji<\/dt>\n    <dd>&#8220;Distribution and Production Mechanisms of N<sub>2<\/sub>O in the Western Arctic Ocean&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Global Biogeochemical Cycles<\/em>, <strong>35<\/strong>, e2020GB006881, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2020GB006881\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Tretyachenko, Vyacheslav; Voracek, Vaclav; Soucek, Radko; Fujishima, Kosuke; Hlouchova, Klara<\/dt>\n    <dd>&#8220;CoLiDe: Combinatorial Library Design tool for probing protein sequence space&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Bioinformatics<\/em>, <strong>37<\/strong>, 482-482, 2021, <a href=\"http:\/\/doi.org\/10.1093\/bioinformatics\/btaa804\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ueda, Takahiro; Ogihara, Masahiro; Kokubo, Eiichiro; Okuzumi, Satoshi<\/dt>\n    <dd>&#8220;Early Initiation of Inner Solar System Formation at the Dead-zone Inner Edge&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal Letters<\/em>, <strong>921<\/strong>, L5, 2021, <a href=\"http:\/\/doi.org\/10.3847\/2041-8213\/ac2f3b\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Umemoto, Koichiro; Wentzcovitch, Renata M.<\/dt>\n    <dd>&#8220;Ab initio prediction of an order-disorder transition in Mg<sub>2<\/sub>GeO<sub>4<\/sub>: Implication for the nature of super-Earth&#8217;s mantles&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physical Review Materials<\/em>, <strong>5<\/strong>, 93604, 2021, <a href=\"http:\/\/doi.org\/10.1103\/PhysRevMaterials.5.093604\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Van Den Berghe, Martin; Merino, Nancy; Nealson, Kenneth H.; West, A. Joshua<\/dt>\n    <dd>&#8220;Silicate minerals as a direct source of limiting nutrients: Siderophore synthesis and uptake promote ferric iron bioavailability from olivine and microbial growth&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geobiology<\/em>, <strong>19<\/strong>, 618-618, 2021, <a href=\"http:\/\/doi.org\/10.1111\/gbi.12457\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Vincent, Lena; Colon-Santos, Stephanie; Cleaves II, H. James; Baum, David A.; Maurer, Sarah E.<\/dt>\n    <dd>&#8220;The Prebiotic Kitchen: A Guide to Composing Prebiotic Soup Recipes to Test Origins of Life Hypotheses&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Life (Basel)<\/em>, <strong>11<\/strong>, 1221, 2021, <a href=\"http:\/\/doi.org\/10.3390\/life11111221\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Virgo, Nathaniel; Biehl, Martin; McGregor, Simon<\/dt>\n    <dd>&#8220;Interpreting Dynamical Systems as Bayesian Reasoners&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Machine Learning and Principles and Practice of Knowledge Discovery in Databases, Ecml Pkdd 2021, Pt I<\/em>, <strong>1524<\/strong>, 726-726, 2021, <a href=\"http:\/\/doi.org\/10.1007\/978-3-030-93736-2_52\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Vyas, Pratik; Trofimyuk, Olena; Longo, Liam M.; Deshmukh, Fanindra Kumar; Sharon, Michal; Tawfik, Dan S.<\/dt>\n    <dd>&#8220;Helicase-like functions in phosphate loop containing beta-alpha polypeptides&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Proceedings of the National Academy of Sciences of the United States of America<\/em>, <strong>118<\/strong>, e2016131118, 2021, <a href=\"http:\/\/doi.org\/10.1073\/pnas.2016131118\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Wang, Kun; Hattori, Shohei; Lin, Mang; Ishino, Sakiko; Alexander, Becky; Kamezaki, Kazuki; Yoshida, Naohiro; Kang, Shichang<\/dt>\n    <dd>&#8220;Isotopic constraints on atmospheric sulfate formation pathways in the Mt. Everest region, southern Tibetan Plateau&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Atmospheric Chemistry and Physics<\/em>, <strong>21<\/strong>, 8357-8357, 2021, <a href=\"http:\/\/doi.org\/10.5194\/acp-21-8357-2021\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ward, L. M.; Johnston, D. T.; Shih, P. M.<\/dt>\n    <dd>&#8220;Phanerozoic radiation of ammonia oxidizing bacteria&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Scientific Reports<\/em>, <strong>11<\/strong>, 2070, 2021, <a href=\"http:\/\/doi.org\/10.1038\/s41598-021-81718-2\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Ward, Lewis M.; Li-Hau, Fatima; Kakegawa, Takeshi; McGlynn, Shawn E.<\/dt>\n    <dd>&#8220;Complex History of Aerobic Respiration and Phototrophy in the Chloroflexota Class Anaerolineae Revealed by High-Quality Draft Genome of <em>Ca.<\/em> Roseilinea mizusawaensis AA3_104&#8243;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Microbes and Environments<\/em>, <strong>36<\/strong>, ME21020, 2021, <a href=\"http:\/\/doi.org\/10.1264\/jsme2.ME21020\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Wei, Sean Ting-Shyang; Chen, Yi-Lung; Wu, Yu-Wei; Wu, Tien-Yu; Lai, Yi-Li; Wang, Po-Hsiang; Ismail, Wael; Lee, Tzong-Huei; Chiang, Yin-Ru<\/dt>\n    <dd>&#8220;Integrated Multi-omics Investigations Reveal the Key Role of Synergistic Microbial Networks in Removing Plasticizer Di-(2-Ethylhexyl) Phthalate from Estuarine Sediments&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Msystems<\/em>, <strong>6<\/strong>, e00358-21, 2021, <a href=\"http:\/\/doi.org\/10.1128\/mSystems.00358-21\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Wei, Wei; Isobe, Kazuo; Shiratori, Yutaka; Yano, Midori; Toyoda, Sakae; Koba, Keisuke; Yoshida, Naohiro; Shen, Haoyang; Senoo, Keishi<\/dt>\n    <dd>&#8220;Revisiting the involvement of ammonia oxidizers and denitrifiers in nitrous oxide emission from cropland soils&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Environmental Pollution<\/em>, <strong>287<\/strong>, 117494, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.envpol.2021.117494\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Wong, Emily W.; Brasser, Ramon; Werner, Stephanie C.<\/dt>\n    <dd>&#8220;Early impact chronology of the icy regular satellites of the outer solar system&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>358<\/strong>, 114184, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2020.114184\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Woo, J. M. Y.; Grimm, S.; Brasser, R.; Stadel, J.<\/dt>\n    <dd>&#8220;Growing Mars fast: High-resolution GPU simulations of embryo formation&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Icarus<\/em>, <strong>359<\/strong>, 114305, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.icarus.2021.114305\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Woo, Jason Man Yin; Stadel, Joachim; Grimm, Simon; Brasser, Ramon<\/dt>\n    <dd>&#8220;Mars&#8217; Formation Can Constrain the Primordial Orbits of the Gas Giants&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Astrophysical Journal Letters<\/em>, <strong>910<\/strong>, L16, 2021, <a href=\"http:\/\/doi.org\/10.3847\/2041-8213\/abed56\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Xu, Chaowen; Kakizawa, Sho; Greaux, Steeve; Inoue, Toru; Li, Ying; Gao, Jing<\/dt>\n    <dd>&#8220;Al partitioning between phase D and bridgmanite at the uppermost lower mantle pressure&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physics and Chemistry of Minerals<\/em>, <strong>48<\/strong>, 37, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s00269-021-01163-5\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Xu, Chaowen; Li, Ying; Inoue, Toru; Greaux, Steeve; Li, Qingze; Gao, Jing; Sun, Fengxia; Fang, Leiming<\/dt>\n    <dd>&#8220;Elastic properties of Mg-phase D at high pressure&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>High Pressure Research<\/em>, <strong>41<\/strong>, 233-233, 2021, <a href=\"http:\/\/doi.org\/10.1080\/08957959.2021.1954177\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Yamamoto, Yasuyoshi; Okamoto, Takashi; Saitoh, Takayuki R.<\/dt>\n    <dd>&#8220;Testing the effect of resolution on gravitational fragmentation with Lagrangian hydrodynamic schemes&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Monthly Notices of the Royal Astronomical Society<\/em>, <strong>504<\/strong>, 3986-3986, 2021, <a href=\"http:\/\/doi.org\/10.1093\/mnras\/stab1095\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Yoda, Masahiro; Sekine, Yasuhito; Fukushi, Keisuke; Kitajima, Takuma; Gankhurel, Baasansuren; Davaasuren, Davaadorj; Gerelmaa, Tuvshin; Ganbat, Shuukhaaz; Shoji, Daigo; Zolotov, Mikhail Y.; Takahashi, Yoshio<\/dt>\n    <dd>&#8220;Field Investigations of Chemical Partitioning and Aqueous Chemistry of Freezing Closed-Basin Lakes in Mongolia as Analogs of Subsurface Brines on Icy Bodies&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Planets<\/em>, <strong>126<\/strong>, e2021JE006972, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021JE006972\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Yu, W.; Song, T-R A.; Su, J.; Lin, J-T<\/dt>\n    <dd>&#8220;Rayleigh-Love Discrepancy Highlights Temporal Changes in Near-Surface Radial Anisotropy After the 2004 Great Sumatra Earthquake&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Journal of Geophysical Research &#8211; Solid Earth<\/em>, <strong>126<\/strong>, e2021JB022896, 2021, <a href=\"http:\/\/doi.org\/10.1029\/2021JB022896\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Zhang, Naizhong; Snyder, Glen T.; Lin, Mang; Nakagawa, Mayuko; Gilbert, Alexis; Yoshida, Naohiro; Matsumoto, Ryo; Sekine, Yasuhito<\/dt>\n    <dd>&#8220;Doubly substituted isotopologues of methane hydrate (<sup>13<\/sup>CH<sub>3<\/sub>D and <sup>12<\/sup>CH<sub>2<\/sub>D<sub>2<\/sub>): Implications for methane clumped isotope effects, source apportionments and global hydrate reservoirs&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Geochimica et Cosmochimica Acta<\/em>, <strong>315<\/strong>, 127-127, 2021, <a href=\"http:\/\/doi.org\/10.1016\/j.gca.2021.08.027\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Zhang, Zhen; Zhang, Dong-Bo; Onga, Kotaro; Hasegawa, Akira; Ohta, Kenji; Hirose, Kei; Wentzcovitch, Renata M.<\/dt>\n    <dd>&#8220;Thermal conductivity of CaSiO<sub>3<\/sub> perovskite at lower mantle conditions&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physical Review B<\/em>, <strong>104<\/strong>, 184101, 2021, <a href=\"http:\/\/doi.org\/10.1103\/PhysRevB.104.184101\">DOI<\/a><\/dd>\n<\/dl>\n<dl>\n    <dt>Zhou, Youmo; Irifune, Tetsuo; Kuribayashi, Takahiro<\/dt>\n    <dd>&#8220;Phase relations of the Al<sub>2<\/sub>O<sub>3<\/sub>-SiO<sub>2<\/sub> system at 13-21 GPa and 2300-2800 K and a new high-pressure Al<sub>2<\/sub>Si<sub>2<\/sub>O<sub>7<\/sub> phase&#8221;<\/dd>\n    <dd style=\"margin-left:40px;\"><em>Physics and Chemistry of Minerals<\/em>, <strong>48<\/strong>, 26, 2021, <a href=\"http:\/\/doi.org\/10.1007\/s00269-021-01149-3\">DOI<\/a><\/dd>\n<\/dl>\n<\/dd>        ","protected":false},"excerpt":{"rendered":"Adam, Zachary R.; Fahrenbach, Albert C.; Jacobson, Sofia M.; Kacar, Betul; Zubarev, Dmitry Yu &#8220;Radiolysis generates a complex organosynthetic chemical network&#8221; Scientific Reports, 11, 1743, 2021, DOI Akil, Caner; Kitaoku, Yoshihito; Tran, Linh T.; Liebl, David; Choe, Han; Muengsaen, Duangkamon; Suginta, Wipa; Schulte, Albert; Robinson, Robert C. &#8220;Mythical origins of the actin cytoskeleton&#8221; Current Opinion [&hellip;]","protected":false},"author":9,"featured_media":0,"parent":1050,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_locale":"en_US","_original_post":"http:\/\/www.elsi.jp\/?page_id=1076"},"acf":[],"_links":{"self":[{"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/pages\/1077"}],"collection":[{"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/users\/9"}],"replies":[{"embeddable":true,"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/comments?post=1077"}],"version-history":[{"count":1,"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/pages\/1077\/revisions"}],"predecessor-version":[{"id":1078,"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/pages\/1077\/revisions\/1078"}],"up":[{"embeddable":true,"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/pages\/1050"}],"wp:attachment":[{"href":"https:\/\/www.elsi.jp\/wp-json\/wp\/v2\/media?parent=1077"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}