研究者詳細

顔写真

キヤス ジエイミイ マイケル
Kass Jamie Michael
Kass Jamie Michael
所属
大学院生命科学研究科 生態発生適応科学専攻 生態ダイナミクス講座(マクロ生態分野)
職名
准教授
学位
  • Ph.D.(City University of New York)

  • M.S.(Duke University)

e-Rad 研究者番号
10927586

経歴 7

  • 2023年4月 ~ 継続中
    東北大学 マクロ生態分野 准教授

  • 2022年10月 ~ 2023年3月
    沖縄科学技術大学院大学 生物多様性・複雑性ユニット ポストドクトラルスコラー

  • 2020年9月 ~ 2022年9月
    沖縄科学技術大学院大学 生物多様性・生物複雑性ユニット 日本学術振興会外国人特別研究員(一般)

  • 2020年5月 ~ 2020年8月
    沖縄科学技術大学院大学 生物多様性・生物複雑性ユニット 博士研究員

  • 2019年4月 ~ 2020年4月
    沖縄科学技術大学院大学 生物多様性・生物複雑性ユニット 日本学術振興会外国人特別研究員(欧米短期)

  • 2013年9月 ~ 2019年2月
    ニューヨーク市立大学 生物学 博士課程の学生

  • 2005年9月 ~ 2007年5月
    デューク大学 環境科学・環境管理学 修士学生

︎全件表示 ︎最初の5件までを表示

学歴 3

  • City University of New York Biology Ph.D.

    2013年9月 ~ 2019年2月

  • Duke University Environmental Management Masters

    2005年9月 ~ 2007年8月

  • State University of New York at Binghamton Biology, English Bachelors

    2000年9月 ~ 2004年5月

所属学協会 3

  • American Society of Mammalogists

    2018年 ~ 継続中

  • International Biogeography Society

    2017年 ~ 継続中

  • 日本生態学会

    2017年 ~ 継続中

研究キーワード 6

  • 群集時間変動

  • ソフトウェア開発

  • 生物多様性

  • 群集生態学

  • 種分布モデル

  • 生物地理学

研究分野 1

  • ライフサイエンス / 生態学、環境学 / 生物地理学

受賞 10

  1. 生命科学研究科研究奨励賞

    2023年11月 東北大学生命科学研究科 東北大学での半自動な陸生物多様性モニタリング網のパイロットプロジェクト

  2. 日本生態学会奨励賞(鈴木賞)

    2022年3月 日本生態学会

  3. Short-term Postdoc Research Support Allowance

    2019年4月 日本学術振興会

  4. CUNY Graduate Center Doctoral Student Research Grant

    2018年3月 City University of New York Amount: $700

  5. Grant-in-Aid of Research

    2016年4月 American Society of Mammalogists Uncovering the drivers of invasive Procyon lotor spread in Japan and its effects on the native Nyctereutes procyonoides; Amount: $1500

  6. CUNY Graduate Center Provost Digital Innovation Grant

    2016年4月 City University of New York Development for interactive ecological informatics software "Wallace"; Amount: $10,000

  7. CUNY Graduate Center Doctoral Student Research Grant

    2016年3月 City University of New York Amount: $1500

  8. Ebbe Nielsen Challenge (finalist)

    2015年4月 Global Biodiversity Information Facility Wallace (beta v0.1): Harnessing Digital Biodiversity Data for Predictive Modeling, Fueled by R; Amount: €1000

  9. Fund of the Tides GeoChallenge Grant

    2009年4月 Google.org Species distribution modeling of snow leopard (Panthera uncia) in western China; co-written with Snow Leopard Trust; Amount: $500

  10. Foreign Language Area Studies Fellowship

    2007年9月 U.S. Dept. of Education In partnership with Duke University Asian and Middle Eastern Studies Department; studied advanced Japanese at Hokkaido International Foundation; Award: 1 year tuition & $2000 stipend

︎全件表示 ︎最初の5件までを表示

論文 58

  1. Achieving higher standards in species distribution modeling by leveraging the diversity of available software 査読有り

    Jamie M. Kass, Adam B. Smith, Dan L. Warren, Sergio Vignali, Sylvain Schmitt, Matthew E. Aiello‐Lammens, Eduardo Arlé, Ana Márcia Barbosa, Olivier Broennimann, Marlon E. Cobos, Maya Guéguen, Antoine Guisan, Cory Merow, Babak Naimi, Michael P. Nobis, Ian Ondo, Luis Osorio-Olvera, Hannah L. Owens, Gonzalo E. Pinilla‐Buitrago, Andrea Sánchez-Tapia, Wilfried Thuiller, Roozbeh Valavi, Santiago José Elías Velazco, Alexander Zizka, Damaris Zurell

    Ecography 2025年2月

    DOI: 10.1111/ecog.07346  

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    <p dir="ltr">There are many tools for species distribution modeling in R, so many in fact that sorting through them and deciding which to use for what can be an overwhelming exercise. This repository provides pdf files of the three supplemental vignettes (i.e., tutorials) described in <a href="https://www.doi.org/10.1111/ecog.07346" rel="noreferrer" target="_blank">Kass et al. (2024)</a> that highlight how pluralistic use of R package tools can enhance analyses. All vignettes present full SDM analyses from data collection and processing to model building and predictions, and two of them provide walkthroughs for shiny applications. This first release (1.0.0) is planned to be updated over time to adapt to new package versions.</p>

  2. Extrapolation strategy matters when transferring ecological niche models: new visualization tools for informed decisions

    Gonzalo E. Pinilla‐Buitrago, Jamie M. Kass, Robert P. Anderson

    Ecography 2026年7月20日

    DOI: 10.1002/ecog.08590  

  3. Response diversity inconsistently predicts functional robustness to simulated zooplankton extinctions

    Samuel R.P-J. Ross, Hiromichi Suzuki, Jotaro Urabe, Jamie M. Kass

    2026年6月22日

    DOI: 10.64898/2026.06.19.733370  

  4. Incorporating sampling bias into ENM/SDM permutation tests: new methods and a case study on neotropical ants

    Dan L. Warren, Alexandre Cassadei‐Ferreira, Evan P. Economo, Russell Dinnage, Jamie M. Kass

    Ecography 2026年6月16日

    DOI: 10.1002/ecog.08559  

  5. Human land-use change drives co-occurrence of ecologically similar avian aerial insectivores in Southeast Asia

    Alexis M. Garvin, Samantha S. Sudoko, Nurhartini K. Yahya, Nur Alwanie Maruji, Rayzigerson R. Chai, Karim A. bin Dakog, Benoit Goossens, Jamie M. Kass, Elizabeth S.C. Scordato

    2026年5月22日

    DOI: 10.64898/2026.05.20.726292  

  6. Challenges and ways forward for implementing essential biodiversity and ecosystem service variables in Asia

    Yayoi Takeuchi, Jamie Kass, Lea Végh, Amit Batar, Nyein Chan, Alice Hughes, Adriano Lima, Rick Leong, Kyung Koo, Chan-Ho Park, Severino Salmo, Suttikarn Sutti, Nantida Sutummawong, Yongyut Trisurat

    2026年5月12日

    DOI: 10.22541/authorea.15003123/v1  

  7. Phylogenetic Diversity and Dispersion of Ants Worldwide: Geographic Variation and Climatic Correlates

    Hong Qian, Runxi Wang, Michael Kessler, Shenhua Qian, Jamie M. Kass, Evan P. Economo, Benoit Guénard

    Global Ecology and Biogeography 2026年5月

    DOI: 10.1111/geb.70243  

  8. Acidification and deoxygenation matter in assessing redistribution of global cold-water coral biodiversity induced by climate change

    Shuaishuai Liu, Bingqing Xiao, Akos Bede-Fazekas, Stefano Mammola, Jorge Garcia Molinos, Jamie M. Kass, Jorge Assis, Chen Lin, Junmei Qu, Hongwei Huang, Qiang Lin, Zhixin Zhang

    LIMNOLOGY AND OCEANOGRAPHY 71 (3) 2026年3月

    DOI: 10.1002/lno.70351  

    ISSN:0024-3590

    eISSN:1939-5590

  9. Multiple imputation step-selection analysis: Improving estimation accuracy of travel distance accounting for route uncertainty

    Shiori Takeshige, Jamie M Kass, Gota Yajima, Yusaku Ohkubo

    2026年2月24日

    DOI: 10.64898/2026.02.23.707585  

  10. BON in a Box: An Open and Collaborative Platform for Biodiversity Monitoring, Indicator Calculation, and Reporting

    Jory Griffith, Jean-Michel Lord, Michael D. Catchen, Maria Isabel Arce-Plata, F. Guillaume Blanchet, Mathusan Chandramohan, M. Camila Diaz-Corzo, Dominique Gravel, Cesar Gutierrez, Isabelle S. Helfenstein, Sean Hoban, Jamie M. Kass, Linda Laikre, Guillaume Larocque, Deborah M. Leigh, Brian Leung, Alicia Mastretta-Yanes, Katie L. Millette, Maria Alejandra Molina Berbeo, Dat Nguyen, Kari E. Norman, Maria Helena Olaya-Rodriguez, Simon Pahls, Kaitlyn Pereira, Pedro R. Peres-Neto, Timothee Poisot, Laura J. Pollock, Juan Carlos Rey-Velasco, Victor J. Rincon-Parra, Claudia Roeoesli, Francois Rousseu, Lina Maria Sanchez-Clavijo, Meredith C. Schuman, Oliver Selmoni, Jessica M. Da silva, Erika Suarez-Valencia, Thilina D. Surasinghe, Eren Turak, Luis Fernando Urbina, Sarah Valentin, Noah Wightman, Juan Zuloaga, Maria Cecilia Londono, Andrew Gonzalez

    BIOSCIENCE 2026年1月13日

    DOI: 10.1093/biosci/biaf189  

    ISSN:0006-3568

    eISSN:1525-3244

  11. Historical biogeography and climatic niche dynamics in spiny lizards of the genus Sceloporus (Squamata: Phrynosomatidae)

    Kevin López-Reyes, Jamie M Kass, Carlos Yáñez-Arenas, Fabricio Villalobos

    Biological Journal of the Linnean Society 2025年11月3日

    DOI: 10.1093/biolinnean/blaf117  

  12. National‐scale terrestrial biodiversity and ecosystem monitoring with essential biodiversity variables in Japan and Finland

    Yayoi Takeuchi, Lea Végh, Hibiki Noda, Kristin Böttcher, Petteri Vihervaara, Jamie M. Kass, Ichiro Hama, Yusuke Saito

    Ecological Research 2025年11月

    DOI: 10.1111/1440-1703.70011  

  13. Pathways to an integrated understanding of marine environments and ecosystems in the Asia-Pacific Region

    Hanani Adiwira, Sayaka Yasunaka, Jamie M. Kass, Ayşe H. O. Açıkbaş, Sekar Adiningsih, Emma Gairin, Hovaldo B. C. Ilham, Elisa Lahcene, Yanguo Li, Gaku Nishihira, Paula Peñalver-Pereira, Florence M. P. Sie, Charina Lyn Amedo-Repollo, Cheryl L. Ames, David Armitage, Åke Brännström, Ulf Dieckmann, Toyonobu Fujii, Filip Husnik, Michio Kawamiya, Takako Masuda, Charles Plessy, Lauren Sallan, Teruhisa Shimada, Sherwood Lan Smith, Peter G. Strutton, Anindya Wirasatriya, Toshio Suga

    Frontiers in Marine Science 12 2025年10月23日

    出版者・発行元: Frontiers Media SA

    DOI: 10.3389/fmars.2025.1680145  

    eISSN:2296-7745

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    The Asia-Pacific Region (APR) encompasses a vast geographical area rich in marine biodiversity that plays critical roles in global ecological stability and climate regulation, but it also faces daunting challenges in maintaining these roles under global change. Environmental dynamics in the APR manifest regularly over a range of timescales, including storms, earthquakes, floods, and extreme heat events. Further, coastal and marine ecosystems, including extensive commercial fisheries and coral reefs, are under threat from intense resource extraction and increasingly frequent marine heatwaves. Knowledge gaps for understanding these complex systems are aggravated by substantial barriers to cross-national efforts caused by the region’s vast diversity of cultures, languages, socioeconomics, politics, and management practices. Effective management of marine resources in the APR will necessitate multidisciplinary research based on continuous, region-wide observations supported by robust collaborations. In 2023, we gathered APR researchers across disciplines to discuss these issues and find solutions during a thematic seminar and workshop program at Tohoku University in Japan. Based on the results of this program, we present a review of the current state of APR marine ecosystems, raise key questions addressable through multidisciplinary approaches, and identify future priorities for the region. We conclude that sustaining biodiversity, ecosystem functions, and climate resilience in the APR will depend on stronger interdisciplinary collaboration, better integration of biological and geophysical data, and broader access to marine observations. These efforts are both urgent and essential for supporting better science-based policy decisions to address the escalating effects of global change on marine systems across the region.

  14. Integrating expert range maps and opportunistic occurrence records of marine fish species in range estimates

    Zhixin Zhang, Ákos Bede‐Fazekas, Jorge García Molinos, Stefano Mammola, Jamie M. Kass, Junmei Qu, Julian Oeser, Songxi Yuan, Chongliang Zhang, Jiqi Gu, Liuyong Ding, Qiang Lin

    Conservation Biology 2025年9月30日

    出版者・発行元: Wiley

    DOI: 10.1111/cobi.70154  

    ISSN:0888-8892

    eISSN:1523-1739

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    Abstract Species distribution models (SDMs) are commonly used to estimate species’ geographic distributions to inform biodiversity assessments and conservation planning. However, despite their growing popularity, range predictions of SDMs are affected by biases in opportunistic occurrence records and the lack of information on range limits. Integration of expert range maps in SDMs could help, but this strategy is still rarely used, especially for marine species. We built SDMs for 196 marine fish species with global distributions of Epinephelidae and Syngnathidae, 4 modeling algorithms, and opportunistic occurrence data. We then developed 2 types of SDM ensembles (i.e., combined predictions of multiple individual SDMs): with and without integration of expert range maps. We quantified the level of dissimilarity in range estimates between the 2 ensembles and explored the effects of taxonomic identity, geographic attributes, and conservation status on dissimilarity in model predictions. Although both types of ensembles had good predictive performance, ensembles informed by expert range maps avoided overpredictions of ranges past geographical barriers. Moreover, the dissimilarity between predictions of the 2 ensembles depended on multiple factors, including the number and extent of opportunistic occurrences, distance of occurrences to the expert range polygons, and fish family. Based on our findings, we recommend that researchers combine complementary information provided by expert range maps and opportunistic occurrences when predicting marine species distributions with SDMs.

  15. Adaptive radiation and social evolution of the ants

    Joel Vizueta, Zijun Xiong, Guo Ding, Rasmus S. Larsen, Hao Ran, Qionghua Gao, Josefin Stiller, Wei Dai, Wei Jiang, Jie Zhao, Chunxue Guo, Xiafang Zhang, Dashuang Zuo, Wenjiang Zhong, Morten Schiøtt, Chengyuan Liu, Hailin Zhang, Xueqin Dai, Ignasi Andreu, Yue Shi, Sandra Tretter, Ding He, Shubham Gautam, Zelin Li, Glenn Hickey, Aniek B.F. Ivens, Marie-Pierre Meurville, Francisco Hita-Garcia, Jamie M. Kass, Benoit Guénard, Corrie Moreau, Benedict Paten, Adria C. LeBoeuf, Evan P. Economo, Michel Chapuisat, Jonathan Z. Shik, Philip S. Ward, Jürgen Heinze, Ted R. Schultz, Qiye Li, Robert R. Dunn, Nathan J. Sanders, Weiwei Liu, Lukas Schrader, Jacobus J. Boomsma, Guojie Zhang

    Cell 188 (18) 4828-4848.e25 2025年9月

    出版者・発行元: Elsevier BV

    DOI: 10.1016/j.cell.2025.05.030  

    ISSN:0092-8674

  16. Differences in predictions of marine species distribution models based on expert maps and opportunistic occurrences 査読有り

    Zhixin Zhang, Jamie M. Kass, Ákos Bede‐Fazekas, Stefano Mammola, Junmei Qu, Jorge García Molinos, Jiqi Gu, Hongwei Huang, Meng Qu, Ying Yue, Geng Qin, Qiang Lin

    Conservation Biology 2025年8月

    DOI: 10.1111/cobi.70015  

  17. Forecasting alien species establishment and source regions: Quantitative assessment of potential ant invasions in Japan 査読有り

    Yazmín Zurápiti, Jamie M. Kass, Benoit Guénard, Evan P. Economo

    Ecological Applications 2025年7月

    DOI: 10.1002/eap.70071  

  18. 日本生態・進化英語セミナー(JEEES)の発足:国内での国際的な科学交流と人材育成の場を目指して 査読有り

    藤岡 春菜, 水元 惟暁, キャス ジェイミイ

    日本生態学会誌 75 (1) 119-126 2025年6月

    DOI: 10.18960/seitai.2402  

  19. Long‐Term Human Land‐Use Change Throughout Southeast Asia Reshapes the Distribution of Suitable Habitat for a Human‐Commensal Bird Species 査読有り

    Brenda R. Ramirez, Jamie M. Kass, Amanda J. Zellmer, Amanda K. Hund, Elizabeth S. C. Scordato

    Journal of Biogeography 2025年6月

    DOI: 10.1111/jbi.15123  

  20. Differences in factors determining taxon‐based and trait‐based community structures: a field test using zooplankton

    Hiromichi Suzuki, Hidetaka Ichiyanagi, Jamie M. Kass, Jotaro Urabe

    Limnology and Oceanography 2025年1月

    DOI: 10.1002/lno.12744  

  21. Common ant species dominate morphospace: unraveling the morphological diversity in the Brazilian Amazon Basin

    Joudellys Andrade‐Silva, Fabrício B. Baccaro, Lívia P. Prado, Benoit Guénard, Jamie M. Kass, Dan L. Warren, Evan P. Economo, Rogério R. Silva

    Ecography 2024年11月

    DOI: 10.1111/ecog.07121  

  22. Code sharing in ecology and evolution increases citation rates but remains uncommon

    Brian Maitner, Paul Efren Santos Andrade, Luna Lei, Jamie Kass, Hannah L. Owens, George C. G. Barbosa, Brad Boyle, Matiss Castorena, Brian J. Enquist, Xiao Feng, Daniel S. Park, Andrea Paz, Gonzalo Pinilla‐Buitrago, Cory Merow, Adam Wilson

    Ecology and Evolution 2024年8月

    DOI: 10.1002/ece3.70030  

  23. Global biogeographic regions for ants have complex relationships with those for plants and tetrapods

    Runxi Wang, Jamie M. Kass, Chhaya Chaudhary, Evan P. Economo, Benoit Guénard

    Nature Communications 2024年7月5日

    DOI: 10.1038/s41467-024-49918-2  

  24. Biodiversity modeling advances will improve predictions of nature’s contributions to people

    Jamie M. Kass, Keiichi Fukaya, Wilfried Thuiller, Akira S. Mori

    Trends in Ecology & Evolution 2024年4月

    DOI: 10.1016/j.tree.2023.10.011  

  25. Breakdown in seasonal dynamics of subtropical ant communities with land-cover change

    Jamie M. Kass, Masashi Yoshimura, Masako Ogasawara, Mayuko Suwabe, Francisco Hita Garcia, Georg Fischer, Kenneth Dudley, Ian Donohue, Evan P. Economo

    Proceedings of the Royal Society B: Biological Sciences 290 (2008) 20231185 2023年10月11日

    DOI: 10.1101/2023.01.17.523860   10.1098/rspb.2023.1185  

    ISSN:0962-8452 1471-2954

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    <jats:p>Concerns about widespread human-induced declines in insect populations are mounting, yet little is known about how land-use change modifies both the trends and variability of insect communities, particularly in understudied regions. Here, we examine how the seasonal activity patterns of ants—key drivers of terrestrial ecosystem functioning—vary with anthropogenic land-cover change on a subtropical island landscape, and whether differences in temperature or species composition can explain observed patterns. Using trap captures sampled biweekly over 2 years from a biodiversity monitoring network covering Okinawa Island, Japan, we processed 1.2 million individuals and reconstructed activity patterns within and across habitat types. Forest communities exhibited greater temporal variability of activity than those in more developed areas. Using time-series decomposition to deconstruct this pattern, we found that sites with greater human development exhibited ant communities with diminished seasonality, reduced synchrony and higher stochasticity compared with sites with greater forest cover. Our results cannot be explained by variation in regional or site temperature patterns, or by differences in species richness or composition among sites. Our study raises the possibility that disruptions to natural seasonal patterns of functionally key insect communities may comprise an important and underappreciated consequence of global environmental change that must be better understood across Earth's biomes.</jats:p>

  26. Genomic and environmental insights and conservation challenges for two hybridizing iconic crocodile species across Mexico: Crocodylus acutus and C. moreletii

    M. Suárez‐Atilano, G. Pacheco‐Sierra, Ella Vázquez-Domínguez, J. M. Kass, Andrea Paz, J. Pérez‐Alquicira

    Animal Conservation 2023年9月19日

    DOI: 10.1111/acv.12907  

    ISSN:1367-9430 1469-1795

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    <jats:title>Abstract</jats:title><jats:p>Hybridization is of key relevance for conservation of wild species, and yet it is still one of the most controversial issues in conservation. Identifying historical and contemporary factors promoting the formation and maintenance of hybrids is crucial for the management of endangered species, as well as characterizing the environmental factors and patterns of habitat use among parental species and their hybrids. Crocodiles are a conservation priority group since all 23 species recognized worldwide are in a protected category and hybridization occurs between many of their species, particularly between <jats:italic>Crocodylus acutus</jats:italic> and <jats:italic>C. moreletii</jats:italic>. Their hybridization system encompasses a geographically extensive hybrid zone, where two distinct hybrids and two <jats:italic>C. acutus</jats:italic> lineages have diverged and only a few geographically isolated populations of both parental species remain. We used a combined approach of genome‐wide sequencing and ecological niche modeling to discern the geographic and temporal patterns of introgression, migration, and demography, and to assess the ecological niches of the distinct lineages. Our approach enabled us to determine the spatial and temporal components of the divergence and admixture events of hybrids and non‐admixed lineages, to describe the environmental characteristics and geographic extent of areas of sympatry, and to confirm human‐mediated hybridization events. Our findings also showed overall distinct ranges and ecological niches among lineages, where hybrids presented a different set of environmental requirements from both parental species. This approach can be readily applied to different taxa and ecological contexts, providing species information on genetics and the environment with direct conservation relevance. We additionally describe the various conservation challenges that <jats:italic>C. acutus</jats:italic> and <jats:italic>C. moreletii</jats:italic> currently face, highlighting that these distinct crocodile species and hybrid lineages warrant recognition and need urgent conservation effort.</jats:p>

  27. Global determinants of insect mitochondrial genetic diversity

    Connor M. French, Laura D. Bertola, Ana C. Carnaval, Evan P. Economo, Jamie M. Kass, David J. Lohman, Katharine A. Marske, Rudolf Meier, Isaac Overcast, Andrew J. Rominger, Phillip P. A. Staniczenko, Michael J. Hickerson

    Nature Communications 14 (1) 2023年8月29日

    出版者・発行元: Springer Science and Business Media LLC

    DOI: 10.1038/s41467-023-40936-0  

    eISSN:2041-1723

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    Abstract Understanding global patterns of genetic diversity is essential for describing, monitoring, and preserving life on Earth. To date, efforts to map macrogenetic patterns have been restricted to vertebrates, which comprise only a small fraction of Earth’s biodiversity. Here, we construct a global map of predicted insect mitochondrial genetic diversity from cytochrome c oxidase subunit 1 sequences, derived from open data. We calculate the mitochondrial genetic diversity mean and genetic diversity evenness of insect assemblages across the globe, identify their environmental correlates, and make predictions of mitochondrial genetic diversity levels in unsampled areas based on environmental data. Using a large single-locus genetic dataset of over 2 million globally distributed and georeferenced mtDNA sequences, we find that mitochondrial genetic diversity evenness follows a quadratic latitudinal gradient peaking in the subtropics. Both mitochondrial genetic diversity mean and evenness positively correlate with seasonally hot temperatures, as well as climate stability since the last glacial maximum. Our models explain 27.9% and 24.0% of the observed variation in mitochondrial genetic diversity mean and evenness in insects, respectively, making an important step towards understanding global biodiversity patterns in the most diverse animal taxon.

  28. Code sharing increases citations, but remains uncommon

    Brian Maitner, Paul Santos-Andrade, Luna Lei, George Barbosa, Brad Boyle, Matiss Castorena, Brian Enquist, Xiao Feng, Jamie Kass, Hannah Owens, Daniel Park, Andrea Paz, Gonzalo Pinilla-Buitrago, Cory Merow, Adam Wilson

    ResearchSquare 2023年8月4日

    DOI: 10.21203/rs.3.rs-3222221/v1  

  29. Dynamic distribution modelling of the swamp tigertail dragonfly Synthemis eustalacta (Odonata: Anisoptera: Synthemistidae) over a 20-year bushfire regime

    Aaron M. Goodman, Jamie M. Kass, Jessica Ware

    Ecological Entomology 48 (2) 209-225 2023年4月

    DOI: 10.1111/een.13216  

    ISSN:0307-6946

    eISSN:1365-2311

  30. Geographic and climatic constraints on bioregionalization of European ants

    Runxi Wang, Jamie M. Kass, Christophe Galkowski, Federico Garcia, Matthew T. Hamer, Alexander Radchenko, Sebastian D. Salata, Enrico Schifani, Zalimkhan M. Yusupov, Evan P. Economo, Benoit Guenard

    Journal of Biogeography 50 (3) 503-514 2023年3月

    DOI: 10.1111/jbi.14546  

    ISSN:0305-0270

    eISSN:1365-2699

  31. wallace 2: a shiny app for modeling species niches and distributions redesigned to facilitate expansion via module contributions

    Jamie M. Kass, Gonzalo E. E. Pinilla-Buitrago, Andrea Paz, Bethany A. A. Johnson, Valentina Grisales-Betancur, Sarah I. I. Meenan, Dean Attali, Olivier Broennimann, Peter J. J. Galante, Brian S. S. Maitner, Hannah L. L. Owens, Sara Varela, Matthew E. E. Aiello-Lammens, Cory Merow, Mary E. E. Blair, Robert P. P. Anderson

    Ecography 2023 (3) 2023年3月

    DOI: 10.1111/ecog.06547  

    ISSN:0906-7590

    eISSN:1600-0587

  32. Better incentives are needed to reward academic software development. 国際誌

    Cory Merow, Brad Boyle, Brian J Enquist, Xiao Feng, Jamie M Kass, Brian S Maitner, Brian McGill, Hannah Owens, Daniel S Park, Andrea Paz, Gonzalo E Pinilla-Buitrago, Mark C Urban, Sara Varela, Adam M Wilson

    Nature Ecology & Evolution 2023年2月27日

    DOI: 10.1038/s41559-023-02008-w  

  33. changeRangeR: An R package for reproducible biodiversity change metrics from species distribution estimates

    Peter J. Galante, Samuel Chang Triguero, Andrea Paz, Matthew Aiello-Lammens, Beth E. Gerstner, Bethany A. Johnson, Jamie M. Kass, Cory Merow, Elkin A. Noguera-Urbano, Gonzalo E. Pinilla-Buitrago, Mary E. Blair

    Cconservation Science and Practice 5 (1) 2023年1月

    DOI: 10.1111/csp2.12863  

    eISSN:2578-4854

  34. Randomization analyses in niche and distribution modeling

    Dan Warren, Jamie Kass, Evan Economo

    EcoEvoRxiv 2022年9月1日

    DOI: 10.32942/OSF.IO/CKSPQ  

  35. The global distribution of known and undiscovered ant biodiversity

    Jamie M. Kass, Benoit Guénard, Kenneth L. Dudley, Clinton N. Jenkins, Fumika Azuma, Brian L. Fisher, Catherine L. Parr, Heloise Gibb, John T. Longino, Philip S. Ward, Anne Chao, David Lubertazzi, Michael Weiser, Walter Jetz, Robert Guralnick, Rumsaïs Blatrix, James Des Lauriers, David A. Donoso, Christos Georgiadis, Kiko Gomez, Peter G. Hawkes, Robert A. Johnson, John E. Lattke, Joe A. MacGown, William Mackay, Simon Robson, Nathan J. Sanders, Robert R. Dunn, Evan P. Economo

    Science Advances 2022年8月5日

    DOI: 10.1126/sciadv.abp9908  

  36. Linking ecological niche models and common garden experiments to predict phenotypic differentiation in stressful environments: Assessing the adaptive value of marginal populations in an alpine plant

    Javier Morente‐López, Jamie M. Kass, Carlos Lara‐Romero, Josep M. Serra‐Diaz, José Carmen Soto‐Correa, Robert P. Anderson, José M. Iriondo

    Global Change Biology 28 (13) 4143-4162 2022年7月

    出版者・発行元: Wiley

    DOI: 10.1111/gcb.16181   10.1101/2020.02.18.954867  

  37. A large‐scale assessment of ant diversity across the Brazilian Amazon Basin: integrating geographic, ecological and morphological drivers of sampling bias

    Joudellys Andrade‐Silva, Fabrício B. Baccaro, Lívia P. Prado, Benoit Guénard, Dan L. Warren, Jamie M. Kass, Evan P. Economo, Rogério R. Silva

    Ecography 2022年6月16日

    出版者・発行元: Wiley

    DOI: 10.1111/ecog.06295  

    ISSN:0906-7590

    eISSN:1600-0587

  38. Operationalizing expert knowledge in species' range estimates using diverse data types

    Cory Merow, Peter J. Galante, Jamie M. Kass, Matthew E. Aiello-Lammens, Cecina Babich Morrow, Beth E. Gerstner, Valentina Grisales Betancur, Alex C. Moore, Elkin A. Noguera-Urbano, Gonzalo E. Pinilla-Buitrago, Jorge Velásquez-Tibatá, Robert P. Anderson, Mary E. Blair

    Frontiers of Biogeography 14 (2) 2022年6月4日

    出版者・発行元: California Digital Library ({CDL})

    DOI: 10.21425/f5fbg53589  

    ISSN:1948-6596

  39. Idea paper: Improving forecasts of community composition with lightweight biodiversity monitoring across ecological and anthropogenic disturbance gradients

    Jamie M. Kass, Nao Takashina, Nicholas R. Friedman, Buntarou Kusumoto, Mary E. Blair

    Ecological Research 2022年1月17日

    出版者・発行元: Wiley

    DOI: 10.1111/1440-1703.12294  

    ISSN:0912-3814

    eISSN:1440-1703

  40. ENM2020: A FREE ONLINE COURSE AND SET OF RESOURCES ON MODELING SPECIES NICHES AND DISTRIBUTIONS

    A. Townsend Peterson, Matthew E. Aiello-Lammens, Giuseppe Amatulli, Robert P. Anderson, Marlon E. Cobos, Jose Alexandre F. Diniz-Filho, Luis E. Escobar, Xiao Feng, Janet Franklin, Luiz M. R. Gadelha, D. Georges, M. Gueguen, Tomer Gueta, Kate Ingenloff, Scott Jarvie, Laura Jimenez, Dirk N. Karger, Jamie M. Kass, Michael R. Kearney, Rafael Loyola, Fernando Machado-Stredel, Enrique Martinez-Meyer, Cory Merow, Maria Luiza Mondelli, Sara Ribeiro Mortara, Robert Muscarella, Corinne E. Myers, Babak Naimi, Daniel Noesgaard, Ian Ondo, Luis Osorio-Olvera, Hannah L. Owens, Richard Pearson, Gonzalo E. Pinilla-Buitrago, Andrea Sanchez-Tapia, Erin E. Saupe, Wilfried Thuiller, Sara Varela, Dan L. Warren, John Wieczorek, Katherine Yates, Gengping Zhu, Gabriela Zuquim, Damaris Zurell

    Biodiversity Informatics 17 1-9 2022年

    eISSN:1546-9735

  41. ENMeval 2.0: Redesigned for customizable and reproducible modeling of species’ niches and distributions

    Jamie M. Kass, Robert Muscarella, Peter J. Galante, Corentin L. Bohl, Gonzalo E. Pinilla‐Buitrago, Robert A. Boria, Mariano Soley‐Guardia, Robert P. Anderson

    Methods in Ecology and Evolution 2021年9月4日

    出版者・発行元: Wiley

    DOI: 10.1111/2041-210X.13628  

  42. occCite: Tools for querying and managing large biodiversity occurrence datasets

    Hannah L. Owens, Cory Merow, Brian S. Maitner, Jamie M. Kass, Vijay Barve, Robert P. Guralnick

    Ecography 2021年8月21日

    出版者・発行元: Wiley

    DOI: 10.1111/ecog.05618  

  43. Intraspecific genetic variation matters when predicting seagrass distribution under climate change

    Zi‐Min Hu, Quan‐Sheng Zhang, Jie Zhang, Jamie M. Kass, Stefano Mammola, Pablo Fresia, Stefano G. A. Draisma, Jorge Assis, Alexander Jueterbock, Masashi Yokota, Zhixin Zhang

    Molecular Ecology 30 (15) 3840-3855 2021年8月8日

    出版者・発行元: Wiley

    DOI: 10.1111/mec.15996  

  44. Temporal matching of occurrence localities and forest cover data helps improve range estimates and predict climate change vulnerabilities

    Maria Gavrutenko, Beth E. Gerstner, Jamie M. Kass, Steven M. Goodman, Robert P. Anderson

    Global Ecology and Conservation 27 2021年6月

    出版者・発行元: Elsevier {BV}

    DOI: 10.1016/j.gecco.2021.e01569  

  45. Lineage‐level distribution models lead to more realistic climate change predictions for a threatened crayfish

    Zhixin Zhang, Jamie M. Kass, Stefano Mammola, Itsuro Koizumi, Xuecao Li, Kazunori Tanaka, Kousuke Ikeda, Toru Suzuki, Masashi Yokota, Nisikawa Usio, Raimundo Real

    Diversity and Distributions 2021年4月21日

    出版者・発行元: Wiley

    DOI: 10.1111/ddi.13225  

    ISSN:1366-9516

    eISSN:1472-4642

  46. Explainable artificial intelligence enhances the ecological interpretability of black‐box species distribution models

    Masahiro Ryo, Boyan Angelov, Stefano Mammola, Jamie M. Kass, Blas M. Benito, Florian Hartig

    Ecography 2021年2月17日

    出版者・発行元: Wiley

    DOI: 10.1111/ecog.05360  

  47. Improving Area of Occupancy Estimates for Parapatric Species Using Distribution Models and Support Vector Machines

    Jamie M. Kass, Sarah I. Meenan, Nicolás Tinoco, Santiago F. Burneo, Robert P. Anderson

    The Bulletin of the Ecological Society of America 102 (1) 2021年1月4日

    出版者・発行元: Wiley

    DOI: 10.1002/bes2.1813   10.1002/eap.2228  

    ISSN:1939-5582 1051-0761

  48. Co-occurrence of invasive and native carnivorans affects occupancy patterns across environmental gradients

    Jamie M. Kass, Morgan W. Tingley, Tatsuyuki Tetsuya, Fumito Koike

    Biological Invasions 22 (7) 2251-2266 2020年7月16日

    出版者・発行元: Springer Science and Business Media {LLC}

    DOI: 10.1007/s10530-020-02254-0  

  49. Biotic predictors with phenological information improve range estimates for migrating monarch butterflies in Mexico

    Jamie M. Kass, Robert P. Anderson, Alejandro Espinosa‐Lucas, Verónica Juárez‐Jaimes, Esteban Martínez‐Salas, Francisco Botello, Gloria Tavera, José Juan Flores‐Martínez, Víctor Sánchez‐Cordero

    Ecography 2020年3月

    DOI: 10.1111/ecog.04886  

  50. Species' range model metadata standards: RMMS

    Cory Merow, Brian S. Maitner, Hannah L. Owens, Jamie M. Kass, Brian J. Enquist, Walter Jetz, Rob Guralnick, Antoine Guisan

    Global Ecology and Biogeography 28 (12) 1912-1924 2019年12月28日

    出版者・発行元: Wiley

    DOI: 10.1111/geb.12993  

  51. A new null model approach to quantify performance and significance for ecological niche models of species distributions

    Corentin L. Bohl, Jamie M. Kass, Robert P. Anderson

    Journal of Biogeography 46 (6) 1101-1111 2019年6月11日

    出版者・発行元: Wiley

    DOI: 10.1111/jbi.13573  

  52. Disentangling the genetic effects of refugial isolation and range expansion in a trans-continentally distributed species

    Jamie M. Kass

    Heredity 2018年8月31日

    DOI: 10.1038/s41437-018-0135-5  

  53. Wallace : A flexible platform for reproducible modeling of species niches and distributions built for community expansion

    Jamie M. Kass, Bruno Vilela, Matthew E. Aiello‐Lammens, Robert Muscarella, Cory Merow, Robert P. Anderson, Robert B. O’Hara

    Methods in Ecology and Evolution 9 (4) 1151-1156 2018年4月17日

    出版者・発行元: Wiley

    DOI: 10.1111/2041-210X.12945  

  54. Revised distributional estimates for the recently discovered olinguito (Bassaricyon neblina), with comments on natural and taxonomic history

    Gerstner, Beth E, Kass, Jamie M, Kays, Rol, Helgen, Kristofer M, Anderson, Robert P

    Journal of Mammalogy 99 (2) 2018年

    DOI: 10.1093/jmammal/gyy012  

  55. Toward ecologically realistic predictions of species distributions: a cross-time example from tropical montane cloud forests

    Guevara, Lázaro, Gerstner, Beth E., Kass, Jamie M., Anderson, Robert P.

    Global Change Biology 24 (4) 1511-1522 2017年

    DOI: 10.1111/gcb.13992  

  56. Polychlorinated biphenyls in the exterior caulk of San Francisco Bay Area buildings, California, USA

    Klosterhaus, Susan, McKee, Lester J, Yee, Donald, Kass, Jamie M, Wong, Adam

    Environment International 66 38-43 2014年

    出版者・発行元: Elsevier

  57. ENMeval: an R package for conducting spatially independent evaluations and estimating optimal model complexity for Maxent ecological niche models

    Muscarella, Robert, Galante, Peter J., Soley-Guardia, Mariano, Boria, Robert A., Kass, Jamie M., Uriarte, María, Anderson, Robert P.

    Methods in Ecology and Evolution 5 (11) 1198-1205 2014年

    DOI: 10.1111/2041-210X.12261  

  58. Climate change refugia for biodiversity in the Klamath-Siskiyou ecoregion

    Olson, David, DellaSala, Dominick A, Noss, Reed F, Strittholt, James R, Kass, Jamie, Koopman, Marni E, Allnutt, Thomas F

    Natural Areas Journal 32 (1) 65-74 2012年

    出版者・発行元: BioOne

︎全件表示 ︎最初の5件までを表示

書籍等出版物 1

  1. Uncertainty in Ecological Models

    Dan L. Warren, Lukas Baumbach, Jamie M. Kass, Alke Voskamp

    2025年

    DOI: 10.1007/978-3-031-85542-9_8  

講演・口頭発表等 38

  1. Investigating effects of land-use change on insect community seasonality with high-frequency biodiversity monitoring data 招待有り

    Kass, J. M.

    Environmental Science and Informatics Workshop 2025: Science for a Changing World, OIST 2025年9月9日

  2. Implementation and accessibility of modeling methods for production of Essential Biodiversity Variables

    Kass, J. M.

    11th East Asian Federation of Ecological Societies International Congress 2025年7月20日

  3. Addressing Wallacean shortfalls for understudied taxa with species distribution models 招待有り

    Kass, J. M.

    International Biogeography Society Funk Lecture Series 2025年6月25日

  4. Improving species distribution models by using a diversity of open-source tools

    Kass, J. M.

    第72回日本生態学会大会 2025年3月16日

  5. Data and Techniques for Biodiversity Modeling in the Marine Realm 招待有り

    Kass, J. M.

    Seascape Ecology: Towards Understanding the Mechanism of Biodiversity Structure and Better Management Strategy in the Oceans. The 22nd International Symposium on Integrated Field Science. Graduate School of Agricultural Science, Tohoku University 2025年3月14日

  6. How can we predict ecosystem services with biodiversity models? A potential roadmap 招待有り

    Kass, J. M.

    International Mini-Symposium on Global Change and Biodiversity. Research Institute for Sustainable Humanosphere, Kyoto University 2025年3月12日

  7. Biodiversity research and observation activities at Tohoku University 招待有り

    16th Annual Asia-Pacific Biodiversity Observation Network (APBON) Workshop ASEAN Centre for Biodiversity, University of the Philippines Los Baños 2025年1月29日

  8. Running a university lab in Japan as a foreigner, and other things I’m still learning how to do 招待有り

    Researcher Appreciation Month 2024 Theoretical Science Visiting Program Talk, OIST 2024年10月17日

  9. Biodiversity modeling for Essential Biodiversity Variables in the Asia-Pacific region: opportunities and challenges 招待有り

    Asia-Oceania Group on Earth Observations 16th Annual Meeting 2024年9月4日

  10. Predicting and mapping ecosystem services using biodiversity models and remote sensing data 招待有り

    Kass, J. M.

    第71回日本生態学会大会 2024年3月20日

  11. 生き物のニッチを推定することで、未来の自然を予測する 招待有り

    Kass, J. M.

    東北大学ILASコロキウム2023「若手研究者が語る『知』の最前線」 2023年11月14日

  12. Predicting the future of biodiversity and ecosystem services with species distribution models 招待有り

    Kass, J. M.

    日本生態学会東北地区会第68回大会 2023年11月11日

  13. 生物多様性の現在を調査し、将来を予測する 招待有り

    Kass, J. M.

    福島県立岩瀬農業高校・理学講演会 2023年10月7日

  14. Predicting future biodiversity with species distribution models: current applications, persistent issues, and where to go from here 招待有り

    Kass., J. M.

    RIKEN iTHEMS Seminar 2023年9月19日

  15. Advances in species distribution modeling and applications for predicting ecosystem functions and services 招待有り

    Kass, J. M.

    18th Asia-Pacific BON Webinar 2023年9月8日

  16. 生物多様性は何か、なぜ大切なのか、どうやって予測するのだろうか? 招待有り

    Kass, J. M.

    第38回生命科学交流ミーティング、生命科学研究科、東北大学 2023年7月24日

  17. Predicting ecosystem functions and services in space and time with biodiversity models

    Kass, J. M, Fukaya, K, Thuiller, W, Mori, A

    10th East Asia Federation of Ecological Societies (EAFES) International Congress 2023年7月19日

  18. Predicting future ecosystem service potential with biodiversity models 招待有り

    Kass, J. M

    9th DOIS Research Seminar, Graduate School of Frontier Sciences, University of Tokyo 2023年6月1日

  19. Using high-frequency ant activity data from an extensive island monitoring network to show the loss of seasonal patterns with land-cover change 招待有り

    Kass, J. M

    Ecological Approaches to Anthropogenic Environment, from Basic to Applied Joint Seminar: Hirosaki University - Obihiro University of Agriculture and Veterinary Medicine, OIST - Tokushima University 2022年10月31日

  20. Breakdown of ant community seasonal patterns with land-cover change across an island-wide monitoring network in Okinawa

    Kass, J. M.

    Tohoku University – OIST 3rd Joint Workshop on Biodiversity: From Genes and Species to Ecosystem Services and Resilience

  21. Urbanization breaks down insect seasonal patterns across an island-wide observation network

    Kass, J. M, Yoshida, T, Ogasawara, M, Suwabe, M, Yoshimura, M, Hita Garcia, F, Fischer, G, Dudley, K. L, Donohue, I, Economo, E. P

    North American Congress for Conservation Biology 2022

  22. Mapping known and undiscovered ant biodiversity across the globe and assessing agreement and mismatch with vertebrates

    Kass, J. M, Guénard, B, Jenkins, C, Dudley, K. L, Azuma, F, Fisher, B, Parr, C, Gibb, H, Longino, J. T, Ward, P. S, Chao, A, Shattuck, S, Lubertazzi, D, Weiser, M, Jetz, W, Guralnick, R, Sanders, N, Dunn, R, Economo, E. P

    International Biogeography Society 10th Biennial Conference

  23. 生物多様性の未来予測への挑戦 (鈴木賞発表) 招待有り

    Kass, J. M

    第69回日本生態学会大会 2022年3月15日

  24. 「森林・撹乱地」勾配に沿った沖縄アリ群集の季節性の減少

    Kass, J. M, Yoshida, T, Ogasawara, M, Suwabe, M, Yoshimura, M, Hita Garcia, F, Fischer, G, Dudley, K. L, Donohue, I, Economo, E. P

    第69回日本生態学会大会

  25. A global map of ant biodiversity, comparisons with vertebrates, and predictions of unknown hotspots

    Kass, JM, Guénard, B, Jenkins, C, Dudley, KL, Azuma, F, Fisher, B, Parr, C, Gibb, H, Longino, JT, Ward, PS, Chao, A, Shattuck, S, Lubertazzi, D, Weiser, M, Jetz, W, Guralnick, R, Sanders, N, Dunn, R, Economo, EP

    International Biogeography Society Early Career Biogeography Conference, Amsterdam (Online)

  26. Loss of seasonality across a forest-urban gradient for ant communities in Okinawa 招待有り

    Kass, JM, 芳田琢磨, 小笠原昌子, 諏訪部真友子, 吉村正志, Hita Garcia, F, Fischer, G, Dudley, KL, Donohue, I, Economo, EP

    日本生態学会関東地区会 公開オンラインシンポジウム 2021年7月26日

  27. 沖縄アリ群集の時間変動/種の相互作用を種の分布モデルに配慮する方法 招待有り

    Kass, JM

    横浜国立大学大学院環境情報研究院森章研究室公開セミナー 2021年7月20日

  28. 土地被覆と季節性が特徴づける沖縄アリ群集の時間変動

    Kass JM, Donohue, I, Economo, EP

    第68回日本生態学会大会

  29. Global patterns of ant diversity and congruence with other taxa

    Kass, JM, Guenard, B, Jenkins, CN, Dudley, K, Azuma, F, Chao, A, Dunn, R. R, Fisher, B. L, Gibb, H, Parr, C, Sanders, NJ, Weiser, MD, Economo, EP

    2020 Ecological Society of America Annual Meeting (virtual): Section: Big Data in Ecology – New Ecological Insights 8

  30. Wallace Ecological Modeling Application: flexible and reproducible modeling of species’ niches and distributions built for community expansion 招待有り

    Kass JM, Pinilla-Buitrago, GE

    ENM 2020: Online course in ecological niche modeling 2020年5月20日

  31. Data subsetting for evaluation of species distribution models 招待有り

    Kass, JM

    ENM 2020: Online course in ecological niche modeling 2020年4月6日

  32. 生物的相互作用と多様性情報を用いた種の分布と個体群変動の予測 招待有り

    Kass, JM

    国立環境研究所にて第19回『つくばE3セミナー』 2019年11月29日

  33. Using multispecies occupancy models to examine how co-occurrence patterns change over environmental gradients: invasive raccoons in a carnivoran assemblage in Japan

    Kass, JM

    Symposium on Asian Biodiversity Data and Research at CCNY 2019年1月28日

  34. Co-occurrence with two carnivorans results in differential occupancy for invasive raccoons in Japan

    Kass, JM, Tingley, MW, 鉄谷龍之, 小池文人

    98th Annual Meeting of the American Society of Mammalogists

  35. Exploring interactions between invasive raccoons and co-occurring carnivores in Japan using a multispecies dynamic occupancy model

    Kass, JM, Tingley, MW, 鉄谷龍之, 小池文人

    第65回日本生態学会大会

  36. Biotic predictors improve range estimates for migrating monarch butterflies in Mexico

    Kass, JM, Espinosa-Lucas, A, Botello, F, Martínez-Salas, E, Juárez-Jaimes, V, Tavera, G, Flores-Martínez, JJ, Sánchez-Cordero, V, Anderson, RP

    8th Annual Meeting, Student Conference on Conservation Science – New York, American Museum of Natural History

  37. Species interactions and their role in niche models: A study on two sympatric mustelids in the Northeast U.S.

    Kass, JM, Jensen, PG, Anderson, RP

    Ecological Society of America, 100th Annual Meeting

  38. Correlative Distribution Models for Marten and Fisher in the Northern Forest: Abiotic, Biotic, and Climate Change Drivers

    Kass, JM, Jensen, PG, Anderson, RP

    Vth International Wildlife Management CongressL Sapporo, Japan

︎全件表示 ︎最初の5件までを表示

共同研究・競争的資金等の研究課題 7

  1. ネイチャーポジティブ発展社会実現拠点

    2024年 ~ 2033年

    詳細を見る 詳細を閉じる

    最も根本的な資本である「自然」を適切に社会・経済活動に組み込むことで、社会と自然が互いを支え合いつつ発展する「ネイチャーポジティブ発展社会」を構築し、これらの自然関連課題を高いレベルで同時に解決することをミッションとする。私たちは本拠点を、この高い理想の実現に向けて産学官⺠が連携し「共創する場」として位置付け、その達成のため (1) 自然の価値を持続的に高め、その価値を可視化する、(2) ネイチャーポジティブな事業や活動に向けてお金が流れる仕組みを創出する、そして(3) ネイチャーポジティブ発展社会を支える人材を育てる、という3つのターゲットの実現を目指す。

  2. Predicting future biodiversity of ecosystem service providers in Japan using new approaches to quantify and reduce uncertainty

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Scientific Research (C)

    研究機関:Tohoku University

    2024年4月1日 ~ 2027年3月31日

  3. 将来の不確実性に頑健な保護区導入手法の構築およびその実装

    高科 直, KASS Jamie, 田中 俊徳, 久保田 康裕, 楠本 聞太郎, 諏訪部 真友子, 吉村 正志

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research

    研究種目:Grant-in-Aid for Scientific Research (B)

    研究機関:The University of Tokyo

    2023年4月1日 ~ 2027年3月31日

  4. プランクトンAI画像判別計数システムによる湖沼・ダム湖生態系監視手法の確立と展開

    占部 城太郎, KASS Jamie, 藤原 直樹, 一瀬 諭, 安達 孝実, 辻 彰洋, 牧野 渡, 伊藤 康一, 青木 孝文, 樋村 正雄, 杉島 英樹, 堀江 啓史, 吉成 暁, 阿部 真己, 高橋 巧

    2024年4月 ~ 2027年3月

  5. Holistic Genomic Approach to Asia-Pacific Marine Biodiversity

    2024年1月 ~ 2027年3月

  6. Monitoring and predicting ecosystem resilience of human-impacted lakes in Japan

    Jamie M. Kass, Samuel P. R. J. Ross

    提供機関:Okinawa Institute of Science and Technology Graduate University

    制度名:OIST SHINKA Grant

    2024年3月 ~ 2026年12月

  7. 在来と外来の沖縄アリ群集における時間変動のパターンとその原因

    ECONOMO Evan, KASS JAMIE

    提供機関:Japan Society for the Promotion of Science

    制度名:Grants-in-Aid for Scientific Research Grant-in-Aid for JSPS Fellows

    研究種目:Grant-in-Aid for JSPS Fellows

    研究機関:Okinawa Institute of Science and Technology Graduate University

    2020年9月25日 ~ 2023年3月31日

    詳細を見る 詳細を閉じる

    Since September 2020, much progress has been made on both proposed projects. We have finished most of the analyses for the community temporal variability project, and am in the process of finalizing the methods, interpreting results, and composing an outline for a manuscript. We have developed a unique methodology that combines community ecology metrics with time-series decomposition analysis to try and explain the mechanisms behind temporal variability. Kass presented on this project in Japanese at the Ecological Society of Japan’s 68th Annual Meeting (online). We have been working on the multispecies abundance modeling project with OIST Ph.D. candidate Yazmin Hanani Zurita Gutierrez, and we have entered a collaboration with colleagues from the University of Helsinki to analyze the data. Once we are done parameterizing and fitting the models, which are highly complex, we expect to have preliminary results soon. These results will be species interaction correlation matrices and modeled relationships between abundance and environmental predictor variables.

︎全件表示 ︎最初の5件までを表示

担当経験のある科目(授業) 10

  1. 研究課題1 東北大学生物学科 学部専門科目

  2. 生態発生適応科学特論2 東北大学生命科学研究科 大学院専門科目

  3. Ecology and Evolution 東北大学生物学科 学部専門科目

  4. 生物学演習1 東北大学生物学科 学部専門科目

  5. 生物学へのアプローチ 東北大学生物学科 学部専門科目

  6. 生態発生適応科学概論 東北大学生命科学研究科 大学院専門科目

  7. 種分布モデルの入門講義 Sapienza University, Rome, Italy (remote)

  8. Rプログラミング言語の基礎大学院生コース 沖縄科学技術大学院大学

  9. 地理生物学の大学院生講義(3つ) City College of New York, City University of New York

  10. 学部生の基本生物学ラボ、生態進化学ラボ City College of New York

︎全件表示 ︎最初の5件までを表示

メディア報道 4

  1. Kass准教授のコメントがOISTのウェブサイトに掲載されました。「OISTのエヴァン・エコノモ教授が、フロンティアズ プラネット賞のナショナル・チャンピオン(日本)に決定」

    東北大学生命科学研究科 最新情報 https://www.lifesci.tohoku.ac.jp/date/detail---id-51926.html

    2024年4月

    メディア報道種別: インターネットメディア

  2. 無脊椎動物の生物多様性が地球の健全性の鍵

    OIST https://www.oist.jp/ja/news-center/news/2024/4/23/biodiversity-invertebrates-key-planetary-health

    2024年4月

    メディア報道種別: インターネットメディア

  3. Cutting-edge Biodiversity Models Will Help Assess Nature's Vital Contributions to People

    Tohoku University Research News https://www.tohoku.ac.jp/en/press/cuttingedge_biodiversity_models_help_assess_natures_vital_contribution_to_people.html

    2023年12月

    メディア報道種別: インターネットメディア

  4. Okinawa’s ants change their seasonal rhythms amid land-cover changes

    OIST Research Updates https://www.oist.jp/news-center/news/2023/10/27/okinawas-ants-change-their-seasonal-rhythms-amid-land-cover-changes

    2023年10月

    メディア報道種別: インターネットメディア

学術貢献活動 2

  1. Pathways Toward an Integrated Understanding of the Marine Environment and Marine Ecosystems

    2023年12月5日 ~ 2023年12月6日

  2. International Symposium: Past, Present, and Future of the Marine Environment and Ecosystems

    2023年10月18日 ~ 2023年10月19日