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Organismal form is the product of a complex suite of interacting developmental processes. Variation in these processes allows mammals to adapt to changing environments, but also generates congenital malformations in humans. Developmental variation therefore presents a unifying concept for evolutionary biology and biomedicine, whose understanding is critical to the success of both fields. My primary research goals are to determine how developmental variation interacts with environmental factors within a species to produce congenital malformations in humans, and among species to generate new evolutionary adaptations in mammals. To pursue these goals, I characterize developmental variation across biological scales, and interpret how this variation drives evolution and malformations in form. I incorporate data from fields from paleontology to mathematics to genomics to developmental biology. I also study multiple model and non-model mammals (e.g., mouse, bat, cat, deer, horse, pig, opossum). I use this approach to investigate three major topics: mammalian limb evolution and development, major evolutionary transformations during mammalian evolution, and mammalian sensory system evolution.
Organismal form is the product of a complex suite of interacting developmental processes. Variation in these processes allows mammals to adapt to changing environments, but also generates congenital malformations in humans. Developmental variation therefore presents a unifying concept for evolutionary biology and biomedicine, whose understanding is critical to the success of both fields. My primary research goals are to determine how developmental variation interacts with environmental factors within a species to produce congenital malformations in humans, and among species to generate new evolutionary adaptations in mammals. To pursue these goals, I characterize developmental variation across biological scales, and interpret how this variation drives evolution and malformations in form. I incorporate data from fields from paleontology to mathematics to genomics to developmental biology. I also study multiple model and non-model mammals (e.g., mouse, bat, cat, deer, horse, pig, opossum). I use this approach to investigate three major topics: mammalian limb evolution and development, major evolutionary transformations during mammalian evolution, and mammalian sensory system evolution.
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论文共 123 篇作者统计合作学者相似作者
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DEVELOPMENTno. 2 (2024)
David M. Grossnickle,Alexa Sadier, Edward Patterson, Nashaly N. Cortés-Viruet, Stephanie M. Jiménez-Rivera,Karen E. Sears,Sharlene E. Santana
Current Biology (2024)
Neal Anthwal,Ronald P. Hall, Frederik Aneudy de la Rosa Hernandez, Michael Koger,Laurel R. Yohe,Brandon P. Hedrick,Kalina T. J. Davies,Gregory L. Mutumi,Charles C. Roseman,Elizabeth R. Dumont,Liliana M. Davalos,Stephen J. Rossiter,
Anatomical record (Hoboken, N.J. : 2007) (2023)
A. T. Lu,Z. Fei,A. Haghani,T. R. Robeck,J. A. Zoller,C. Z. Li, R. Lowe, Q. Yan,J. Zhang, H. Vu, J. Ablaeva, V. A. Acosta-Rodriguez,
user-5f8411ab4c775e9685ff56d3(2023)
David M. Grossnickle,Alexa Sadier, E. M. Patterson, Nashaly N. Cortés-Viruet, Sofía Rivera,Karen E. Sears,Sharlene E. Santana
bioRxiv (Cold Spring Harbor Laboratory) (2023)
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