Jeremy S. Dasen
Affiliations: | New York University School of Medicine, New York, NY, United States |
Area:
Developmental NeurobiologyGoogle:
"Jeremy Dasen"Mean distance: 13.96 (cluster 11) | S | N | B | C | P |
Cross-listing: DevTree
Parents
Sign in to add mentorMichael G. Rosenfeld | grad student | NYU School of Medicine | |
Thomas M. Jessell | post-doc | NYU School of Medicine |
Children
Sign in to add traineeHeekyung Jung | grad student | NYU School of Medicine | |
Kristen P. D'Elia | grad student | 2016- | NYU School of Medicine |
Sara J. Fenstermacher | post-doc | NYU Langone Medical Center | |
Myungin Baek | post-doc | 2011- | NYUMC |
Julie Lacombe | post-doc | 2008-2011 |
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Publications
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Thomasen PB, Salasova A, Kjaer-Sorensen K, et al. (2023) SorCS2 binds progranulin to regulate motor neuron development. Cell Reports. 42: 113333 |
D'Elia KP, Hameedy H, Goldblatt D, et al. (2023) Determinants of motor neuron functional subtypes important for locomotor speed. Cell Reports. 42: 113049 |
Miller A, Dasen JS. (2023) Establishing and maintaining Hox profiles during spinal cord development. Seminars in Cell & Developmental Biology |
Yoo D, Park J, Lee C, et al. (2022) Little skate genome provides insights into genetic programs essential for limb-based locomotion. Elife. 11 |
Dasen JS. (2022) Establishing the Molecular and Functional Diversity of Spinal Motoneurons. Advances in Neurobiology. 28: 3-44 |
Sawai A, Pfennig S, Bulajić M, et al. (2022) PRC1 sustains the integrity of neural fate in the absence of PRC2 function. Elife. 11 |
Bulajić M, Srivastava D, Dasen JS, et al. (2020) Differential abilities to engage inaccessible chromatin diversify vertebrate HOX binding patterns. Development (Cambridge, England) |
Shin MM, Catela C, Dasen J. (2020) Intrinsic control of neuronal diversity and synaptic specificity in a proprioceptive circuit. Elife. 9 |
Shin MM, Catela C, Dasen J. (2020) Author response: Intrinsic control of neuronal diversity and synaptic specificity in a proprioceptive circuit Elife |
Baek M, Menon V, Jessell TM, et al. (2019) Molecular Logic of Spinocerebellar Tract Neuron Diversity and Connectivity. Cell Reports. 27: 2620-2635.e4 |