Sharad Ramanathan

Affiliations: 
Molecular and Cellular Biology Harvard University, Cambridge, MA, United States 
Area:
Biology
Website:
http://www.fas.harvard.edu/~biophys/Sharad_Ramanathan.htm
Google:
"Sharad Ramanathan"
Bio:

https://www.mcb.harvard.edu/mcb/faculty/profile/sharad-ramanathan/
http://sysbio.harvard.edu/csb/research/ramanathan.html
https://www.mcb.harvard.edu/mcb/news/news-detail/3686/sharad-ramanathan-receives-tenure/

Mean distance: 13.77
 
SNBCP
Cross-listing: Chemistry Tree

Parents

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Daniel S. Fisher grad student 1997 Harvard
 (Crack propagation through heterogeneous media)

Children

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Giridhar Anand grad student Harvard (Chemistry Tree)
Leon Furchtgott grad student Harvard
Timothy Hallacy grad student Harvard (Chemistry Tree)
Roya Huang grad student Harvard (Chemistry Tree)
Sumin Jang grad student Harvard
Jeffery Lee grad student (Chemistry Tree)
Megan Nicole McClean grad student
Samuel Melton grad student Harvard (Chemistry Tree)
Josselin Milloz grad student Harvard
Ching Han Shen grad student
James Valcourt grad student Harvard (Chemistry Tree)
Ilker Yilmaz grad student Harvard
Zhechun Zhang grad student Harvard (Chemistry Tree)
Steven Zwick grad student Harvard (Chemistry Tree)
Deniz C Aksel grad student 2016- Harvard (Chemistry Tree)
Zengcai Guo grad student 2010 Harvard
Matthew W. Thomson grad student 2011 Harvard
Adele Doyle post-doc Harvard (Neurotree)
Oskar Hallatschek post-doc UC Berkeley
Pascal Hersen post-doc CNRS, Paris
Askin Kocabas post-doc Koc University
Areez M. Mody post-doc Harvard
Iftach Nachman post-doc Tel Aviv University
Ling-Nian Zou post-doc Harvard
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Publications

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Melton S, Ramanathan S. (2020) Discovering a sparse set of pairwise discriminating features in high dimensional data. Bioinformatics (Oxford, England)
Zhang Z, Zwick S, Loew E, et al. (2019) Mouse embryo geometry drives formation of robust signaling gradients through receptor localization. Nature Communications. 10: 4516
Lee JB, Yonar A, Hallacy T, et al. (2019) A compressed sensing framework for efficient dissection of neural circuits. Nature Methods. 16: 126-133
Close JL, Yao Z, Levi BP, et al. (2017) Single-Cell Profiling of an In Vitro Model of Human Interneuron Development Reveals Temporal Dynamics of Cell Type Production and Maturation. Neuron. 96: 949
Furchtgott LA, Melton S, Menon V, et al. (2017) Discovering sparse transcription factor codes for cell states and state transitions during development. Elife. 6
Jang S, Choubey S, Furchtgott L, et al. (2017) Dynamics of embryonic stem cell differentiation inferred from single-cell transcriptomics show a series of transitions through discrete cell states. Elife. 6
Close JL, Yao Z, Levi BP, et al. (2017) Single-Cell Profiling of an In Vitro Model of Human Interneuron Development Reveals Temporal Dynamics of Cell Type Production and Maturation. Neuron. 93: 1035-1048.e5
Yao Z, Mich JK, Ku S, et al. (2017) A Single-Cell Roadmap of Lineage Bifurcation in Human ESC Models of Embryonic Brain Development. Cell Stem Cell. 20: 120-134
Ramanathan S, Custodio JM, Wei X, et al. (2016) Pharmacokinetics of Co-formulated Elvitegravir/Cobicistat/Emtricitabine/Tenofovir Disoproxil Fumarate following Switch from Efavirenz/Emtricitabine/Tenofovir Disoproxil Fumarate in Healthy Subjects. Journal of Acquired Immune Deficiency Syndromes (1999)
Cepero-Donates Y, Lacraz G, Ghobadi F, et al. (2016) Interleukin-15-mediated inflammation promotes non-alcoholic fatty liver disease. Cytokine
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