Humsa Venkatesh

Affiliations: 
Stanford University, Palo Alto, CA 
Google:
"Humsa Venkatesh"
Mean distance: (not calculated yet)
 
BETA: Related publications

Publications

You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect.

Taylor KR, Barron T, Hui A, et al. (2023) Glioma synapses recruit mechanisms of adaptive plasticity. Nature
Venkatesh HS. (2023) Targeting electrochemical communication between neurons and cancer. Science Translational Medicine. 15: eadi5170
Krishna S, Choudhury A, Keough MB, et al. (2023) Glioblastoma remodelling of human neural circuits decreases survival. Nature
Winkler F, Venkatesh HS, Amit M, et al. (2023) Cancer neuroscience: State of the field, emerging directions. Cell. 186: 1689-1707
Savchuk S, Gentry K, Wang W, et al. (2023) Neuronal-Activity Dependent Mechanisms of Small Cell Lung Cancer Progression. Biorxiv : the Preprint Server For Biology
Gibson EM, Bennett FC, Gillespie SM, et al. (2020) How Support of Early Career Researchers Can Reset Science in the Post-COVID19 World. Cell
Krishna S, Choudhury A, Ni L, et al. (2020) TAMI-21. MALIGNANT GLIOMAS REMODEL FUNCTIONAL NEURAL CIRCUITS THROUGH PARACRINE SIGNALING WHICH CONFERS A NEGATIVE PROGNOSIS Neuro-Oncology. 22: ii217-ii218
Venkatesh HS, Morishita W, Geraghty AC, et al. (2019) Electrical and synaptic integration of glioma into neural circuits. Nature
Venkatesh H, Morishita W, Geraghty A, et al. (2019) TMIC-18. ELECTRICAL CIRCUIT INTEGRATION OF GLIOMA THROUGH NEURON-GLIOMA SYNAPSES AND POTASSIUM CURRENTS Neuro-Oncology. 21: vi251-vi251
Venkatesh H, Morishita W, Geraghty A, et al. (2019) DIPG-21. ELECTRICAL INTEGRATION OF GLIOMA INTO NEURAL CIRCUITRY Neuro-Oncology. 21: ii73-ii73
See more...