Jenny Hsieh
#99,092
Most Influential Person Now
American cell biologist
Jenny Hsieh's AcademicInfluence.com Rankings
Jenny Hsiehbiology Degrees
Biology
#7667
World Rank
#10621
Historical Rank
Developmental Biology
#229
World Rank
#237
Historical Rank
Cell Biology
#434
World Rank
#445
Historical Rank
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Biology
Jenny Hsieh's Degrees
- Bachelors Biology Stanford University
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Why Is Jenny Hsieh Influential?
(Suggest an Edit or Addition)According to Wikipedia, Jenny Hsieh is an American cell biologist and Semmes Foundation professor at the University of Texas at San Antonio . Her work focuses on epilepsy and stem cell biology. Education Hsieh received her PhD from Johns Hopkins University, where she worked with Andrew Fire. In 2005, Hsieh completed a postdoctoral fellowship with Fred Gage at the Salk Institute.
Jenny Hsieh's Published Works
Published Works
- Histone deacetylase inhibition-mediated neuronal differentiation of multipotent adult neural progenitor cells. (2004) (696)
- Wnt-mediated activation of NeuroD1 and retro-elements during adult neurogenesis (2009) (611)
- HDAC1 and HDAC2 Regulate Oligodendrocyte Differentiation By Disrupting β-Catenin-TCF Interaction (2009) (510)
- A Small Modulatory dsRNA Specifies the Fate of Adult Neural Stem Cells (2004) (446)
- Neurod1 is essential for the survival and maturation of adult-born neurons (2009) (410)
- Epigenetic Modulation of Seizure-Induced Neurogenesis and Cognitive Decline (2007) (350)
- IGF-I instructs multipotent adult neural progenitor cells to become oligodendrocytes (2004) (335)
- Aberrant hippocampal neurogenesis contributes to epilepsy and associated cognitive decline (2015) (317)
- Discovery of a Proneurogenic, Neuroprotective Chemical (2010) (297)
- Histone deacetylases 1 and 2 control the progression of neural precursors to neurons during brain development (2009) (296)
- Notch1 Is Required for Maintenance of the Reservoir of Adult Hippocampal Stem Cells (2010) (287)
- The oligodendrocyte-specific G-protein coupled receptor GPR17 is a cell-intrinsic timer of myelination (2009) (274)
- The Master Negative Regulator REST/NRSF Controls Adult Neurogenesis by Restraining the Neurogenic Program in Quiescent Stem Cells (2011) (233)
- Chromatin remodeling in neural development and plasticity. (2005) (223)
- Epigenetic control of neural stem cell fate. (2004) (221)
- Orchestrating transcriptional control of adult neurogenesis. (2012) (203)
- MicroRNA Regulation of Neural Stem Cells and Neurogenesis (2010) (193)
- Epigenetics, hippocampal neurogenesis, and neuropsychiatric disorders: Unraveling the genome to understand the mind (2010) (150)
- Small-molecule activation of neuronal cell fate. (2008) (136)
- Cardiogenic small molecules that enhance myocardial repair by stem cells (2008) (132)
- Increased neurogenesis in dentate gyrus of long-lived Ames dwarf mice. (2005) (94)
- Epigenetic regulation of neural cell differentiation plasticity in the adult mammalian brain (2008) (85)
- NEUROD1 Instructs Neuronal Conversion in Non-Reactive Astrocytes (2017) (77)
- Suppression of Adult Neurogenesis Increases the Acute Effects of Kainic Acid (2015) (68)
- Functional and mechanistic exploration of an adult neurogenesis‐promoting small molecule (2012) (62)
- HDAC3 controls gap 2/mitosis progression in adult neural stem/progenitor cells by regulating CDK1 levels (2014) (55)
- The REST remodeling complex protects genomic integrity during embryonic neurogenesis (2016) (52)
- SARS-CoV-2 targets glial cells in human cortical organoids (2021) (51)
- Genetics and Epigenetics in Adult Neurogenesis. (2016) (47)
- Epigenetics and epilepsy (2012) (47)
- REST regulation of gene networks in adult neural stem cells (2016) (45)
- Small-molecule blocks malignant astrocyte proliferation and induces neuronal gene expression. (2011) (31)
- Retinoblastoma protein controls growth, survival and neuronal migration in human cerebral organoids (2017) (31)
- A critical period of neuronal activity results in aberrant neurogenesis rewiring hippocampal circuitry in a mouse model of epilepsy (2021) (30)
- Mice with conditional NeuroD1 knockout display reduced aberrant hippocampal neurogenesis but no change in epileptic seizures (2017) (26)
- The NRSE smRNA specifies the fate of adult hippocampal neural stem cells. (2005) (24)
- Profiling of REST-Dependent microRNAs Reveals Dynamic Modes of Expression (2012) (23)
- Inducible knockout of Mef2a, ‐c, and ‐d from nestin‐expressing stem/progenitor cells and their progeny unexpectedly uncouples neurogenesis and dendritogenesis in vivo (2015) (21)
- Targeting Seizure-Induced Neurogenesis in a Clinically Relevant Time Period Leads to Transient But Not Persistent Seizure Reduction (2019) (20)
- Neural stem cells and epilepsy: functional roles and disease-in-a-dish models (2017) (18)
- Role of RB1 in human embryonic stem cell-derived retinal organoids. (2020) (17)
- Human Brain Organoid Models of Developmental Epilepsies (2020) (14)
- Novel Targets of SARS-CoV-2 Spike Protein in Human Fetal Brain Development Suggest Early Pregnancy Vulnerability (2021) (13)
- Stem cells: A path towards improved epilepsy therapies (2020) (12)
- Circuit Integration Initiation of New Hippocampal Neurons in the Adult Brain. (2020) (10)
- The lncRNA Pnky in the brain. (2015) (10)
- Neural Stem Cells, Excited (2013) (10)
- CHD2: One Gene, Many Roles (2018) (7)
- One-Hit Wonders and 2-Hit Tubers: A Second-Hit to TSC2 Causes Tuber-Like Cells in Spheroids (2019) (5)
- You Have Brains in Your Head, You Have Organoids in Your Dish, you Can Steer Yourself in any Direction you Wish (2017) (5)
- Microglial TLR9: Guardians of Homeostatic Hippocampal Neurogenesis (2016) (4)
- HDAC1 Regulates Neuronal Differentiation (2022) (3)
- RB controls growth, survival, and neuronal migration in human cerebral organoids (2017) (3)
- Harnessing adult neurogenesis by cracking the epigenetic code (2012) (3)
- Chapter 12 – Adult Neurogenesis (2013) (2)
- Charactering hESCs Organoids from Electrical Signals with Machine Learning (2019) (2)
- Dysregulation of hippocampal adult-born immature neurons disrupts a brain-wide network for spatial memory (2020) (2)
- Retinoblastoma protein controls growth, survival and neuronal migration in human cerebral organoids (2017) (2)
- Buprenorphine Exposure Alters the Development and Migration of Interneurons in the Cortex (2020) (2)
- Rise and Fall of the Empire: Conquering Alzheimer’s Disease by Targeting Adult Neurogenesis (2019) (1)
- GABAergic Interneurons-in-a-Dish: High Five for Epilepsy (2016) (1)
- Gene Expression Regulation: Chromatin Modification in the CNS (2009) (1)
- Gestational Buprenorphine Exposure Disrupts Dopamine Neuron Activity and Related Behaviors in Adulthood (2022) (1)
- On your (methyl) mark, get TET1, go! (2013) (1)
- Neurogenesis in Cancun: where science meets the sea (2016) (0)
- Lessons of the month 3: Mosaic Klinefelter syndrome unveiled by acute vertebral fracture in a middle-aged man. (2021) (0)
- Genome-Wide Identification of Transcription Factor-Binding Sites in Quiescent Adult Neural Stem Cells. (2018) (0)
- Deep Blue “Seq”: Fishing for Epilepsy Genes (2016) (0)
- 16 Genetics and Epigenetics in Adult Neurogenesis (2008) (0)
- Author response: The REST remodeling complex protects genomic integrity during embryonic neurogenesis (2015) (0)
- Neural stem cells and epilepsy: functional roles and disease-in-a-dish models (2017) (0)
- Heterozygous STXBP1 Mutations Associated with Ohtahara Syndrome: Two Littles Make a Lot (2016) (0)
- Epigenetic mechanism regulating fate specification and plasticity of neural cells (2007) (0)
- M45 ANALYSIS OF 5-HYDROXYMETHYLATION PROFILES DURING NEURONAL DIFFERENTIATION AND IMPLICATIONS FOR BIPOLAR DISORDER (2019) (0)
- Integrated omics approach reveals transcription factor binding associated with regulation of ribosome biogenesis genes in adult neural stem cells (2017) (0)
- Blocking Lin28a prevents epilepsy-associated cognitive impairment by ameliorating aberrant hippocampal neurogenesis (2019) (0)
- Linking Adult Neurogenesis to Epilepsy Through Epigenetics (2015) (0)
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What Schools Are Affiliated With Jenny Hsieh?
Jenny Hsieh is affiliated with the following schools: