Lillian G Clark
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Researcher
Graduate Student Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Lillian G Clark's research focuses on the molecular mechanisms underlying reproductive health, specifically investigating gonadotrope remodeling in states of sustained low estrogen. Her work utilizes single-cell transcriptomic analysis to identify distinct gonadotrope subtypes and to understand the activation of stem cell populations within this context. Clark has one publication, co-authored with Stephanie D. Byrum, which examines these processes in detail. Her recent activity indicates ongoing engagement in this area of study.
Metrics
- h-index: 1
- Publications: 1
- Citations: 1
Selected Publications
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Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations (2026)
Collaboration Network
Top Collaborators
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
- Gonadotrope remodeling in sustained low estrogen states: single-cell transcriptomic analysis reveals gonadotrope subtypes and activation of stem cell populations
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