Julia Baranyk
Researcher
Graduate Student Researcher
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Julia Baranyk's research focuses on understanding cell-type diversity within cnidarian mechanosensory neurons. Her work utilizes structural, molecular, and developmental evidence to investigate these specialized neurons, which are crucial for sensing mechanical stimuli. Baranyk collaborates with researchers at the University of Arkansas at Fayetteville, including Nagayasu Nakanishi, Miguel A.P. Silva, Kristen Malir, and Sakura Rieck, with whom she shares multiple publications. Her scholarly output includes three publications, with an h-index of 1 and a total of 8 citations. Baranyk's recent work highlights the complexity of sensory systems in these marine invertebrates.
Metrics
- h-index: 1
- Publications: 3
- Citations: 8
Selected Publications
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Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons (2025)
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Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons (2024)
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Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons (2024)
Collaboration Network
Top Collaborators
- Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural, molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
- Structural molecular and developmental evidence for cell-type diversity in cnidarian mechanosensory neurons
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