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Frontiers | On Biophysical Properties and Sensitivity to Gap Junction  Blockers of Connexin 39 Hemichannels Expressed in HeLa Cells | Physiology
Frontiers | On Biophysical Properties and Sensitivity to Gap Junction Blockers of Connexin 39 Hemichannels Expressed in HeLa Cells | Physiology

PARIS, an optogenetic method for functionally mapping gap junctions |  bioRxiv
PARIS, an optogenetic method for functionally mapping gap junctions | bioRxiv

Gap junction - Wikipedia
Gap junction - Wikipedia

A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric  Oxide Release in the Retina - ScienceDirect
A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric Oxide Release in the Retina - ScienceDirect

PARIS, an optogenetic method for functionally mapping gap junctions |  bioRxiv
PARIS, an optogenetic method for functionally mapping gap junctions | bioRxiv

Regulation of interneuron excitability by gap junction coupling with  principal cells | Semantic Scholar
Regulation of interneuron excitability by gap junction coupling with principal cells | Semantic Scholar

Connexins: Key Players in the Control of Vascular Plasticity and Function |  Physiological Reviews
Connexins: Key Players in the Control of Vascular Plasticity and Function | Physiological Reviews

Frontiers | Connexin-43 Gap Junctions Are Responsible for the Hypothalamic  Tanycyte-Coupled Network | Cellular Neuroscience
Frontiers | Connexin-43 Gap Junctions Are Responsible for the Hypothalamic Tanycyte-Coupled Network | Cellular Neuroscience

An electrostatic mechanism for Ca 2+ -mediated regulation of gap junction  channels | Nature Communications
An electrostatic mechanism for Ca 2+ -mediated regulation of gap junction channels | Nature Communications

Myriad Roles for Gap Junctions in Retinal Circuits – Webvision
Myriad Roles for Gap Junctions in Retinal Circuits – Webvision

IJMS | Free Full-Text | Gap Junction Channels of Innexins and Connexins:  Relations and Computational Perspectives | HTML
IJMS | Free Full-Text | Gap Junction Channels of Innexins and Connexins: Relations and Computational Perspectives | HTML

PARIS, an optogenetic method for functionally mapping gap junctions |  bioRxiv
PARIS, an optogenetic method for functionally mapping gap junctions | bioRxiv

Cancers | Free Full-Text | Communication in the Cancer Microenvironment as  a Target for Therapeutic Interventions | HTML
Cancers | Free Full-Text | Communication in the Cancer Microenvironment as a Target for Therapeutic Interventions | HTML

A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric  Oxide Release in the Retina - ScienceDirect
A Self-Regulating Gap Junction Network of Amacrine Cells Controls Nitric Oxide Release in the Retina - ScienceDirect

Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina  - ScienceDirect
Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina - ScienceDirect

Myriad Roles for Gap Junctions in Retinal Circuits – Webvision
Myriad Roles for Gap Junctions in Retinal Circuits – Webvision

Hexadecameric structure of an invertebrate gap junction channel -  ScienceDirect
Hexadecameric structure of an invertebrate gap junction channel - ScienceDirect

Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina  - ScienceDirect
Gap Junction Coupling Shapes the Encoding of Light in the Developing Retina - ScienceDirect

Structure and Function of a Bacterial Gap Junction Analog - ScienceDirect
Structure and Function of a Bacterial Gap Junction Analog - ScienceDirect

Gap junction - Wikipedia
Gap junction - Wikipedia

Limited contribution of astroglial gap junction coupling to buffering of  extracellular K+ in CA1 stratum radiatum - Breithausen - 2020 - Glia -  Wiley Online Library
Limited contribution of astroglial gap junction coupling to buffering of extracellular K+ in CA1 stratum radiatum - Breithausen - 2020 - Glia - Wiley Online Library

Myriad Roles for Gap Junctions in Retinal Circuits – Webvision
Myriad Roles for Gap Junctions in Retinal Circuits – Webvision

Limited contribution of astroglial gap junction coupling to buffering of  extracellular K+ in CA1 stratum radiatum - Breithausen - 2020 - Glia -  Wiley Online Library
Limited contribution of astroglial gap junction coupling to buffering of extracellular K+ in CA1 stratum radiatum - Breithausen - 2020 - Glia - Wiley Online Library