JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Image shows two strategies for extracellular labeling of TRPV1. Mott, Eric Senning et al. present fluorescence labeling strategies for cell surface expression of TRPV1: hubs.la/Q02LVT490 #CellBiology #Biophysics #Biochemistry #CellularPhysiology #Neuroscience #Pain

Image shows two strategies for extracellular labeling of TRPV1. Mott, <a href="/endsenn/">Eric Senning</a> et al. present fluorescence labeling strategies for cell surface expression of TRPV1: hubs.la/Q02LVT490

#CellBiology #Biophysics #Biochemistry #CellularPhysiology #Neuroscience #Pain
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Fluorescence labeling strategies for cell surface expression of TRPV1. New study from Taylor Mott, Eric Senning Eric Senning UT Austin and colleagues: hubs.la/Q02LVRPQ0 #CellBiology #Biophysics #Biochemistry #CellularPhysiology #Neuroscience #Pain

Fluorescence labeling strategies for cell surface expression of TRPV1. New study from Taylor Mott, Eric Senning <a href="/endsenn/">Eric Senning</a> <a href="/UTAustin/">UT Austin</a> and colleagues: hubs.la/Q02LVRPQ0

#CellBiology #Biophysics #Biochemistry #CellularPhysiology #Neuroscience #Pain
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Epilepsy-associated Kv1.1 channel subunits regulate intrinsic cardiac pacemaking in mice, say Man Si (Man), Edward Glasscock Glasscock Lab SMU Biology and colleagues: hubs.la/Q02HrTM60 #Biophysics #CellularPhysiology #IonChannels

Epilepsy-associated Kv1.1 channel subunits regulate intrinsic cardiac pacemaking in mice, say Man Si (<a href="/yaolisiman/">Man</a>), Edward Glasscock <a href="/GlasscockLab/">Glasscock Lab</a> <a href="/SMUBiology/">SMU Biology</a> and colleagues: hubs.la/Q02HrTM60

#Biophysics #CellularPhysiology #IonChannels
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

New Review: Cheyanne Lewis Cheyanne Lewis 🌱 and Theanne Griffith Dr. Theanne Griffith 🇧🇧👩🏾‍🔬🇭🇷 UC Davis discuss developments in #IonChannels of cold transduction and transmission. hubs.la/Q02HYGVG0 #Biophysics #CellularPhysiology #Neuroscience

New Review: Cheyanne Lewis <a href="/chylew/">Cheyanne Lewis 🌱</a> and Theanne Griffith <a href="/doctheagrif/">Dr. Theanne Griffith 🇧🇧👩🏾‍🔬🇭🇷</a> <a href="/ucdavis/">UC Davis</a> discuss developments in #IonChannels of cold transduction and transmission. hubs.la/Q02HYGVG0

#Biophysics #CellularPhysiology #Neuroscience
Rockefeller U. Press (@rockupress) 's Twitter Profile Photo

New Review in JGenPhysiol: Cheyanne Lewis Cheyanne Lewis 🌱 and Theanne Griffith Dr. Theanne Griffith 🇧🇧👩🏾‍🔬🇭🇷 UC Davis discuss developments in #IonChannels of cold transduction and transmission. hubs.la/Q02HYmhZ0 #Biophysics #CellularPhysiology #Neuroscience

New Review in <a href="/JGenPhysiol/">JGenPhysiol</a>: Cheyanne Lewis <a href="/chylew/">Cheyanne Lewis 🌱</a> and Theanne Griffith <a href="/doctheagrif/">Dr. Theanne Griffith 🇧🇧👩🏾‍🔬🇭🇷</a> <a href="/ucdavis/">UC Davis</a> discuss developments in #IonChannels of cold transduction and transmission. hubs.la/Q02HYmhZ0

#Biophysics #CellularPhysiology #Neuroscience
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Mathematical modeling of intracellular osmolarity and cell volume stabilization: The Donnan effect & ion transport. New study from Zahra Aminzare and Alan R. Kay Alan R. Kay University of Iowa: hubs.la/Q02GyD4n0 #ComputationalBiology #Biophysics #CellularPhysiology #CellBiology

Mathematical modeling of intracellular osmolarity and cell volume stabilization: The Donnan effect &amp; ion transport. New study from Zahra Aminzare and Alan R. Kay <a href="/AlanRKay/">Alan R. Kay</a> <a href="/uiowa/">University of Iowa</a>: hubs.la/Q02GyD4n0

#ComputationalBiology #Biophysics #CellularPhysiology #CellBiology
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

The C-terminus of Rad is required for membrane localization and L-type calcium channel regulation, say Garrett Elmore, Brooke Ahern, Bryana Levitan Bryana, MSc, ACS, RDCS, FASE, Jonathan Satin & colleagues University of Kentucky UK HealthCare: hubs.la/Q02GmmBV0 #CardiacMuscle #CellularPhysiology

The C-terminus of Rad is required for membrane localization and L-type calcium channel regulation, say Garrett Elmore, Brooke Ahern, Bryana Levitan <a href="/BMLevitan/">Bryana, MSc, ACS, RDCS, FASE</a>, Jonathan Satin &amp; colleagues <a href="/universityofky/">University of Kentucky</a> <a href="/UK_HealthCare/">UK HealthCare</a>: hubs.la/Q02GmmBV0

#CardiacMuscle #CellularPhysiology
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Artificial intelligence approaches to the volumetric quantification of glycogen granules in EM images of human tissue. New study from Eduardo Ríos Rush University and colleagues: hubs.ly/Q02G104T0 #MolecularPhysiology #ComputationalBiology #CellularPhysiology #Biophysics

Artificial intelligence approaches to the volumetric quantification of glycogen granules in EM images of human tissue. New study from Eduardo Ríos <a href="/RushUniversity/">Rush University</a> and colleagues: hubs.ly/Q02G104T0

#MolecularPhysiology #ComputationalBiology #CellularPhysiology #Biophysics
Rockefeller U. Press (@rockupress) 's Twitter Profile Photo

In JGenPhysiol, Wojciechowski, Forster, The Reid Lab (Florey) et al. The Florey used voltage clamp fluorometry to probe the S4 helix movement in the voltage-sensing domain of the sea urchin HCN channel expressed in Xenopus oocytes. hubs.la/Q02FRNb10 #CellularPhysiology

In <a href="/JGenPhysiol/">JGenPhysiol</a>, Wojciechowski, Forster, <a href="/ReidLab_Florey/">The Reid Lab (Florey)</a> et al. <a href="/TheFlorey/">The Florey</a> used voltage clamp fluorometry to probe the S4 helix movement in the voltage-sensing domain of the sea urchin HCN channel expressed in Xenopus oocytes. hubs.la/Q02FRNb10

#CellularPhysiology
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Wojciechowski, Forster, The Reid Lab (Florey) et al. The Florey used voltage clamp fluorometry to probe the S4 helix movement in the voltage-sensing domain of the sea urchin HCN channel expressed in Xenopus oocytes. hubs.la/Q02FPqPK0 #Biophysics #CellularPhysiology

Wojciechowski, Forster, <a href="/ReidLab_Florey/">The Reid Lab (Florey)</a> et al. <a href="/TheFlorey/">The Florey</a> used voltage clamp fluorometry to probe the S4 helix movement in the voltage-sensing domain of the sea urchin HCN channel expressed in Xenopus oocytes. hubs.la/Q02FPqPK0

#Biophysics #CellularPhysiology
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Image showing fusion pore flux, receptor dynamics, and diffusion. Jackson, Chiang, and Cheng UW–Madison show that fusion pore flux controls the rise-times of quantal synaptic responses. hubs.la/Q02BnqVm0 #ComputationalBiology #CellularPhysiology #IntercellularSignaling

Image showing fusion pore flux, receptor dynamics, and diffusion. Jackson, Chiang, and Cheng <a href="/UWMadison/">UW–Madison</a> show that fusion pore flux controls the rise-times of quantal synaptic responses. hubs.la/Q02BnqVm0

#ComputationalBiology #CellularPhysiology #IntercellularSignaling
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Fusion pore flux controls the rise-times of quantal synaptic responses, say Meyer B. Jackson, Chung-Wei Chiang, and Jinbo Cheng UW–Madison: hubs.la/Q02BnyXn0 #ComputationalBiology #Biophysics #CellularPhysiology #IntercellularSignaling

Fusion pore flux controls the rise-times of quantal synaptic responses, say Meyer B. Jackson, Chung-Wei Chiang, and Jinbo Cheng <a href="/UWMadison/">UW–Madison</a>: hubs.la/Q02BnyXn0

#ComputationalBiology #Biophysics #CellularPhysiology #IntercellularSignaling
School of Sport & Exercise Science (@ulsterschsport) 's Twitter Profile Photo

🚨 NEW PUBLICATION 🚨 Congratulations Prof Gareth Davison & collaborators on the publication of their review article in iScience journal Cell Cell Press👏👏 #BiologicalSciences #CellularPhysiology #MolecularPhysiology #CellBiology Open Access👉cell.com/iscience/fullt…

🚨 NEW PUBLICATION 🚨

Congratulations Prof Gareth Davison &amp; collaborators on the publication of their review article in <a href="/iScience_CP/">iScience journal</a> <a href="/CellCellPress/">Cell</a> <a href="/CellPressNews/">Cell Press</a>👏👏

#BiologicalSciences #CellularPhysiology #MolecularPhysiology #CellBiology

Open Access👉cell.com/iscience/fullt…
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

Image shows position of the p.F4976L mutation in the RyR1 structure. Benucci, Zorzato et al. University of Basel reveal that a novel, patient-derived RyR1 mutation impairs muscle function and calcium homeostasis in mice. hubs.la/Q02n1CJc0 #CellularPhysiology #Pathophysiology

Image shows position of the p.F4976L mutation in the RyR1 structure. Benucci, Zorzato et al. <a href="/UniBasel_en/">University of Basel</a> reveal that a novel, patient-derived RyR1 mutation impairs muscle function and calcium homeostasis in mice.   hubs.la/Q02n1CJc0

#CellularPhysiology #Pathophysiology
NeurophysiologyUrbino (@rossanarauti) 's Twitter Profile Photo

Very honored to have been awarded as one of the most promising researcher at Università di Urbino discussing about #organsonchip #microfluidics and #cellularphysiology! Stay updated on our website neurophysiologyurb.com for research topics and updates!

Very honored to have been awarded as one of the most promising researcher at <a href="/uniurbit/">Università di Urbino</a> discussing about #organsonchip #microfluidics and #cellularphysiology! Stay updated on our website neurophysiologyurb.com for research topics and updates!
JGenPhysiol (@jgenphysiol) 's Twitter Profile Photo

A novel, patient-derived RyR1 mutation impairs #muscle function and calcium homeostasis in mice, say Sofia Benucci, Francesco Zorzato Department of Biomedicine University of Basel and colleagues: hubs.la/Q02n1cLm0 #Contraction #CellMotility #CellularPhysiology #Pathophysiology

A novel, patient-derived RyR1 mutation impairs #muscle function and calcium homeostasis in mice, say Sofia Benucci, Francesco Zorzato <a href="/DepBiomedicine/">Department of Biomedicine</a> <a href="/UniBasel_en/">University of Basel</a> and colleagues: hubs.la/Q02n1cLm0

#Contraction #CellMotility #CellularPhysiology #Pathophysiology