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Voltage Sensor for Proliferation
Science's STKE, 2006Hegle et al. provide evidence that a K + channel has an ion-independent signaling activity that stimulates cell proliferation. Transfection of the Drosophila ether-à-go-go (EAG) channel into mammalian cultured cells stimulated cell proliferation based on increased ...
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SPIE Proceedings, 1986
The electrooptic Kerr effect is the interaction of an applied electric field with a birefringent fluid medium resulting in a change in the refractive index of the fluid. It has found a variety of applications in the measurement of the applied voltage and electric field by analyzing the polarization rotation of light shined through the fluid. Potentials
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The electrooptic Kerr effect is the interaction of an applied electric field with a birefringent fluid medium resulting in a change in the refractive index of the fluid. It has found a variety of applications in the measurement of the applied voltage and electric field by analyzing the polarization rotation of light shined through the fluid. Potentials
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The voltage sensor and the gate in ion channels
2003Publisher Summary This chapter illustrates two aspects of ion channels: the gating process and the transduction from the initiating stimulus to the operation of the gate. The gating process is the operation of the gate proper while the transducer may be considered the sensor of the stimulus that ultimately opens and closes the channel.
Francisco, Bezanilla, Eduardo, Perozo
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The voltage sensor of ion channels revealed
Trends in Endocrinology & Metabolism, 2003Voltage-gated ion channels control the excitability of nerve, muscle, endocrine and other cell types, thereby regulating a broad spectrum of cellular processes. How these channels sense changes in the potential across the membrane has remained a mystery for decades.
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The voltage sensor is responsible for ΔpH dependence in H v 1 channels
Proceedings of the National Academy of Sciences of the United States of America, 2021Osvaldo Alvarez +2 more
exaly
The Voltage Sensor Module in Sodium Channels
2014The mechanism by which voltage-gated ion channels respond to changes in membrane polarization during action potential signaling in excitable cells has been the subject of research attention since the original description of voltage-dependent sodium and potassium flux in the squid giant axon.
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Calibrated Single-Contact Voltage Sensor for High-Voltage Monitoring Applications
IEEE Transactions on Instrumentation and Measurement, 2015Jake Bobowski, Thomas Johnson
exaly

