Cell–cell communication plays a pivotal role in biological systems’ coordination and function. Electrical properties have been linked to specification and differentiation of stem cells into targeted progeny, such as neurons and cardiomyocytes. Currently, there is a critical need in developing new ways to complement fluorescent indicators, such as Ca2+-sensitive dyes, for direct electrophysiological measurements of cells and tissue. Here, we report a unique transparent and biocompatible graphene-based electrical platform that enables electrical and optical investigation of human embryonic stem cell-derived cardiomyocytes’ (hESC-CMs) intracellular processes and intercellular communication
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark dest...
In addition to their promise in regenerative medicine, pluripotent stem cells have proved to be fait...
Cell–cell communication plays a pivotal role in biological systems’ coordination and function. Elect...
Introduction: Cell–cell communication plays a pivotal role in biological systems’ coordination and f...
Introduction: Cell–cell communication plays a pivotal role in biological systems’ coordination and f...
Investigation and modulation of the electrical activity of neurons and cardiomyocytes is essential t...
Noninvasive stimulation of cells is crucial for the accurate examination and control of their functi...
The measurement of electrical activity across systems of excitable cells underlies current progress ...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
Implantable electronic devices for recording electrophysiological signals and for stimulating muscle...
Implantable electronic devices for recording electrophysiological signals and for stimulating muscle...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
This thesis aims to illuminate two different approaches to improve electrical implants in the future...
This thesis aims to illuminate two different approaches to improve electrical implants in the future...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark dest...
In addition to their promise in regenerative medicine, pluripotent stem cells have proved to be fait...
Cell–cell communication plays a pivotal role in biological systems’ coordination and function. Elect...
Introduction: Cell–cell communication plays a pivotal role in biological systems’ coordination and f...
Introduction: Cell–cell communication plays a pivotal role in biological systems’ coordination and f...
Investigation and modulation of the electrical activity of neurons and cardiomyocytes is essential t...
Noninvasive stimulation of cells is crucial for the accurate examination and control of their functi...
The measurement of electrical activity across systems of excitable cells underlies current progress ...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
Implantable electronic devices for recording electrophysiological signals and for stimulating muscle...
Implantable electronic devices for recording electrophysiological signals and for stimulating muscle...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
This thesis aims to illuminate two different approaches to improve electrical implants in the future...
This thesis aims to illuminate two different approaches to improve electrical implants in the future...
The optogenetic technique, which allows the manipulation of cellular activity patterns in space and ...
Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark dest...
In addition to their promise in regenerative medicine, pluripotent stem cells have proved to be fait...