ABSTRACT: Due to their small dimensions, electrophysiology on thin and intricate axonal branches in support of understanding their role in normal and diseased brain function poses experimental challenges. To reduce experimental complexity, we coupled microelectrode arrays (MEAs) to bi-level microchannel devices for the long-term in vitro tracking of axonal morphology and activity with high spatiotemporal resolution. Our model allowed the long-term multisite recording from pure axonal branches in a microscopy-compatible environment. Compartmentalizing the network structure into interconnected subpopulations simplified access to the locations of interest. Electrophysiological data over 95 days in vitro (DIV) showed an age-dependent increase o...
Bottom-up neuroscience utilizes small, engineered biological neural networks to study neuronal activ...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Mammalian cortical axons are extremely thin processes that are difficult to study as a result of the...
Axons convey information in neuronal circuits via reliable conduction of action potentials (APs) fro...
<div><p>The numerous connections between neuronal cell bodies, made by their dendrites and axons, ar...
Objective: Neurons communicate with each other by sending action potentials (APs) through their axon...
Mammalian axons are specialized for transmitting action potentials to targets within the central and...
For the last century, many neuroscientists around the world have dedicated their lives to understand...
Axons are neuronal processes specialized for conduction of action potentials (APs). The timing and t...
Mammalian cortical axons are extremely thin processes that are difficult to study as a result of the...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
While extracellular somatic action potentials from freely moving rats have been well characterized, ...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Bottom-up neuroscience utilizes small, engineered biological neural networks to study neuronal activ...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Mammalian cortical axons are extremely thin processes that are difficult to study as a result of the...
Axons convey information in neuronal circuits via reliable conduction of action potentials (APs) fro...
<div><p>The numerous connections between neuronal cell bodies, made by their dendrites and axons, ar...
Objective: Neurons communicate with each other by sending action potentials (APs) through their axon...
Mammalian axons are specialized for transmitting action potentials to targets within the central and...
For the last century, many neuroscientists around the world have dedicated their lives to understand...
Axons are neuronal processes specialized for conduction of action potentials (APs). The timing and t...
Mammalian cortical axons are extremely thin processes that are difficult to study as a result of the...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
While extracellular somatic action potentials from freely moving rats have been well characterized, ...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Bottom-up neuroscience utilizes small, engineered biological neural networks to study neuronal activ...
Comprehensive electrophysiological characterizations of human induced pluripotent stem cell (hiPSC)-...
Mammalian cortical axons are extremely thin processes that are difficult to study as a result of the...