Related Experiment Video
Updated: Jan 27, 2026

Author Spotlight: Advancing Large-Scale Neural Dynamics Through HD-MEA Technology
Published on: March 8, 2024
Multimodal in vivo brain electrophysiology with integrated glass microelectrodes
David L Hunt1, Chongxi Lai2, Richard D Smith2
1Howard Hughes Medical Institute, Janelia Research Campus, Ashburn, VA, USA. huntd@janelia.hhmi.org.
Abstract:
Electrophysiology is the most used approach for the collection of functional data in basic and translational neuroscience, but it is typically limited to either intracellular or extracellular recordings. The integration of multiple physiological modalities for the routine acquisition of multimodal data with microelectrodes could be useful for biomedical applications, yet this has been challenging owing to incompatibilities of fabrication methods. Here, we present a suite of glass pipettes with integrated microelectrodes for the simultaneous acquisition of multimodal intracellular and extracellular information in vivo, electrochemistry assessments, and optogenetic perturbations of neural activity. We used the integrated devices to acquire multimodal signals from the CA1 region of the hippocampus in mice and rats, and show that these data can serve as ground-truth validation for the performance of spike-sorting algorithms. The microdevices are applicable for basic and translational neurobiology, and for the development of next-generation brain-machine interfaces.
More Related Videos
Related Concept Videos
The Looking Glass Self
Definite Integral
Indefinite Integrals
Integrator and Differentiator
An integrator within an op-amp circuit produces an output directly proportional to the integral of the input signal. This is achieved by replacing the feedback resistor in a typical inverting...
Integrated Healthcare System
The Integrated Rate Law: The Dependence of Concentration on Time

