Multi-channel Stimulation Adapter

A Multi-channel Stimulation Adapter is a hardware interface that connects a stimulation system with multiple output channels to neural electrodes or other experimental interfaces, enabling organized delivery of distinct stimuli. It receives independently controlled signals, routes each channel to designated contacts, and supports synchronized or sequential stimulation while maintaining channel separation. In neuroscience, this arrangement helps researchers apply spatially and temporally patterned stimulation to neural tissue, study circuit responses, and evaluate neural interfaces. By simplifying connections between stimulators and electrode arrays, the adapter can improve experimental flexibility, reproducibility, and compatibility across stimulation protocols.

Multi-channel Stimulation Adapter - Related Videos

Research

JoVE Journal - Medicine
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Controlling Parkinson's Disease With Adaptive Deep Brain Stimulation

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Cited by 27 •

2014

Adaptive deep brain stimulation (aDBS) is effective for Parkinson’s disease, improving symptoms and reducing power consumption compared to conventional deep brain stimulation (cDBS). In aDBS we track a local field potential biomarker (beta oscillatory amplitude) in real time and use this to control the timing of stimulation.

Research

JoVE Journal - Neuroscience

Bringing the Clinic Home: An At-Home Multi-Modal Data Collection Ecosystem to Support Adaptive Deep Brain Stimulation

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Cited by 4 •

2023

The protocol shows a prototype of the at-home multi-modal data collection platform that supports research optimizing adaptive deep brain stimulation (aDBS) for people with neurological movement disorders. We also present key findings from deploying the platform for over a year to the home of an individual with Parkinson's disease.

Separating Beads and Cells in Multi-channel Microfluidic Devices Using Dielectrophoresis and Laminar Flow

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Cited by 8 •

2011

Dielectrophoresis (DEP) is an effective method to manipulate cells. Printed circuit boards (PCB) can provide inexpensive, reusable and effective electrodes for contact-free cell manipulation within microfluidic devices. By combining PDMS-based microfluidic channels with coverslips on PCBs, we demonstrate bead and cell manipulation and separation within multichannel microfluidic devices.

Research

JoVE Journal - Neuroscience
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Personalized 3D-printed Headgear for Multi-electrode Transcranial Electrical Stimulation

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2025

Our patented, personalized 3D-printed headgear provides rapid and reliable delivery of in-office and remotely delivered multi-electrode transcranial electrical stimulation (ME-tES).

Research

JoVE Journal - Biology
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Multifunctional, Micropipette-based Method for Incorporation And Stimulation of Bacterial Mechanosensitive Ion Channels in Droplet Interface Bilayers

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Cited by 8 •

2015

Bacterial mechanosensitive channels can be used as mechanoelectrical transducers in biomolecular devices. Droplet interface bilayers (DIBs), cell-inspired building blocks to such devices, represent new platforms to incorporate and stimulate mechanosensitive channels. Here, we demonstrate a new micropipette-based method of forming DIBs, allowing the study of mechanosensitive channels under mechanical stimulation.

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