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Related Experiment Video

Updated: Jul 10, 2026

In Vivo Electrophysiological Measurements on Mouse Sciatic Nerves
11:07

In Vivo Electrophysiological Measurements on Mouse Sciatic Nerves

Published on: April 13, 2014

The measurement of compound neural action potential in sciatic nerve using microelectrode array.

Chungkeun Lee1, Yongho Kim, Hangsik Shin

  • 1Electrical & Electronics Engineering Department, University of Yonsei, Seoul, Korea. micon78@yonsei.ac.kr

Conference Proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference
|December 6, 2007
PubMed
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This study analyzes microelectrode arrays for observing nerve regeneration by testing their electrical properties and designing a bioamplifier. Results from rat sciatic nerve recordings are presented.

Area of Science:

  • Neuroscience
  • Biomedical Engineering
  • Signal Processing

Background:

  • Observing nerve regeneration is crucial for understanding recovery after injury.
  • Microelectrode arrays are used to analyze electrical signals from nerve fibers.
  • These arrays have high impedance and unique phase characteristics requiring careful testing.

Purpose of the Study:

  • To analyze the features of microelectrode arrays for neural signal recording.
  • To design a bioamplifier suitable for microelectrode array signals.
  • To assess the suitability of microelectrode arrays for observing nerve regeneration.

Main Methods:

  • Characterization of microelectrode array impedance and phase linearity.
  • Design and implementation of a bioamplifier circuit.

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Last Updated: Jul 10, 2026

In Vivo Electrophysiological Measurements on Mouse Sciatic Nerves
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In Vivo Electrophysiological Measurements on Mouse Sciatic Nerves

Published on: April 13, 2014

Recording Network Activity in Spinal Nociceptive Circuits Using Microelectrode Arrays
11:28

Recording Network Activity in Spinal Nociceptive Circuits Using Microelectrode Arrays

Published on: February 9, 2022

Use of In Vivo Single-fiber Recording and Intact Dorsal Root Ganglion with Attached Sciatic Nerve to Examine the Mechanism of Conduction Failure
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Use of In Vivo Single-fiber Recording and Intact Dorsal Root Ganglion with Attached Sciatic Nerve to Examine the Mechanism of Conduction Failure

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  • Recording electrical signals from rat sciatic nerves using the microelectrode array and bioamplifier.
  • Main Results:

    • The study details the electrical properties of the microelectrode arrays.
    • A functional bioamplifier was designed and tested.
    • Successful recordings of neural signals from rat sciatic nerves were achieved.

    Conclusions:

    • Microelectrode arrays require phase linearity and impedance testing to prevent signal distortion.
    • The designed bioamplifier is suitable for recording neural signals with microelectrode arrays.
    • This approach shows promise for observing nerve regeneration.