Mitigating Mismatch Compression in Differential Local Field Potentials

Fuente: arXiv
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Main Authors: Tiruvadi, Vineet, James, Sam, Howell, Bryan, Obatusin, Mosadoluwa, Crowell, Andrea, Riva-Posse, Patricio, Choi, Ki Sueng, Waters, Allison, Gross, Robert E., McIntyre, Cameron C., Mayberg, Helen S., Butera, Robert
Format: Preprint
Published: 2022
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author Tiruvadi, Vineet
James, Sam
Howell, Bryan
Obatusin, Mosadoluwa
Crowell, Andrea
Riva-Posse, Patricio
Choi, Ki Sueng
Waters, Allison
Gross, Robert E.
McIntyre, Cameron C.
Mayberg, Helen S.
Butera, Robert
author_facet Tiruvadi, Vineet
James, Sam
Howell, Bryan
Obatusin, Mosadoluwa
Crowell, Andrea
Riva-Posse, Patricio
Choi, Ki Sueng
Waters, Allison
Gross, Robert E.
McIntyre, Cameron C.
Mayberg, Helen S.
Butera, Robert
contents Bidirectional deep brain stimulation (bdDBS) devices capable of recording differential local field potentials (dLFP) enable neural recordings alongside clinical therapy. Efforts to identify objective signals of various brain disorders, or disease readouts, are challenging in dLFP, especially during active DBS. In this report we identified, characterized, and mitigated a major source of distortion in dLFP that we introduce as mismatch compression (MC). MC occurs secondary to impedance mismatches across the dLFP channel resulting in incomplete rejection of artifacts and downstream amplifier gain compression. Using in silico and in vitro models we demonstrate that MC accounts for impedance-related distortions sensitive to DBS amplitude. We then use these models to develop and validate a mitigation strategy for MC that is provided as an opensource library for more reliable oscillatory disease readouts.
format Preprint
id arxiv_https___arxiv_org_abs_2204_03778
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Mitigating Mismatch Compression in Differential Local Field Potentials
Tiruvadi, Vineet
James, Sam
Howell, Bryan
Obatusin, Mosadoluwa
Crowell, Andrea
Riva-Posse, Patricio
Choi, Ki Sueng
Waters, Allison
Gross, Robert E.
McIntyre, Cameron C.
Mayberg, Helen S.
Butera, Robert
Signal Processing
Neurons and Cognition
Bidirectional deep brain stimulation (bdDBS) devices capable of recording differential local field potentials (dLFP) enable neural recordings alongside clinical therapy. Efforts to identify objective signals of various brain disorders, or disease readouts, are challenging in dLFP, especially during active DBS. In this report we identified, characterized, and mitigated a major source of distortion in dLFP that we introduce as mismatch compression (MC). MC occurs secondary to impedance mismatches across the dLFP channel resulting in incomplete rejection of artifacts and downstream amplifier gain compression. Using in silico and in vitro models we demonstrate that MC accounts for impedance-related distortions sensitive to DBS amplitude. We then use these models to develop and validate a mitigation strategy for MC that is provided as an opensource library for more reliable oscillatory disease readouts.
title Mitigating Mismatch Compression in Differential Local Field Potentials
topic Signal Processing
Neurons and Cognition
url https://arxiv.org/abs/2204.03778