Microscopy of Bioelectric Potentials using Electrochromism

Fuente: arXiv
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Autores principales: Ahmed, Burhan, Liu, Erica, Maisenbacher, Lothar, Sun, Pengwei, Griffith, Dana, Nakasone, Kenneth, Zhou, Yuecheng, Cui, Bianxiao, Müller, Holger
Formato: Preprint
Publicado: 2026
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author Ahmed, Burhan
Liu, Erica
Maisenbacher, Lothar
Sun, Pengwei
Griffith, Dana
Nakasone, Kenneth
Zhou, Yuecheng
Cui, Bianxiao
Müller, Holger
author_facet Ahmed, Burhan
Liu, Erica
Maisenbacher, Lothar
Sun, Pengwei
Griffith, Dana
Nakasone, Kenneth
Zhou, Yuecheng
Cui, Bianxiao
Müller, Holger
contents Studying the electrical signals generated by living cells is key to understanding numerous biological phenomena. Electrochromic optical recording (ECORE) uses the electrochromism exhibited by certain materials to noninvasively measure these signals in real time. In this work, we report on the development of ECORE based on a high-NA microscope objective. We demonstrate the recording of extracellular action potentials from cardiomyocytes with single-cell resolution and a high sensitivity of 3 μV, which compares favorably to the previous record for any ECORE setup. Combining ECORE with microscopy simplifies the optical setup, allows for the simultaneous imaging of specimens, and makes ECORE accessible to a broader community of researchers, allowing for a better understanding of the biological processes that are integral to life.
format Preprint
id arxiv_https___arxiv_org_abs_2602_00363
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Microscopy of Bioelectric Potentials using Electrochromism
Ahmed, Burhan
Liu, Erica
Maisenbacher, Lothar
Sun, Pengwei
Griffith, Dana
Nakasone, Kenneth
Zhou, Yuecheng
Cui, Bianxiao
Müller, Holger
Optics
Biological Physics
Studying the electrical signals generated by living cells is key to understanding numerous biological phenomena. Electrochromic optical recording (ECORE) uses the electrochromism exhibited by certain materials to noninvasively measure these signals in real time. In this work, we report on the development of ECORE based on a high-NA microscope objective. We demonstrate the recording of extracellular action potentials from cardiomyocytes with single-cell resolution and a high sensitivity of 3 μV, which compares favorably to the previous record for any ECORE setup. Combining ECORE with microscopy simplifies the optical setup, allows for the simultaneous imaging of specimens, and makes ECORE accessible to a broader community of researchers, allowing for a better understanding of the biological processes that are integral to life.
title Microscopy of Bioelectric Potentials using Electrochromism
topic Optics
Biological Physics
url https://arxiv.org/abs/2602.00363