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Updated: Oct 20, 2025

Author Spotlight: Advancing Live-Cell Mechanobiology Through Fluorescence Microaspiration
Published on: January 12, 2024
Automated microscope-independent fluorescence-guided micropipette
Christopher Miranda1, Madeleine R Howell1, Joel F Lusk1
1Arizona State University, School of Biological and Health Systems Engineering, Tempe, AZ 85210, USA.
Abstract:
Glass micropipette electrodes are commonly used to provide high resolution recordings of neurons. Although it is the gold standard for single cell recordings, it is highly dependent on the skill of the electrophysiologist. Here, we demonstrate a method of guiding micropipette electrodes to neurons by collecting fluorescence at the aperture, using an intra-electrode tapered optical fiber. The use of a tapered fiber for excitation and collection of fluorescence at the micropipette tip couples the feedback mechanism directly to the distance between the target and electrode. In this study, intra-electrode tapered optical fibers provide a targeted robotic approach to labeled neurons that is independent of microscopy.

