Fiber Bundle Activation

Fiber bundle activation is the coordinated stimulation of multiple aligned biological fibers to produce a measurable electrical, mechanical, or physiological response. In bioengineering, an applied electrical field can alter transmembrane voltage, recruit excitable nerve or muscle fibers, and trigger signal propagation and contraction across the bundle. The strength, timing, and spatial distribution of stimulation influence recruitment patterns, synchronization, and functional output. Studying these responses helps researchers characterize engineered tissues, develop neuromuscular interfaces, evaluate biomaterials, and design rehabilitation or assistive technologies. Controlled activation also supports investigations of tissue organization, signal transmission, and the performance of bioelectronic devices.

Fiber Bundle Activation - Related Videos

Research

JoVE Journal - Chemistry

Multiplexed Fluorescent Microarray for Human Salivary Protein Analysis Using Polymer Microspheres and Fiber-optic Bundles

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Cited by 4 •

2013

We describe a procedure for profiling salivary proteins using multiplexed microsphere-based antibody arrays. Monoclonal antibodies were covalently linked to fluorescent dye-encoded 4.5 μm polymer microspheres using carbodiimide chemistry. The modified microspheres were deposited in fiber-optic microwells to measure protein levels in saliva using fluorescence sandwich immunoassays.

Preparation and Immunofluorescence Staining of Bundles and Single Fiber Cells from the Cortex and Nucleus of the Eye Lens

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Cited by 7 •

2023

This protocol describes methods to prepare peripheral, mature, and nuclear eye lens fiber cells for immunofluorescence staining to study complex cell-to-cell interdigitations and the membrane architecture.

Multimodal Imaging and Spectroscopy Fiber-bundle Microendoscopy Platform for Non-invasive, In Vivo Tissue Analysis

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2016

The assembly and use of a multimodal microendoscope is described which can co-register superficial tissue image data with tissue physiological parameters including hemoglobin concentration, melanin concentration, and oxygen saturation. This technique can be useful for evaluating tissue structure and perfusion, and can be optimized for individual needs of the investigator.

Directly Measuring Forces Within Reconstituted Active Microtubule Bundles

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Cited by 1 •

2022

Here, we present a protocol for reconstituting microtubule bundles in vitro and directly quantifying the forces exerted within them using simultaneous optical trapping and total internal reflection fluorescence microscopy. This assay allows for nanoscale-level measurement of the forces and displacements generated by protein ensembles within active microtubule networks.

Artificial Lung Device Priming for In Situ Fiber Bundle Surface Grafting

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2025

This study investigated the antifouling activity of artificial lung hollow fibers coated by priming the lung device. While this surface modification of fibers approach is practical, the effectiveness of the coating process depends on the graft coverage across fiber mat layers within the bundle.

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