Adhesive Sensors

Adhesive sensors are lightweight sensing devices that attach directly to skin or other biological surfaces to measure physiological or biochemical signals, enabling continuous monitoring without bulky equipment. Their adhesive interface maintains conformal contact while flexible sensing materials convert changes such as strain, pressure, temperature, or chemical composition into electrical outputs that can be recorded and analyzed. In clinical settings, adhesive sensors support noninvasive tracking of movement, cardiac activity, respiration, wound conditions, and other health indicators. Their comfort, portability, and potential for long-term wear can improve patient monitoring, support personalized care, and provide data for point-of-care diagnostics and remote health management.

Adhesive Sensors - Related Videos

Education

JoVE Core - Biology

Adhesion

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2019

Adhesion occurs when one type of molecule is attracted to a different molecule. Water exhibits adhesive properties in the presence of polar surfaces, such as glass or cellulose in plants. For instance, when water is poured into a glass, the positively charged hydrogen molecules of water are more attracted to the negatively charged oxygen molecules in the silica than to the oxygen in neighboring water molecules. Capillary action is a result of water’s adhesive tendencies. When a narrow glass...

Glovebox and Impurity Sensors

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University The glovebox provides a straightforward means to handle air- and moisture-sensitive solids and liquids. The glovebox is what it sounds like: a box with gloves attached to one or more sides, which allows the user to perform manipulations within the glovebox under an inert atmosphere. For manipulations under inert atmospheres, chemists can choose between Schlenk or high-vacuum techniques and a glovebox. Schlenk and...

Research

JoVE Journal - Immunology and Infection

Assay of Adhesion Under Shear Stress for the Study of T Lymphocyte-Adhesion Molecule Interactions

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Cited by 3 •

2016

This flow adhesion assay provides a simple, high impact model of T cell-epithelial cell interactions. A syringe pump is used to generate shear stress, and confocal microscopy captures images for quantification. The goal of these studies is to effectively quantify T cell adhesion using flow conditions.

Bacterial Detection & Identification Using Electrochemical Sensors

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Cited by 6 •

2013

We describe an electrochemical sensor assay method for rapid bacterial detection and identification. The assay involves a sensor array functionalized with DNA oligonucleotide capture probes for ribosomal RNA (rRNA) species-specific sequences. Sandwich hybridization of target rRNA with the capture probe and a horseradish peroxidase-linked DNA oligonucleotide detector probe produces a measurable amperometric current.

Glutamine Flux Imaging Using Genetically Encoded Sensors

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Cited by 7 •

2014

This article will demonstrate how to monitor glutamine dynamics in live cells using FRET. Genetically encoded sensors allow real-time monitoring of biological molecules at a subcellular resolution. Experimental design, technical details of the experimental settings, and considerations for post-experimental analyses will be discussed for genetically encoded glutamine sensors.

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