Contact Force Measurement

Contact force measurement is the quantification of forces exchanged when two surfaces, tissues, or devices touch, providing essential information about mechanical interactions in medicine. Sensors such as load cells, pressure-sensitive elements, and force plates detect deformation or changes in an electrical signal, then convert these responses into force values under controlled conditions. Clinicians and researchers use these measurements to assess gait, joint loading, prosthetic and orthotic performance, tissue-device interactions, and surgical tools. Reliable force data can improve biomechanical models, support rehabilitation planning, guide device design, and help evaluate whether medical interventions achieve safe and effective physical contact.

Contact Force Measurement - Related Videos

Research

JoVE Journal - Biology

Measuring the Stiffness of Ex Vivo Mouse Aortas Using Atomic Force Microscopy

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Cited by 26 •

2016

We present detailed protocols for isolation of aortas from mouse and measurement of their elastic modulus using atomic force microscopy.

Measuring the Mechanical Properties of Living Cells Using Atomic Force Microscopy

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Cited by 160 •

2013

This paper demonstrates a protocol to characterize the mechanical properties of living cells by means of microindentation using an Atomic Force Microscope (AFM).

Research

JoVE Journal - Engineering
Free Sample

Preparation and Friction Force Microscopy Measurements of Immiscible, Opposing Polymer Brushes

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Cited by 4 •

2014

The methodology to perform friction force microscopy experiments for contacting brushes is presented: Two polymer brushes that are grafted from (a) substrates and (b) colloidal probes are slid to show that, by using two contacting immiscible brush systems, friction in sliding contacts is reduced compared to miscible brush systems.

Real-Time Force Measurement Between Emulsion Droplets During Enzymatic Breakdown

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2025

This protocol employs dual-trap optical tweezers to measure inter-droplet forces in real time during the enzymatic digestion of emulsions. It facilitates the study of emulsion stability and droplet dynamics, with applications in food science and pharmaceuticals.

Multiplexed Single-molecule Force Proteolysis Measurements Using Magnetic Tweezers

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Cited by 2 •

2012

In this article we describe the use of magnetic tweezers to study the effect of force on enzymatic proteolysis at the single molecule level in a highly parallelizable manner.

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