Mechanical Function Analysis

Mechanical function analysis is the study of how physical forces, motion, and material properties enable biological structures and systems to perform their functions. In biology, researchers examine how tissues, cells, organs, or organisms respond to loading by measuring variables such as force, displacement, stiffness, deformation, and movement, often alongside mechanical modeling. This approach helps explain how structures support the body, generate motion, withstand stress, or adapt to changing conditions. Applications include analyzing muscle and skeletal performance, investigating tissue mechanics, understanding cell behavior, and informing biomaterials, medical device design, and strategies for diagnosing or treating mechanical dysfunction.

Mechanical Function Analysis - Related Videos

Education

JoVE Core - Molecular Biology

Mechanical Protein Functions

0 Views •

2020

Proteins perform many mechanical functions in a cell. These proteins can be classified into two general categories- proteins that generate mechanical forces and proteins that are subjected to mechanical forces. Proteins providing mechanical support to the structure of the cell, such as keratin, are subjected to mechanical force, whereas proteins involved in cell movement and transport of molecules across cell membranes, such as an ion pump, are examples of generating mechanical force.

Mechanical Protein Function

0 Views •

2023

Proteins perform many mechanical functions in a cell. These proteins can be classified into two general categories- proteins that generate mechanical forces and proteins that are subjected to mechanical forces. Proteins providing mechanical support to the structure of the cell, such as keratin, are subjected to mechanical force, whereas proteins involved in cell movement and transport of molecules across cell membranes, such as an ion pump, are examples of generating mechanical force.

Research

JoVE Journal - Medicine
Free Sample

Myo-mechanical Analysis of Isolated Skeletal Muscle

0 Views •

Cited by 25 •

2011

To assess the in vivo effects of therapeutic interventions for muscle disease, methods are needed to quantitate force generation and fatigability in treated muscle. We detail an approach to evaluating myo-mechanical properties in explanted mouse hindlimb muscle. This analysis provides a robust approach to quantitating the effects of genetic modification on muscle function, as well as comparison of therapies in mouse models of muscle disease.

3D Kinematic Analysis for the Functional Evaluation in the Rat Model of Sciatic Nerve Crush Injury

0 Views •

Cited by 5 •

2020

We introduce a kinematic analysis method that uses a three-dimensional motion capture apparatus containing four cameras and data processing software for performing functional evaluations during fundamental research involving rodent models.

Displacement Analysis of Myocardial Mechanical Deformation (DIAMOND) Reveals Segmental Heterogeneity of Cardiac Function in Embryonic Zebrafish

0 Views •

2020

The goal of this protocol is to detail a novel method for the assessment of segmental cardiac function in embryonic zebrafish under both physiological and pathological conditions.

View All Results

FAQs

Related Topics