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A high rate tension device for characterizing brain tissue
Author(s)
Date Issued
2012-03-08
Date Available
2014-09-29T10:43:39Z
Abstract
The mechanical characterization of brain tissue at high loading velocities is vital for understanding and modeling traumatic brain injury. The most severe form of traumatic brain injury is diffuse axonal injury, which involves damage to individual nerve cells (neurons). Diffuse axonal injury in animals and humans occurs at strains >10% and strain rates >10 s−1. The mechanical properties of brain tissues at these strains and strain rates are of particular significance, as they can be used in finite element human head models to accurately predict brain injuries under different impact conditions. Existing conventional tensile testing machines can only achieve maximum loading velocities of 500 mm/min, whereas the Kolsky bar apparatus is more suitable for strain rates >100 s−1. In this study, a custom-designed high rate tension device is developed and calibrated to estimate the mechanical properties of brain tissue in tension at strain rates ≤ 90 s−1, while maintaining a uniform velocity. The range of strain can o be extended to 100% depending on the thickness of a sample. The same apparatus can be used to characterize the dynamic behavior of skin and other soft biological tissues by using appropriately sized load cells with a capacity of 10 N and above.
Type of Material
Journal Article
Publisher
Sage Publications
Journal
Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology
Volume
226
Issue
3-4
Start Page
170
End Page
176
Copyright (Published Version)
2012 Sage Publications
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
File(s)
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Name
RASHID_A High Rate Tension Device-Revised.pdf
Size
2.24 MB
Format
Adobe PDF
Checksum (MD5)
38abd9b08e56364e103e9e9821842ac9
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