Literature DB >> 10498372

Effective elastic properties for lower limb soft tissues from manual indentation experiment.

Y Zheng1, A F Mak.   

Abstract

Quantitative assessment of the biomechanical properties of limb soft tissues has become more important during the last decade because of the introduction of computer-aided design and computer-aided manufacturing (CAD/CAM) and finite element analysis to the prosthetic socket design. Because of the lack of a clinically easy-to-use apparatus, the site and posture dependences of the material properties of lower limb soft tissues have not been fully reported in the literature. In this study, an ultrasound indentation system with a pen-size hand-held probe developed earlier by the authors was used to obtain the indentation responses of lower limb soft tissues. Indentation tests were conducted on normal young subjects with four females and four males at four sites with three body postures. A linear elastic indentation solution was used to extract the effective Young's modulus from the indentation responses. The determined modulus ranged from 10.4 to 89.2 kPa for the soft tissues tested. These results were in a similar range as those reported in the literature. The thickness of the lower limb soft tissues varied slightly with body posture changes. The Young's modulus determined was demonstrated to be significantly dependent on site, posture, subject and gender. The overall mean modulus of male subjects was 40% larger than that of female subjects. No significant correlation was established between the effective Young's modulus and the thickness of entire soft tissue layers.

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Year:  1999        PMID: 10498372     DOI: 10.1109/86.788463

Source DB:  PubMed          Journal:  IEEE Trans Rehabil Eng        ISSN: 1063-6528


  14 in total

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Authors:  Y P Zheng; C X Ding; J Bai; A F Mak; L Qin
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8.  Investigation of soft-tissue stiffness alteration in denervated human tissue using an ultrasound indentation system.

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9.  Histotripsy-induced cavitation cloud initiation thresholds in tissues of different mechanical properties.

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10.  In situ measurement and modeling of biomechanical response of human cadaveric soft tissues for physics-based surgical simulation.

Authors:  Yi-Je Lim; Dhanannjay Deo; Tejinder P Singh; Daniel B Jones; Suvranu De
Journal:  Surg Endosc       Date:  2008-09-24       Impact factor: 4.584

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