Literature DB >> 8950660

The effect of diabetes on the viscoelastic properties of rat knee ligaments.

J J Duquette1, P Grigg, A H Hoffman.   

Abstract

A series of experiments was performed to determine the effect of diabetes on the viscoelastic properties of knee joint ligaments. The experimental model was collateral ligaments from spontaneously diabetic, hyperglycemic (BBZDP/Wor) rats, and various controls including nondiabetic littermates, insulin treated diabetic rats, and alloxan treated rats. Material properties were measured using a dynamic, uniaxial loading paradigm. Ligaments were subjected to load controlled, sinusoidal tensile testing, using frequencies from 0.1 to 2.0 Hz. The resulting data were used to determine the storage and loss compliances of the ligaments. Storage compliance, which reflects tissue elastic properties, did not differ between groups. Loss compliance, which reflects the viscous component of the tissue response, was increased in the hyperglycemic animals. Thus, hyperglycemic diabetes affects tissue mechanical properties through the viscous rather than the elastic component of the response to dynamic loading. Rats treated with alloxan to induce diabetes did not show an increase in loss compliance.

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Year:  1996        PMID: 8950660     DOI: 10.1115/1.2796043

Source DB:  PubMed          Journal:  J Biomech Eng        ISSN: 0148-0731            Impact factor:   2.097


  4 in total

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Authors:  Armando Diaz Gonzalez; Maxime A Gallant; David B Burr; Joseph M Wallace
Journal:  J Biomech       Date:  2013-12-06       Impact factor: 2.712

Review 3.  Biomechanics of the Diabetic Foot: Consideration in Limb Salvage.

Authors:  Paul J Kim
Journal:  Adv Wound Care (New Rochelle)       Date:  2013-04       Impact factor: 4.730

4.  Correlation between Diabetes Mellitus and Knee Osteoarthritis: A Dry-To-Wet Lab Approach.

Authors:  Navneet Kumar Dubey; Dina Nur Anggraini Ningrum; Rajni Dubey; Yue-Hua Deng; Yu-Chuan Li; Peter D Wang; Joseph R Wang; Shabbir Syed-Abdul; Win-Ping Deng
Journal:  Int J Mol Sci       Date:  2018-10-03       Impact factor: 5.923

  4 in total

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