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  4. Ultrasound tissue characteristics of diabetic muscles and tendons: Associations with strength and laboratory blood tests
 
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Ultrasound tissue characteristics of diabetic muscles and tendons: Associations with strength and laboratory blood tests

Journal
Muscles, Ligaments and Tendons Journal
Journal Volume
10
Journal Issue
3
Date Issued
2020-07-01
Author(s)
Kuo, C. Y.
Lee, W. N.
Fong, S. S.M.
Chaiyawat, P.
Bashford, G.
TIFFANY TING-FANG SHIH  
LEE-MING CHUANG  
HSING-KUO WANG  
DOI
10.32098/mltj.03.2020.07
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/551306
URL
https://api.elsevier.com/content/abstract/scopus_id/85091992126
Abstract
© 2020, CIC Edizioni Internazionali s.r.l.. All rights reserved. Background. This study sought to compare the ultrasound tissue characteristics of the muscles (including muscle thickness, echo intensity, and stiffness) and tendons (including thickness, stiffness, and peak spatial frequency radius (PSFR)) of participants with or without diabetes mellitus. Moreover, the study sought to determine any relationships between the muscle stiffness and strength or tendon PSFR and the results of blood tests, including the glycation or lipid profiles, of the diabetics. Methods. Twenty-three participants with type 2 diabetes mellitus and nineteen controls without a history of diabetes were recruited. Results. The diabetic muscles exhibited less thickness (P=0.024), greater echo intensity (P=0.033 and 0.002), and lower muscle stiffness (P=0.015 and 0.009) than the control muscles. Furthermore, the diabetic tendons exhibited a lower PSFR (P ranged between 0.037 and <0.001). There were correlations between the resting stiffness of the gastroc-nemius muscle and the height of heel lifting (r=0.450, P=0.031), between the PSFR in the patellar tendon and the hemoglobin A1c level (r=-0.539, P=0.017), and between the PSFR in the Achilles tendon and the high-density lipoprotein cholesterol level (r=0.545, P=0.019). Conclusions. The diabetic muscles and tendons exhibited morphomechanical changes associated with force capacity or markers of insulin resistance. Clinical applications of musculoskeletal ultrasound techniques to diabetics include using them to design exercise strategies and for microstructural screening.
Subjects
Diabetes | Muscle | Musculoskeletal ultrasound | Tendon | Tissue characteristics
Diabetes; Muscle; Musculoskeletal ultrasound; Tendon; Tissue characteristics
SDGs

[SDGs]SDG2

[SDGs]SDG3

Type
journal article

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