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扳机指形态学和力学特性的综合模拟——尸体模型

Comprehensive simulation on morphological and mechanical properties of trigger finger - A cadaveric model.

作者信息

Cheng Yu-Shiuan, Chieh Hsiao-Feng, Lin Chien-Ju, Kuo Li-Chieh, An Kai-Nan, Su Fong-Chin

机构信息

Department of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan.

Department of Biomedical Engineering, National Cheng Kung University, Tainan, Taiwan; Musculoskeletal Research Center, National Cheng Kung University, Tainan, Taiwan.

出版信息

J Biomech. 2018 Jun 6;74:187-191. doi: 10.1016/j.jbiomech.2018.03.043. Epub 2018 Mar 30.

Abstract

Trigger finger has long been a common disorder in hand orthopedics. To clarify the unknown causative factors regarding the disease, numerous experiments were done on human cadavers, including tendon forces, tendon moment arm, mechanical properties of the pulley, gliding resistance, etc. However, most of these studies were conducted on normal fingers. As the etiology of trigger finger is still controversial on whether it is an outcome of tendon nodule or pulley scarring, in this study, a trigger finger model was built combining both the nodule created by silicone gel injection and pulley constriction by external compression. Indentation and gliding resistance tests were performed on cadaveric specimens to verify the model. Results showed that after silicone gel injection into the tendon, a significant increase in thickness was found. In addition, no significant difference was found in the toe region compressive modulus of the tendon after injection. Moreover, maximum, drop of gliding resistance and work of extension were all found to be significantly larger as the severity of triggering increased. Our results indicated we have developed a feasible cadaver model simulating trigger finger nodule which could be utilized for further experiments to elucidate other causative factors and biomechanical features of trigger finger in the future.

摘要

扳机指长期以来一直是手部骨科的常见病症。为了阐明该疾病未知的致病因素,人们在人体尸体上进行了大量实验,包括肌腱力、肌腱力臂、滑车的力学性能、滑动阻力等。然而,这些研究大多是在正常手指上进行的。由于扳机指的病因究竟是肌腱结节还是滑车瘢痕形成仍存在争议,在本研究中,构建了一个扳机指模型,该模型结合了硅胶注射造成的结节和外部压迫导致的滑车狭窄。对尸体标本进行压痕和滑动阻力测试以验证该模型。结果显示,向肌腱内注射硅胶后,厚度显著增加。此外,注射后肌腱趾区的压缩模量没有显著差异。而且,随着扳机症状严重程度的增加,最大滑动阻力下降和伸展功均显著增大。我们的结果表明,我们已经开发出一种可行的模拟扳机指结节的尸体模型,可用于未来进一步的实验,以阐明扳机指的其他致病因素和生物力学特征。

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