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三角纤维软骨复合体的超声影像学运动分析:初步分析。

Motion Analysis of Triangular Fibrocartilage Complex by Using Ultrasonography Images: Preliminary Analysis.

机构信息

Department of Orthopaedic Surgery, Graduate School of Medicine, Kobe University, 5-2, Kusunoki-cho 7, Chuo-ku, Kobe-shi 650-0017, Japan.

出版信息

Sensors (Basel). 2022 Jan 4;22(1):345. doi: 10.3390/s22010345.

Abstract

The triangular fibrocartilage complex (TFCC) is a significant stabilizer of the distal radioulnar joint. Diagnosing TFCC injury is currently difficult, but ultrasonography (US) has emerged as a low-cost, minimally invasive diagnostic tool. We aimed to quantitatively analyze TFCC by performing motion analysis by using US. Twelve healthy volunteers, comprising 24 wrists (control group), and 15 patients with TFCC Palmer type 1B injuries (injury group) participated. The US transducer was positioned between the ulnar styloid process and triquetrum and was tilted ulnarly 30° from the vertical line. The wrist was then actively moved from 10° of radial deviation to 20° of ulnar deviation in a 60-rounds-per-minute rhythm that was paced by a metronome. The articular disc displacement velocity magnitude was analyzed by using particle image velocimetry fluid measurement software. The mean area of the articular discs was larger on ulnar deviation in the control group. The mean articular disc area on radial deviation was larger in the injury group. The average articular disc velocity magnitude for the injury group was significantly higher than that for the control group. The results suggest that patients with TFCC injury lose articular disc cushioning and static stability, and subsequent abnormal motion can be analyzed by using US.

摘要

三角纤维软骨复合体(TFCC)是稳定远侧桡尺关节的重要结构。目前,TFCC 损伤的诊断较为困难,但超声(US)已成为一种低成本、微创的诊断工具。本研究旨在通过 US 运动分析对 TFCC 进行定量分析。12 名健康志愿者(对照组,24 只腕关节)和 15 名 TFCC Palmer 1B 型损伤患者(损伤组)参与了本研究。US 探头置于尺骨茎突和三角骨之间,相对于垂直线向尺侧倾斜 30°。然后,腕关节在节拍器以 60 转/分的速度引导下,从 10°桡偏主动活动到 20°尺偏。使用粒子图像测速流体测量软件分析关节盘位移速度大小。对照组在尺偏时关节盘的平均面积较大。损伤组在桡偏时的平均关节盘面积较大。损伤组的平均关节盘速度明显高于对照组。这些结果提示,TFCC 损伤患者丧失了关节盘的缓冲和静态稳定性,可通过 US 分析其异常运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64ce/8749810/23c2e86cf78e/sensors-22-00345-g001.jpg

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