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基于聚合物的电容式应变仪测量膝关节内旋与考虑性别差异的机械旋转测量的比较分析

Internal Rotation Measurement of the Knee with Polymer-Based Capacitive Strain Gauges versus Mechanical Rotation Measurement Taking Gender Differences into Account: A Comparative Analysis.

作者信息

Mayr Hermann O, Rosenstiel Nikolaus, Prakash Karthika S, Comella Laura Maria, Woias Peter, Schmal Hagen, Seidenstuecker Michael

机构信息

G.E.R.N. Tissue Replacement, Regeneration & Neogenesis, Department of Orthopedics and Trauma Surgery, Medical Center-Albert-Ludwigs-University of Freiburg, Faculty of Medicine, Albert-Ludwigs-University of Freiburg, Engesser Straße 4, 79108 Freiburg, Germany.

Department of Orthopedics and Trauma Surgery, Medical Center Albert-Ludwigs-University of Freiburg, Faculty of Medicine, Albert-Ludwigs-University of Freiburg, Hugstetter Str. 55, 79106 Freiburg, Germany.

出版信息

Life (Basel). 2024 Jan 19;14(1):142. doi: 10.3390/life14010142.

Abstract

With the conventional mechanical rotation measurement of joints, only static measurements are possible with the patient at rest. In the future, it would be interesting to carry out dynamic rotation measurements, for example, when walking or participating in sports. Therefore, a measurement method with an elastic polymer-based capacitive measuring system was developed and validated. In our system, the measurement setup was comprised of a capacitive strain gauge made from a polymer, which was connected to a flexible printed circuit board. The electronics integrated into the printed circuit board allowed data acquisition and transmission. As the sensor strip was elongated, it caused a change in the spacing between the strain gauge's electrodes, leading to a modification in capacitance. Consequently, this alteration in capacitance enabled the measurement of strain. The measurement system was affixed to the knee by adhering the sensor to the skin in alignment with the anterolateral ligament (ALL), allowing the lower part of the sensor (made of silicone) and the circuit board to be in direct contact with the knee's surface. It is important to note that the sensor should be attached without any prior stretching. To validate the system, an in vivo test was conducted on 10 healthy volunteers. The dorsiflexion of the ankle was set at 2 Nm using a torque meter to eliminate any rotational laxity in the ankle. A strain gauge sensor was affixed to the Gerdii's tubercle along the course of the anterolateral ligament, just beneath the lateral epicondyle of the thigh. In three successive measurements, the internal rotation of the foot and, consequently, the lower leg was quantified with a 2 Nm torque. The alteration in the stretch mark's length was then compared to the measured internal rotation angle using the static measuring device. A statistically significant difference between genders emerged in the internal rotation range of the knee ( = 0.003), with female participants displaying a greater range of rotation compared to their male counterparts. The polymer-based capacitive strain gauge exhibited consistent linearity across all measurements, remaining within the sensor's initial 20% strain range. The comparison between length change and the knee's internal rotation angle revealed a positive correlation (r = 1, < 0.01). The current study shows that elastic polymer-based capacitive strain gauges are a reliable instrument for the internal rotation measurement of the knee. This will allow dynamic measurements in the future under many different settings. In addition, significant gender differences in the internal rotation angle were seen.

摘要

对于传统的关节机械旋转测量,只能在患者静止时进行静态测量。未来,进行动态旋转测量将会很有意思,例如在行走或参加运动时。因此,开发并验证了一种基于弹性聚合物的电容式测量系统的测量方法。在我们的系统中,测量装置由一个由聚合物制成的电容式应变片组成,该应变片连接到一个柔性印刷电路板上。集成在印刷电路板中的电子元件实现了数据采集和传输。当传感器条被拉长时,它会导致应变片电极之间的间距发生变化,从而引起电容的改变。因此,这种电容的变化使得应变测量成为可能。通过将传感器与前外侧韧带(ALL)对齐并粘贴在皮肤上,将测量系统固定在膝盖上,使传感器的下部(由硅胶制成)和电路板直接与膝盖表面接触。需要注意的是,传感器应在没有任何预先拉伸的情况下进行粘贴。为了验证该系统,对10名健康志愿者进行了体内测试。使用扭矩计将踝关节的背屈设定为2 Nm,以消除踝关节的任何旋转松弛。沿着前外侧韧带的走行,在大腿外侧髁下方,将一个应变片传感器粘贴在格迪氏结节上。在三次连续测量中,用2 Nm的扭矩对足部以及小腿的内旋进行量化。然后使用静态测量装置将拉伸痕迹长度的变化与测量的内旋角度进行比较。在膝盖的内旋范围内,性别之间出现了统计学上的显著差异(P = 0.003),女性参与者的旋转范围比男性参与者更大。基于聚合物的电容式应变片在所有测量中均表现出一致的线性,保持在传感器初始20%应变范围内。长度变化与膝盖内旋角度之间的比较显示出正相关(r = 1,P < 0.01)。当前研究表明,基于弹性聚合物的电容式应变片是用于膝盖内旋测量的可靠仪器。这将使得未来在许多不同场景下进行动态测量成为可能。此外,还观察到内旋角度存在显著的性别差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fac/10821048/c841c15d2f69/life-14-00142-g001.jpg

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