Key Laboratory of Exercise and Health Sciences of Ministry of Education, Shanghai University of Sport, 200 Hengren Road, Yangpu District, Shanghai, China.
Department of Orthopedics, The First Affiliated Hospital of Soochow University, Orthopedic Institute of Soochow University, 899 Pinghai Road, Soochow, China.
J Orthop Surg Res. 2023 Feb 13;18(1):101. doi: 10.1186/s13018-022-03497-4.
Measurement of knee laxity after anterior cruciate ligament (ACL) injury is crucial for appropriate treatment and rehabilitation decision-making. This study examined the potential of a new digital arthrometer (Ligs, Innomotion, Shanghai, China) to quantify anterior tibial translation (ATT) in patients with ACL injuries and in healthy subjects.
A total of 60 participants included 30 subjects with single-leg ACL injuries and 30 healthy subjects included as controls. The lower leg was immobilized. The thruster is positioned posterior to the lower leg and parallel to the tibial tuberosity in the sagittal plane. The load is applied vertically to the tibia under a dynamic load of 0-150 N, with continuous displacement recorded. The intrarater and interrater reliability will be examined. ATT and side-to-side differences (SSD) between the control and ACL injury groups were compared. Receiver operating characteristic (ROC) curves were analyzed, and the area under the curve (AUC) was calculated to determine the diagnostic accuracy of the Ligs.
The interrater ICC was 0.909 and the intrarater ICC was 0.943. Significant differences in the SSD were observed between the control and ACL injury groups (for all P < 0.05), with the largest effect size (ES = 1.12) at 80 N. When comparing ATT at different loads between injured and healthy sides in the ACL injury group, displacement was statistically significant at different loads. At a load of 150 N, the AUC was the maximum (0.857) and the sensitivity and specificity were 0.87 and 0.73, respectively.
A digital arthrometer can be used as a quantitative instrument to quantify knee laxity. Quantitative measurement of ATT and SSD under controlled loading can be an objective and effective tool for clinical practice.
测量前交叉韧带(ACL)损伤后的膝关节松弛度对于适当的治疗和康复决策至关重要。本研究旨在探讨一种新型数字关节计(Ligs,Innomotion,上海,中国)在 ACL 损伤患者和健康受试者中定量测量前胫骨平移(ATT)的潜力。
共有 60 名参与者,包括 30 名单侧 ACL 损伤患者和 30 名健康受试者作为对照组。将小腿固定。在矢状面中,推进器位于小腿后方并与胫骨结节平行。在 0-150N 的动态负荷下,垂直向胫骨施加负荷,连续记录位移。将检查内部和内部测试者的可靠性。比较对照组和 ACL 损伤组之间的 ATT 和侧间差异(SSD)。分析接收者操作特征(ROC)曲线,并计算曲线下面积(AUC),以确定 Ligs 的诊断准确性。
内部测试者 ICC 为 0.909,外部测试者 ICC 为 0.943。在对照组和 ACL 损伤组之间,SSD 存在显著差异(所有 P<0.05),在 80N 时具有最大效应量(ES=1.12)。在 ACL 损伤组中,比较受伤侧和健康侧在不同负荷下的 ATT 时,在不同负荷下的位移具有统计学意义。在 150N 时,AUC 最大(0.857),灵敏度和特异性分别为 0.87 和 0.73。
数字关节计可用作定量测量膝关节松弛度的仪器。定量测量受控加载下的 ATT 和 SSD 可能是临床实践中的一种客观有效的工具。