Tang Hao, Zhou Yixin, Mai Baojun, Zhu Binjie, Chen Ping, Fu Yujia, Wang Guangzhi
Department of Orthopaedic Surgery, Beijing Jishuitan Hospital, Capital Medical University, National Orthopeadic Center of China, Beijing, 100035, China.
Beijing Yiemed Medical Technology Co., Ltd., Beijing, 100098, China.
Arthroplasty. 2025 Jun 25;7(1):36. doi: 10.1186/s42836-025-00312-3.
Intraoperative measurement of component orientation represents a basis for optimizing outcomes after total hip arthroplasty (THA). Although the use of computer navigation systems in THA has improved the accuracy of component positioning, they have not gained widespread popularity due to their complexity, time demands, and time-consuming protocols.
We developed an Inertial Measurement Unit-based Hip Smart Trial system (IMUHST) to assist with intra-operative monitoring of hip posture. An in vitro validation experiment was conducted using a sawbones with a three-dimensional (3D) measurement model as the reference standard.
The absolute mean error, Bland-Altman analysis, and Intra-class Correlation Coefficient revealed that the accuracy and precision of this system meet the threshold for clinical application.
In conclusion, this in vitro validation demonstrates that the IMUHST system provides accurate component orientation measurements while eliminating the cost and complexity of optical navigation, offering a practical solution for widespread adoption. Video Abstract.
术中测量假体组件的方向是优化全髋关节置换术(THA)术后效果的基础。尽管计算机导航系统在THA中的应用提高了假体组件定位的准确性,但由于其复杂性、时间要求和耗时的操作流程,尚未得到广泛应用。
我们开发了一种基于惯性测量单元的髋关节智能试验系统(IMUHST),以辅助术中监测髋关节姿势。使用带有三维(3D)测量模型的人工骨作为参考标准进行了体外验证实验。
绝对平均误差、布兰德-奥特曼分析和组内相关系数表明,该系统的准确性和精密度符合临床应用阈值。
总之,这项体外验证表明,IMUHST系统提供了准确的假体组件方向测量,同时消除了光学导航的成本和复杂性,为广泛应用提供了一种实用的解决方案。视频摘要。