Determination of optimal component positioning in THA using 3D preoperative planning

组分(热力学) 方向(向量空间) 手术计划 医学 全髋关节置换术 生物医学工程 外科 计算机科学 数学 几何学 热力学 物理
作者
M LaCour,M Ta,J Nachtrab,Thi Thuy Hang Nguyen,Richard D. Komistek
出处
期刊:Journal of Orthopaedic Research [Wiley]
被引量:1
标识
DOI:10.1002/jor.25803
摘要

Abstract Advancements in three‐dimensional (3D) preoperative planning tools can offer surgeons and design engineers detailed feedback and additional opportunities for clinical advancements. The objective of this study is to use a 3D total hip arthroplasty preoperative planning tool to compare femoral component alignment for three different stem systems. The planning tool in this study used morphology data of femoral bones gathered from a CT database, seven from postoperative patients and 63 from statistical shape models (SSMs), to suggest specific implant sizes and optimal placements in 3D to match each specific bone model. Retrospective validations of predicted stem size and femoral version were first performed by comparing planner‐chosen and surgeon‐implanted stem sizes and version angles for the seven postoperative patients. Next, the alignment of three different stem systems was evaluated using bone models generated from SSMs, with a quantitative focus on component head positioning. In the validation study, the planner accurately selected stem size and orientation compared to the surgeon for all assessed subjects. In the stem evaluation, the three stem systems yielded different accuracies in component placement, with the newest stem system demonstrating the closest restoration of anatomical head center location. It is evident that new stem designs may have the potential for increased accuracy over their predecessors, demonstrating that new stem designs can offer improved intraoperative and postoperative alignment potential. The 3D preoperative planning tools can provide novel and reliable data to both surgeons and design engineers, which can ultimately improve clinical outcomes and future implant designs.
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