Anderson D D, Daniel T E
Biomechanics Research Laboratory, Allegheny-Singer Research Institute, Pittsburgh, PA 15212, USA.
Semin Arthroplasty. 1995 Jan;6(1):30-6.
A plane-strain finite element contact model of the radiocarpal joint has been developed to investigate the mechanical relationship between initial intra-articular fracture of the distal radius, subsequent imprecise reduction of articular incongruency, and final onset of osteoarthrosis. The model includes the radius, two carpal bones (the lunate and the scaphoid), and the articulations and ligamentous connections between the bones. The model has been validated through comparisons with previous experimental and computational models of the wrist. The relationship between malreduced intra-articular fracture of the distal radius and the subsequent onset of posttraumatic radiocarpal osteoarthrosis is clinically important but poorly understood. The broad objective of the current research is the development of a well-verified computational model of the radiocarpal joint, which in concert with previously developed experimental models, will be capable of providing guidance toward rigorously grounded improvements in distal radius intra-articular fracture management techniques. This model represents a first step toward this objective as well as a new level of computational simulation of wrist mechanics.
已开发出一种桡腕关节的平面应变有限元接触模型,以研究桡骨远端关节内初始骨折、随后关节面不平整的复位不准确与骨关节炎最终发病之间的力学关系。该模型包括桡骨、两块腕骨(月骨和舟骨)以及这些骨骼之间的关节和韧带连接。通过与先前腕关节的实验和计算模型进行比较,该模型已得到验证。桡骨远端关节内骨折复位不良与创伤后桡腕骨关节炎随后发病之间的关系在临床上很重要,但了解甚少。当前研究的广泛目标是开发一个经过充分验证的桡腕关节计算模型,该模型与先前开发的实验模型相结合,将能够为桡骨远端关节内骨折治疗技术的严格改进提供指导。该模型代表了朝着这一目标迈出的第一步,也是腕关节力学计算模拟的一个新水平。