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使用高度加速的 3D 放射状采样测量胫股运动学。

Measurement of tibiofemoral kinematics using highly accelerated 3D radial sampling.

机构信息

Department of Mechanical Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Magn Reson Med. 2013 May;69(5):1310-6. doi: 10.1002/mrm.24362. Epub 2012 Jun 12.

Abstract

This study investigated the use of dynamic, volumetric MRI to measure 3D skeletal motion. Ten healthy subjects were positioned on a MR-compatible knee loading device and instructed to harmonically flex and extend their knee at 0.5 Hz. The device induced active quadriceps loading with knee flexion, similar to the load acceptance phase of gait. Volumetric images were continuously acquired for 5 min using a 3D cine spoiled gradient-echo sequence in conjunction with vastly under-sampled isotropic projection reconstruction. Knee angle was simultaneously monitored and used retrospectively to sort images into 60 frames over the motion cycle. High-resolution static knee images were acquired and segmented to create subject-specific models of the femur and tibia. At each time frame, bone positions and orientations were determined by automatically registering the skeletal models to the dynamic images. Three-dimensional tibiofemoral translations and rotations were consistent across healthy subjects. Internal tibia rotations of 7.8±3.5° were present with 35.8±3.8° of knee flexion, a pattern consistent with knee kinematic measures during walking. We conclude that vastly under-sampled isotropic projection reconstruction imaging is a promising approach for noninvasively measuring 3D joint kinematics, which may be useful for assessing cartilage contact and investigating the causes and treatment of joint abnormalities.

摘要

本研究利用动态、容积 MRI 来测量 3D 骨骼运动。10 位健康受试者被安置在一种与磁共振兼容的膝关节加载设备上,并被要求以 0.5Hz 的频率进行和谐的膝关节屈伸运动。该设备在膝关节弯曲时诱发主动股四头肌加载,类似于步态的负荷接受阶段。使用三维电影扰相梯度回波序列结合大欠采样各向同性投影重建,连续采集 5 分钟容积图像。膝关节角度被同步监测,并用于回顾性地将图像分为运动周期中的 60 帧。采集高分辨率的静态膝关节图像并进行分割,以创建股骨和胫骨的特定于个体的模型。在每个时间帧,通过自动将骨骼模型与动态图像配准来确定骨骼的位置和方向。三维胫股关节平移和旋转在健康受试者中是一致的。当膝关节弯曲 35.8°±3.8°时,存在 7.8°±3.5°的胫骨内旋转,这与步行时膝关节运动学测量的模式一致。我们得出结论,大欠采样各向同性投影重建成像可能是一种非侵入性测量 3D 关节运动学的有前途的方法,这可能有助于评估软骨接触以及研究关节异常的原因和治疗方法。

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