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基于磁共振成像的技术,用于确定关节软骨外植体整个体积内的非均匀变形。

MRI-based technique for determining nonuniform deformations throughout the volume of articular cartilage explants.

作者信息

Neu C P, Hull M L, Walton J H, Buonocore M H

机构信息

Biomedical Engineering Graduate Group, University of California-Davis, Davis, California 95616, USA.

出版信息

Magn Reson Med. 2005 Feb;53(2):321-8. doi: 10.1002/mrm.20343.

Abstract

Articular cartilage is critical to the normal function of diarthrodial joints. Despite the importance of the tissue and the prevalence of cartilage degeneration (e.g., osteoarthritis), the technology required to noninvasively describe nonuniform deformations throughout the volume of the tissue has not been available until recently. The objectives of the work reported in this paper were to 1) describe a noninvasive technique (termed the cartilage deformation by tag registration (CDTR) technique) to determine nonuniform deformations in articular cartilage explants with the use of specialized MRI tagging and image processing methods, 2) evaluate the strain error of the CDTR technique using a custom MRI-compatible phantom material, and 3) demonstrate the applicability of the CDTR technique to articular cartilage by determining 3D strain fields throughout the volume of a bovine articular cartilage explant. A custom MRI pulse sequence was designed to tag and image articular cartilage explants at 7 Tesla in undeformed and deformed states during the application of multiple load cycles. The custom pulse sequence incorporated the "delays alternating with nutations for tailored excitation" (DANTE) pulse sequence to apply tags. This was followed by a "fast spin echo" (FSE) pulse sequence to create images of the tags. The error analysis using the phantom material indicated that deformations can be determined with an error, defined as the strain precision, better than 0.83% strain. When this technique was applied to a single articular cartilage explant loaded in unconfined compression, hetereogeneous deformations throughout the volume of the tissue were evident. This technique potentially can be applied to determine normal cartilage deformations, analyze degenerated cartilage, and evaluate cartilage surgical repair and treatment methodologies. In addition, this technique may be applied to other soft tissues that can be appropriately imaged by MR.

摘要

关节软骨对于动关节的正常功能至关重要。尽管该组织很重要且软骨退变(如骨关节炎)很普遍,但直到最近才出现能够无创描述整个组织体积内非均匀变形的技术。本文报道的这项工作的目标是:1)描述一种无创技术(称为通过标记配准的软骨变形(CDTR)技术),利用专门的MRI标记和图像处理方法来确定关节软骨外植体中的非均匀变形;2)使用定制的MRI兼容体模材料评估CDTR技术的应变误差;3)通过确定牛关节软骨外植体整个体积内的三维应变场,证明CDTR技术在关节软骨中的适用性。设计了一种定制的MRI脉冲序列,用于在多个加载周期应用过程中,在7特斯拉场强下对未变形和变形状态的关节软骨外植体进行标记和成像。该定制脉冲序列结合了“用于定制激发的延迟与章动交替”(DANTE)脉冲序列来施加标记。随后是一个“快速自旋回波”(FSE)脉冲序列来创建标记的图像。使用体模材料进行的误差分析表明,变形可以在定义为应变精度的误差优于0.83%应变的情况下被确定。当将该技术应用于在无侧限压缩下加载的单个关节软骨外植体时,整个组织体积内的非均匀变形很明显。该技术有可能用于确定正常软骨变形、分析退变软骨以及评估软骨手术修复和治疗方法。此外,该技术可能适用于其他能够通过磁共振进行适当成像的软组织。

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