Kono Kenta, Yamaguchi Satoshi, Kimura Seiji, Mikami Yukio, Kitsukawa Kaoru, Matsumoto Koji, Edama Mutsuaki, Shiko Yuki, Horii Manato, Sasho Takahisa, Ohtori Seiji
Department of Orthopaedic Surgery, Graduate School of Medical and Pharmaceutical Sciences, Chiba University, 1-8-1 Inohana, Chuo-Ku, Chiba-Shi, Chiba, 260-8670, Japan.
Graduate School of Global and Transdisciplinary Studies, Chiba University, Chiba, Japan.
Skeletal Radiol. 2025 May;54(5):937-945. doi: 10.1007/s00256-024-04778-1. Epub 2024 Sep 7.
Knowledge of footprint anatomy is essential for ankle anterior talofibular ligament repair and reconstruction. We aimed to determine the intra- and inter-rater measurement reliability of the anterior talofibular ligament footprint dimension using three-dimensional MRI.
MRI images of 20 ankles with intact ligaments, including 11 with a single bundle and nine with double-bundle ligaments, were analyzed. Imaging was performed using a 3.0-Tesla MRI. Isotropic three-dimensional proton density-weighted images with a voxel size of 0.6 mm were obtained. The fibular and talar footprints were manually segmented using image processing software to create three-dimensional ligament footprints. The lengths, widths, and areas of each sample were measured. A certified orthopedic surgeon and a senior orthopedic fellow performed the measurements twice at 6-week intervals. The intra- and inter-rater differences in the measurements were calculated.
The length, width, and area of the single-bundle fibular footprint were 8.7 mm, 5.4 mm, and 37.4 mm, respectively. Those of the talar footprint were 8.4 mm, 4.3 mm, and 30.1 mm, respectively. The inferior bundle of the double-bundle ligament was significantly smaller than the single and superior bundles (p < 0.001). No differences were observed between intra-rater measurements by either rater, with maximum differences of 0.7 mm, 0.5, and 1.7 mm, in length, width, and area, respectively. The maximum inter-rater measurement differences were 1.9 mm, 0.5, and 2.4 mm, respectively.
Measurements of the anterior talofibular ligament dimensions using three-dimensional MRI were sufficiently reliable. This measurement method provides in vivo quantitative data on ligament footprint anatomy.
了解足迹解剖结构对于踝关节前距腓韧带修复和重建至关重要。我们旨在使用三维磁共振成像(MRI)确定前距腓韧带足迹尺寸的测量者内和测量者间的可靠性。
分析了20例韧带完整的踝关节的MRI图像,其中11例为单束韧带,9例为双束韧带。使用3.0特斯拉MRI进行成像。获得了体素大小为0.6毫米的各向同性三维质子密度加权图像。使用图像处理软件手动分割腓骨和距骨足迹,以创建三维韧带足迹。测量每个样本的长度、宽度和面积。一名经过认证的骨科医生和一名资深骨科住院医师每隔6周进行两次测量。计算测量者内和测量者间的测量差异。
单束腓骨足迹的长度、宽度和面积分别为8.7毫米、5.4毫米和37.4平方毫米。距骨足迹的长度、宽度和面积分别为8.4毫米、4.3毫米和30.1平方毫米。双束韧带的下束明显小于单束和上束(p<0.001)。两位测量者的测量者内测量之间均未观察到差异,长度、宽度和面积的最大差异分别为0.7毫米、0.5毫米和1.7平方毫米。测量者间的最大测量差异分别为1.9毫米、0.5毫米和2.4平方毫米。
使用三维MRI测量前距腓韧带尺寸具有足够的可靠性。这种测量方法提供了韧带足迹解剖结构的体内定量数据。