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首页> 外文期刊>Veterinary Radiology & Ultrasound >A complementary radiographic projection of the equine temporomandibular joint.
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A complementary radiographic projection of the equine temporomandibular joint.

机译:马颞下颌关节的补充放射线投影。

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摘要

The complexity of the equine skull makes the temporomandibular joint a difficult area to evaluate radiographically. The goal of this study was to determine the optimal angle for a complementary radiographic projection of the equine temporomandibular joint based on a computed tomography (CT) cadaver study. CT was performed on six equine cadaver heads of horses that were euthanized for other reasons than temporomandibular joint disease. After the CT examination, 3D reconstruction of the equine skull was performed to subjectively determine the angle for a complementary radiographic projection of the temporomandibular joint. The angle was measured on the left and right temporomandibular joint of each head. Based on the measurements obtained from the CT images, a radiographic projection of the temporomandibular joint in a rostral45 degrees ventral-caudodorsal oblique (R45 degrees V-CdDO) direction was developed by placing the X-ray unit 30 degrees laterally, maintaining at the same time the R45 degrees V-CdDO angle (R45 degrees V30 degrees L-CdDLO). This radiographic projection was applied to all cadaver heads and on six live horses. In three of the live horses abnormal findings associated with the temporomandibular joint were detected. We conclude that this new radiographic projection of the temporomandibular joint provides superior visualization of the temporomandibular joint space and the articular surface of the mandibular condyle.
机译:马头骨的复杂性使得颞下颌关节难以进行影像学评估。这项研究的目的是基于计算机断层扫描(CT)尸体研究确定马颞下颌关节的互补射线照相投影的最佳角度。对6名马的尸体头部进行了CT检查,这些马因颞下颌关节疾病以外的其他原因而被安乐死。 CT检查后,对马头骨进行3D重建,主观确定颞下颌关节的X线投影的角度。在每个头的左右颞下颌关节处测量角度。根据从CT图像获得的测量结果,通过将X射线单元横向放置30度,保持颞下颌关节在rostral45度腹侧-尾鳍斜向(R45度V-CdDO)方向的放射线照相投影时间R45度V-CdDO角(R45度V30度L-CdDLO)。该射线照相投影适用于所有尸体头部和六只活马。在三只活马中,发现了与颞下颌关节有关的异常发现。我们得出的结论是,颞下颌关节的这种新的放射线照相投影提供了颞下颌关节空间和下颌con关节表面的出色可视化效果。

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