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Radial Distortion of the Arthroscopic Transtibial Portal: A 2-Dimensional in Vitro Model

机译:关节镜下胫骨门的径向变形:二维体外模型

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摘要

Purpose: To make the positioning of the anterior cruciate ligament (ACL) transplants as precise as possible, it is necessary to better visualize the foot-print. Identifying anatomic sites is complicated by image distortion inherent in arthroscopy. The standard “Outside-In” ACL reconstruction technique involves drilling a tunnel, i.e. an aperture on the surface of the tibia for the purpose of placing the bone-tendon-bone transplant. This operative technique opens another approach to the inside of the knee, through the tibial plateau (Transtibial-TT). The aim of this manuscript is to assess optimal arthroscopic visibility by calculating radial distortion, arthroscopy insertion positions and different knee bending angles. Methods: We used a standard dot array calibration pattern, an arthroscopic imaging system and Sawbones, knee models. The standard deviation and relative standard deviation of distances obtained at distortion of the images were calculated. Results: All captured imagines have shown the effect of distortion so called fish-eye view, i.e. the imagines at periphery were more curved and compressed. Conclusion: The least distorted arthroscopic image of the femoral ACL footprint can be obtained when using the TT portal and by bending the knee between 90° and 130, with a 30, arthroscope. Also, the best visualization is performed by drilling the tibia under the angle 0, in the sagittal plane and 23, in the coronal plane in comparison to the tibial surface.,
机译:目的:为了使前交叉韧带(ACL)移植物的定位尽可能精确,有必要更好地可视化脚印。关节镜固有的图像失真使解剖部位的识别变得复杂。标准的“由内而外”的ACL重建技术涉及在胫骨表面上钻一个隧道,即一个小孔,目的是放置骨腱-骨移植物。通过胫骨平台(Transtibial-TT),这种手术技术为膝盖内部打开了另一种方法。该手稿的目的是通过计算径向变形,关节镜插入位置和不同的膝盖弯曲角度来评估最佳的关节镜可见性。方法:我们使用标准的点阵列校准图案,关节镜成像系统和Sawbones膝关节模型。计算在图像失真时获得的距离的标准偏差和相对标准偏差。结果:所有捕获的图像都显示了扭曲的效果,即所谓的鱼眼视图,即外围的图像更加弯曲和压缩。结论:使用TT门户并通过30关节镜将膝盖弯曲90°至130之间,可获得股骨ACL足迹的畸变最小的关节镜图像。同样,与胫骨表面相比,最好在矢状面和冠状面分别在0度角和23度角下对胫骨钻孔,以实现最佳可视化。

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