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PRACTICAL, NON-INVASIVE MEASUREMENT OF URINARY CATHETER INSERTION FORCES AND MOTIONS

机译:实用,无创的尿道插入力和运动测量

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Catheter associated urinary tract infections (CAUTI) are among the most common nonpayment hospital acquired conditions. Inexperienced health care providers placing indwelling urinary catheters are associated with an increased risk of CAUTI. The creation of high-fidelity simulators may reduce CAUTI risk during critical early learning. As a first step toward the creation of accurate simulators our group set out to characterize the mechanical aspects of urethral catheterization. This work presents an inexpensive, yet practical means of acquiring motion and force data from urethral catheter insertion procedures using OpenCV ArUco markers. Evaluation of the video system's accuracy was done to understand the performance characteristics within the boundaries of the procedure's target workspace. The tracking accuracy was validated to be roughly ± 3 mm in the plane of the camera, and ± 10 - 25 mm along its axis depending on the distance. Feasibility of using this platform in a clinically relevant setting was demonstrated by capturing the force and motion data when performing urinary catheterization on cadaveric donors (N=2).
机译:导管相关性尿路感染(CAUTI)是最常见的非付费医院获得性疾病。缺乏经验的医护人员放置导尿管会增加CAUTI的风险。创建高保真模拟器可以降低关键的早期学习过程中的CAUTI风险。作为创建精确模拟器的第一步,我们小组着手表征尿道导管插入术的机械方面。这项工作提出了一种廉价但实用的方法,该方法使用OpenCV ArUco标记从尿道导管插入过程中获取运动和力数据。对视频系统的准确性进行了评估,以了解过程目标工作空间范围内的性能特征。经验证,跟踪精度在相机平面内大约为±3 mm,在沿其轴的方向上大约为±10-25 mm(取决于距离)。通过在尸体供体上进行导尿(N = 2)时捕获力和运动数据,证明了在临床相关环境中使用该平台的可行性。

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