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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Image-Guided Surgical Robotic System for Percutaneous Reduction of Joint Fractures
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Image-Guided Surgical Robotic System for Percutaneous Reduction of Joint Fractures

机译:图像引导的外科机器人系统,用于经皮骨折

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Complex joint fractures often require an open surgical procedure, which is associated with extensive soft tissue damages and longer hospitalization and rehabilitation time. Percutaneous techniques can potentially mitigate these risks but their application to joint fractures is limited by the current sub-optimal 2D intra-operative imaging (fluoroscopy) and by the high forces involved in the fragment manipulation (due to the presence of soft tissue, e.g., muscles) which might result in fracture malreduction. Integration of robotic assistance and 3D image guidance can potentially overcome these issues. The authors propose an image-guided surgical robotic system for the percutaneous treatment of knee joint fractures, i.e., the robot-assisted fracture surgery (RAFS) system. It allows simultaneous manipulation of two bone fragments, safer robot-bone fixation system, and a traction performing robotic manipulator. This system has led to a novel clinical workflow and has been tested both in laboratory and in clinically relevant cadaveric trials. The RAFS system was tested on 9 cadaver specimens and was able to reduce 7 out of 9 distal femur fractures (T- and Y-shape 33-C1) with acceptable accuracy (approximate to 1 mm, approximate to 5 degrees), demonstrating its applicability to fix knee joint fractures. This study paved the way to develop novel technologies for percutaneous treatment of complex fractures including hip, ankle, and shoulder, thus representing a step toward minimally-invasive fracture surgeries.
机译:复杂的关节骨折通常需要开放的外科手术,这与广泛的软组织损伤和较长的住院和康复时间相关。经皮技术可以潜在地减轻这些风险,但它们对关节骨折的施用受到当前次优2D术中术中的成像(荧光学)的限制,并且由片段操作中涉及的高力(由于存在软组织,例如,肌肉可能导致骨折术。机器人援助和3D图像引导的整合可能会克服这些问题。作者提出了一种用于经皮治疗膝关节骨折的图像引导的手术机器人系统,即机器人辅助骨折手术(RAF)系统。它允许同时操纵两个骨碎片,更安全的机器人 - 骨固定系统和执行机器人操纵器的牵引力。该系统导致了新型临床工作流程,并在实验室和临床相关的尸体试验中进行了测试。 RAFS系统在9个尸体标本上进行了测试,能够以可接受的精度(近似为1mm,近似为5度),减少9个远端股骨骨折(T型和Y形33-C1)中的7个,证明其适用性固定膝关节骨折。这项研究铺设了开发新型技术,用于经皮治疗复杂骨折,包括髋,脚踝和肩部,从而表示朝向微创骨折手术的步骤。

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