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Titlebook: Intelligent Orthopaedics; Artificial Intellige Guoyan Zheng,Wei Tian,Xiahai Zhuang Book 2018 Springer Nature Singapore Pte Ltd. 2018 Intell

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楼主: dilate
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Biomechanical Optimization-Based Planning of Periacetabular Osteotomy,orted boundary and loading conditions. Peak contact pressures and contact areas were estimated in the original position. Afterward we used validated preoperative planning software to change the acetabular inclination by an increment of 5° and measured the lateral center-edge angle (LCE) at each reor
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Gravity-Assisted Navigation System for Total Hip Arthroplasty,ologies. Taking the measurements from an image-free navigation system as the ground truth, our system showed an average accuracy of 2. 1 ± 0. 7. for inclination and an average accuracy of 1. 2 ± 1. 4. for anteversion.
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3D Visualization and Augmented Reality for Orthopedics,d. This paper overviews IV-based AR navigation and the applications in orthopedics, discusses the infrastructure required for successful implementation of IV-based approaches, and outlines the challenges that must be overcome for IV-based AR navigation to advance further development.
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Intelligent HMI in Orthopedic Navigation,performed more easily and safely..Classic HMI is based on 2D displays and standard input devices of computers. In contrast, modern visual reality (VR) and augmented reality (AR) techniques allow the showing more information for surgical navigation. Various attempts have been applied to image-guided
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