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Titlebook: Computer Assisted Orthopaedic Surgery for Hip and Knee; Current State of the Nobuhiko Sugano Book 2018 Springer Nature Singapore Pte Ltd. 2

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Patient-Specific Templates for Total Knee Arthroplastyically for more than a decade, PSTs have a TKA success rate comparable to that of traditional knee replacement and that with navigation. With its accurate preoperative calculations, PST allows precise, atraumatic bone cutting and optimal mechanical axis and limb alignment. A surgical procedure may b
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UKA Computer Navigationiency, and alignment. To address these failures, a computer-aided navigation system that consistently provides accurate measurements was developed to reduce the errors committed with conventional UKA. The undercorrection with a minor varus alignment produced by this system provides appropriate outco
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Robotic UKAcomes depend on accurate implant placement, lower limb alignment, and soft tissue balance intraoperatively. Robot-assisted systems aim to improve the surgical accuracy, precision, and reproducibility of clinical outcomes. Semi-active UKA systems with a minimally invasive approach have been developed
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Computed Tomography-Based Navigation for Total Hip Arthroplastysty. Although there is additional cost for preoperative CT images and it requires preoperative planning time, it may reduce the implant inventory cost by precisely predicting implant size and OR time by reducing the decision-making time regarding the final implant size and modular parts selection. I
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CAOS in Bone Tumor Surgerye margin is associated with a high risk of local recurrence and poor patient survival. Orthopedic oncologist surgeons are often faced with the dilemma of how much normal tissue to preserve to retain good function without compromising an adequate margin. With the advent of medical imaging and compute
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