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more applicable for navigation- and robotically assisted surgery. Spine surgeons typically assess pelvic tilt by measuring the angle between a line connecting the centre of femoral heads and the middle of S1 vertebrae in the sagittal plane and the
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). The latter can be achieved using navigation-assisted TKA, robot-assisted TKA technology and patient-specific instrumentation (PSI) ( 57 , 58 ). However, because of the limited perioperative adjustability of PSI, the authors don’t recommend its use
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. Technological assistance for precisely implanting TKA (computer-assisted navigation system – CAS, Robotics, patient-specific instrumentation – PSI) has not been a game-changer for TKA outcomes. This means that technical errors in component positioning may not
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classification error compared with using mechanical sensor data only. 37.684 Malcolm et al 86 2015 The influence of push-off timing in a robotic ankle–foot prosthesis on the energetics and mechanics of walking Level IV. Ten able
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, computer-assisted surgical procedures, three-dimensional-printed implants and instruments, new biomaterials and smart implants are currently being developed. This need is justified by a wish for improvement in patient treatment. A recent example was the
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intelligence and standalone software Artificial intelligence (AI) is increasingly prevalent in diagnostic imaging, decision support for high-risk medical decisions, robotics, and implantable devices with an electronic component. AI software is often self
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Journal of Environmental Research and Public Health 2021 18 11806 . ( https://doi.org/10.3390/ijerph182211806 ) 36 Grassini S . Virtual reality assisted non-pharmacological treatments in chronic pain management: a systematic review and quantitative