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为未来骨科塑造全新的技术前景。

Branding a New Technological Outlook for Future Orthopaedics.

作者信息

Tueni Nicole, Amirouche Farid

机构信息

Institute of Continuum Mechanics and Biomechanics, Friedrich-Alexander-Universität Erlangen-Nuremberg, 91054 Erlangen, Germany.

Department of Orthopaedics, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

Bioengineering (Basel). 2025 May 7;12(5):494. doi: 10.3390/bioengineering12050494.

Abstract

Orthopedics is undergoing a transformative shift driven by personalized medical technologies that enhance precision, efficiency, and patient outcomes. Virtual surgical planning, robotic assistance, and real-time 3D navigation have revolutionized procedures like total knee arthroplasty and hip replacement, offering unparalleled accuracy and reducing recovery times. Integrating artificial intelligence, advanced imaging, and 3D-printed patient-specific implants further elevates surgical precision, minimizes intraoperative complications, and supports individualized care. In sports orthopedics, wearable sensors and motion analysis technologies are revolutionizing diagnostics, injury prevention, and rehabilitation, enabling real-time decision-making and improved patient safety. Health-tracking devices are advancing recovery and supporting preventative care, transforming athletic performance management. Concurrently, breakthroughs in biologics, biomaterials, and bioprinting are reshaping treatments for cartilage defects, ligament injuries, osteoporosis, and meniscal damage. These innovations are poised to establish new benchmarks for regenerative medicine in orthopedics. By combining cutting-edge technologies with interdisciplinary collaboration, the field is redefining surgical standards, optimizing patient care, and paving the way for a highly personalized and efficient future.

摘要

骨科正在经历一场变革性的转变,这是由个性化医疗技术推动的,这些技术提高了精准度、效率并改善了患者预后。虚拟手术规划、机器人辅助和实时三维导航彻底改变了全膝关节置换术和髋关节置换术等手术,提供了无与伦比的准确性并缩短了康复时间。整合人工智能、先进成像技术和3D打印的个性化植入物进一步提高了手术精准度,将术中并发症降至最低,并支持个性化护理。在运动骨科领域,可穿戴传感器和运动分析技术正在彻底改变诊断、损伤预防和康复方式,实现实时决策并提高患者安全性。健康追踪设备正在促进康复并支持预防保健,改变运动表现管理。与此同时,生物制剂、生物材料和生物打印方面的突破正在重塑软骨缺损、韧带损伤、骨质疏松症和半月板损伤的治疗方法。这些创新有望为骨科再生医学树立新的标杆。通过将前沿技术与跨学科合作相结合,该领域正在重新定义手术标准,优化患者护理,并为高度个性化和高效的未来铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/da01/12109234/5ea074ea2e11/bioengineering-12-00494-g001.jpg

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