脊柱护理中的人工智能和机器学习:推进精确诊断、治疗和康复。

IF 2.3 Q2 ORTHOPEDICS
Aqil M Jawed, Lei Zhang, Zhang Zhang, Qi Liu, Waqas Ahmed, Huan Wang
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引用次数: 0

摘要

人工智能(AI)和机器学习(ML)通过解决诊断、治疗计划和康复挑战,正在改变脊柱护理。这项研究强调了脊柱病理精准医学的进步,利用人工智能和机器学习通过深度学习算法提高诊断准确性,从而更快、更准确地检测异常。人工智能机器人和手术导航系统提高了植入物的放置精度,减少了复杂脊柱手术的并发症。采用人工智能设计的可穿戴设备和虚拟平台提供个性化、适应性治疗,提高了治疗依从性和康复效果。人工智能还可以通过早期评估脊柱疾病风险来实现预防性干预。尽管取得了进展,但挑战依然存在,包括有限的医疗数据集、算法偏见、伦理问题以及与现有系统的集成。跨学科合作和可解释的人工智能框架对于释放人工智能在脊柱护理中的全部潜力至关重要。未来的发展包括集成成像、临床和遗传数据的多模式人工智能系统,用于整体治疗方法。人工智能和机器学习有望在诊断准确性、治疗个性化、服务可及性和成本效率方面取得重大进展,为更精简和有效的脊柱护理铺平道路,最终提高患者的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Artificial intelligence and machine learning in spine care: Advancing precision diagnosis, treatment, and rehabilitation.

Artificial intelligence and machine learning in spine care: Advancing precision diagnosis, treatment, and rehabilitation.

Artificial intelligence and machine learning in spine care: Advancing precision diagnosis, treatment, and rehabilitation.

Artificial intelligence (AI) and machine learning (ML) are transforming spine care by addressing diagnostics, treatment planning, and rehabilitation challenges. This study highlights advancements in precision medicine for spinal pathologies, leveraging AI and ML to enhance diagnostic accuracy through deep learning algorithms, enabling faster and more accurate detection of abnormalities. AI-powered robotics and surgical navigation systems improve implant placement precision and reduce complications in complex spine surgeries. Wearable devices and virtual platforms, designed with AI, offer personalized, adaptive therapies that improve treatment adherence and recovery outcomes. AI also enables preventive interventions by assessing spine condition risks early. Despite progress, challenges remain, including limited healthcare datasets, algorithmic biases, ethical concerns, and integration into existing systems. Interdisciplinary collaboration and explainable AI frameworks are essential to unlock AI's full potential in spine care. Future developments include multimodal AI systems integrating imaging, clinical, and genetic data for holistic treatment approaches. AI and ML promise significant improvements in diagnostic accuracy, treatment personalization, service accessibility, and cost efficiency, paving the way for more streamlined and effective spine care, ultimately enhancing patient outcomes.

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CiteScore
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