用超声断层成像+混合现实,让针灸新手实时看懂人体结构。
MRUCT: Mixed Reality Assistance for Acupuncture Guided by Ultrasonic Computed Tomography
- 融合超声断层与混合现实,实时显示骨骼肌肉等解剖结构
- 新学员使用系统后定位准确率显著提升,学习周期缩短
- 适合中医学生和针灸初学者,助力临床技能快速掌握
中医针灸依赖医师的经验和触觉感知进行针具定位,现有流程缺乏影像支持与可视化工具,导致新人需经多年试错才能熟练操作并获得患者信任。为解决此问题,我们提出MRUCT系统,将超声计算机断层成像(UCT)与混合现实(MR)技术结合,实现实时可视化引导。该系统通过非刚性配准重建解剖结构,提供离线图像配准与针刺过程中的实时导航,支持基于骨骼、肌肉及自动生成参考点的精准定位。本文介绍了用于重构解剖结构的非刚性配准方法以及MR系统的关键设计考量,并评估了两种3D用户界面设计,对比了系统与传统教学法在新晋从业者和医学生中的表现。结果表明,混合现实技术可显著提升针灸操作的准确性,具备临床应用潜力。
原文摘要 · Abstract (English)
Chinese acupuncture practitioners primarily depend on muscle memory and tactile feedback to insert needles and accurately target acupuncture points, as the current workflow lacks imaging modalities and visual aids. Consequently, new practitioners often learn through trial and error, requiring years of experience to become proficient and earn the trust of patients. Medical students face similar challenges in mastering this skill. To address these challenges, we developed an innovative system, MRUCT, that integrates ultrasonic computed tomography (UCT) with mixed reality (MR) technology to visualize acupuncture points in real-time. This system offers offline image registration and real-time guidance during needle insertion, enabling them to accurately position needles based on anatomical structures such as bones, muscles, and auto-generated reference points, with the potential for clinical implementation. In this paper, we outline the non-rigid registration methods used to reconstruct anatomical structures from UCT data, as well as the key design considerations of the MR system. We evaluated two different 3D user interface (3DUI) designs and compared the performance of our system to traditional workflows for both new practitioners and medical students. The results highlight the potential of MR to enhance therapeutic medical practices and demonstrate the effectiveness of the system we developed.
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