AI辅助心脏超声导航,让新手也能精准操作
AI-driven View Guidance System in Intra-cardiac Echocardiography Imaging
- 基于空间坐标建模视图间相对位置,实时指导导管移动
- 仿真测试成功率89%,6532次测试中表现稳定
- 适合临床医生快速上手,提升介入手术效率
经心腔超声心动图(ICE)是电生理和结构性心脏病介入治疗中的关键影像技术,可提供高分辨率的实时内部心脏视图。然而,有效操控ICE导管需要丰富经验,新手操作易导致结果不一致。为此,我们提出一种AI驱动的连续闭环视图引导系统,通过人机协同反馈,帮助用户在无需专业训练的情况下完成导航。该方法在空间坐标系中建模任意视图与临床标准视图之间的相对位置与方向向量,动态指导导管操作以实现视图切换。系统采用闭环设计,持续预测并更新所需导管动作,无缝嵌入现有临床流程。基于真实临床数据的仿真评估显示,系统在6,532次测试中达到89%的成功率。半仿真的人机测试进一步验证了连续但离散引导方案的可行性。结果表明,该方法有望显著提升ICE成像的准确性与效率。
原文摘要 · Abstract (English)
Intra-cardiac echocardiography (ICE) is a crucial imaging modality used in electrophysiology (EP) and structural heart disease (SHD) interventions, providing realtime, high-resolution views from within the heart. Despite its advantages, effective manipulation of the ICE catheter requires significant expertise, which can lead to inconsistent outcomes, especially among less experienced operators. To address this challenge, we propose an AIdriven view guidance system that operates in a continuous closed-loop with human-in-the-loop feedback, designed to assist users in navigating ICE imaging without requiring specialized knowledge. Specifically, our method models the relative position and orientation vectors between arbitrary views and clinically defined ICE views in a spatial coordinate system. It guides users on how to manipulate the ICE catheter to transition from the current view to the desired view over time. By operating in a closedloop configuration, the system continuously predicts and updates the necessary catheter manipulations, ensuring seamless integration into existing clinical workflows. The effectiveness of the proposed system is demonstrated through a simulation-based performance evaluation using real clinical data, achieving an 89% success rate with 6,532 test cases. Additionally, a semi-simulation experiment with human-in-the-loop testing validated the feasibility of continuous yet discrete guidance. These results underscore the potential of the proposed method to enhance the accuracy and efficiency of ICE imaging procedures.
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