Huh Jaeyoung, Klein Paul, Funka-Lea Gareth, Sharma Puneet, Kapoor Ankur, Kim Young-Ho
IEEE Trans Biomed Eng. 2025 Jan 24;PP. doi: 10.1109/TBME.2025.3533485.
Intra-cardiac echocardiography (ICE) is a crucial imaging modality used in electrophysiology (EP) and structural heart disease (SHD) interventions, providing real-time, 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 AI-driven 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 closed-loop 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.
心内超声心动图(ICE)是一种用于电生理(EP)和结构性心脏病(SHD)介入治疗的关键成像方式,可从心脏内部提供实时、高分辨率的图像。尽管它具有诸多优势,但有效操作ICE导管需要相当专业的技能,这可能导致结果不一致,尤其是在经验较少的操作人员中。为应对这一挑战,我们提出了一种由人工智能驱动的视图引导系统,该系统在有人在回路反馈的连续闭环中运行,旨在帮助用户在无需专业知识的情况下进行ICE成像导航。具体而言,我们的方法在空间坐标系中对任意视图与临床定义的ICE视图之间的相对位置和方向向量进行建模。它指导用户如何操作ICE导管,以便随着时间的推移从当前视图过渡到所需视图。通过在闭环配置中运行,该系统不断预测并更新必要的导管操作,确保无缝集成到现有的临床工作流程中。通过使用真实临床数据进行基于模拟的性能评估,验证了所提出系统的有效性,在6532个测试案例中成功率达到了89%。此外,一项有人在回路测试的半模拟实验验证了连续但离散引导的可行性。这些结果凸显了所提出方法在提高ICE成像程序的准确性和效率方面的潜力。