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一种完全自动化的人工智能驱动软件,用于经导管主动脉瓣置换术的规划。

A fully automated artificial intelligence-driven software for planning of transcatheter aortic valve replacement.

机构信息

Heart Center Lucerne, Luzerner Kantonsspital, Lucerne, Switzerland.

Department of Cardiovascular & Thoracic Surgery, Texas Health Harris Methodist Hospital, Fort Worth, TX, USA.

出版信息

Cardiovasc Revasc Med. 2024 Aug;65:25-31. doi: 10.1016/j.carrev.2024.03.008. Epub 2024 Mar 7.

Abstract

BACKGROUND

Transcatheter aortic valve replacement (TAVR) is increasingly performed for the treatment of aortic stenosis. Computed tomography (CT) analysis is essential for pre-procedural planning. Currently available software packages for TAVR planning require substantial human interaction. We describe development and validation of an artificial intelligence (AI) powered software to automatically rend anatomical measurements and other information required for TAVR planning and implantation.

METHODS

Automated measurements from 100 CTs were compared to measurements from three expert clinicians and TAVR operators using commercially available software packages. Correlation coefficients and mean differences were calculated to assess precision and accuracy.

RESULTS

AI-generated annular measurements had excellent agreements with manual measurements by expert operators yielding correlation coefficients of 0.97 for both perimeter and area. There was no relevant bias with a mean difference of -0.07 mm and - 1.4 mm for perimeter and area, respectively. For the ascending aorta measured 5 cm above the annular plane, correlation coefficient was 0.95 and mean difference was 1.4 mm. Instruction for use-based sizing yielded agreement with the effective implant size in 87-88 % of patients for self-expanding valves (perimeter-based sizing) and in 88 % for balloon-expandable valves (area-based sizing).

CONCLUSIONS

A fully automated software enables accurate and precise anatomical segmentation and measurements required for TAVR planning without human interaction and with high reliability.

摘要

背景

经导管主动脉瓣置换术(TAVR)越来越多地用于治疗主动脉瓣狭窄。计算机断层扫描(CT)分析对于术前规划至关重要。目前用于 TAVR 规划的软件包需要大量的人工交互。我们描述了一种人工智能(AI)驱动的软件的开发和验证,该软件可自动呈现 TAVR 规划和植入所需的解剖测量值和其他信息。

方法

使用商业上可用的软件包,将 100 例 CT 的自动测量值与三位专家临床医生和 TAVR 操作人员的测量值进行比较。计算相关系数和平均差异,以评估精度和准确性。

结果

AI 生成的瓣环测量值与专家操作人员的手动测量值具有极好的一致性,相关系数分别为周长和面积的 0.97。没有明显的偏差,周长和面积的平均差异分别为-0.07 毫米和-1.4 毫米。对于在瓣环上方 5 厘米处测量的升主动脉,相关系数为 0.95,平均差异为 1.4 毫米。基于使用说明的 sizing 与自膨式瓣膜(基于周长的 sizing)中 87-88%的患者的有效植入尺寸以及球囊扩张瓣膜(基于面积的 sizing)中 88%的患者的有效植入尺寸相吻合。

结论

完全自动化的软件可实现无需人工交互且具有高可靠性的 TAVR 规划所需的准确和精确的解剖分割和测量。

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