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Hydrodynamic Vortex Aspiration Catheter

发明专利审中
21权利要求 · 4 独立
§ Ⅰ

卷宗概要

申请人

The Regents of The University of Michigan

发明人

Luis Emilio SAVASTANO; Jeffrey Stephen Plott; Yang Liu; Yihao Zheng; Albert Jau-Min Shih

IPC 分类

A61B 17/22A61B 17/A61B 17/3207A61M 1/

CPC 分类

A61B17/22A61B17/3207A61B17/320725A61B17/320758A61M1/842A61B2017/685A61B2017/991A61B2017/22045A61B2017/22079A61B2017/320766A61B2217/5A61B2217/7

An actuated telescoping system for navigation within a vascular lumen and thrombectomy of a thrombus. The system includes a tubular catheter member having an open distal end defining a catheter lumen, a vacuum source, a rotational drive system, a flexible shaft having a channel coupled to the rotational drive system for rotational movement in response thereto, and an optional guidewire selectively inserted at least partially within the flexible shaft. The flexible shaft is at least partially disposed within the tubular catheter member configured for uncoupled rotational and translational motion therein and to optionally define a corkscrew motion in response to rotational driving force by the drive system that results in formation of hydrodynamic vortices within the catheter lumen. The telescoping system can be capable of reversibly transitioning between navigation and thrombectomy modes by differentially disposing and actuating the components and enable faster, more efficient and simpler removal of thromboembolic material.

原文(中文)

An actuated telescoping system for navigation within a vascular lumen and thrombectomy of a thrombus. The system includes a tubular catheter member having an open distal end defining a catheter lumen, a vacuum source, a rotational drive system, a flexible shaft having a channel coupled to the rotational drive system for rotational movement in response thereto, and an optional guidewire selectively inserted at least partially within the flexible shaft. The flexible shaft is at least partially disposed within the tubular catheter member configured for uncoupled rotational and translational motion therein and to optionally define a corkscrew motion in response to rotational driving force by the drive system that results in formation of hydrodynamic vortices within the catheter lumen. The telescoping system can be capable of reversibly transitioning between navigation and thrombectomy modes by differentially disposing and actuating the components and enable faster, more efficient and simpler removal of thromboembolic material.