首页> 外文会议>IEEE International Ultrasonics Symposium >Forward-viewing, robotically-steerable guidewire system for peripheral chronic total occlusions: Transducer and imaging system development
【24h】

Forward-viewing, robotically-steerable guidewire system for peripheral chronic total occlusions: Transducer and imaging system development

机译:用于周边慢性完全闭塞的前视,机器人可操纵导丝系统:传感器和成像系统开发

获取原文

摘要

Although minimally-invasive approaches such as stenting, atherectomy, and angioplasty represent more desirable alternatives to many open surgical procedures for restoring blood flow to ischemic tissues, tortuous vasculature and chronic total occlusions may lead to iatrogenic injury and failure of endovascular procedures, largely due to the problem of navigating complex environments using only side-viewing images from fluoroscopy. A forward-viewing steerable guidewire is proposed that could allow visualization of possible paths and controlled steering through complex lesions. To this end, a custom 0.035” guidewire-compatible transducer was designed and fabricated with a center frequency of 17 MHz and 37% fractional bandwidth. By acquiring pulse-echo imaging data while the guidewire tip is moved mechanically using the steerable guidewire, images can be formed using a synthetic aperture approach with a single element transducer mounted on the end of the robotically-steerable guidewire. In imaging experiments with 20 µm wire targets at a depth of 6 mm, lateral resolution was 0.25 mm. Additionally, proof of concept visualization of vessel morphology and a patent lumen was demonstrated in an ex vivo porcine artery. The integrated system could allow navigation of chronic occlusions in peripheral arteries that are currently impassable.
机译:尽管微创方法(例如支架置入术,旋切术和血管成形术)代表了许多开放手术方法的替代方案,以恢复缺血组织的血流,但曲折的脉管系统和慢性完全闭塞可能会导致医源性损伤和血管内手术失败,这主要是由于仅使用透视透视图像在复杂环境中导航的问题。提出了一种前视可转向导丝,该导丝可以可视化可能的路径并控制复杂病变的转向。为此,设计并制造了定制的0.035英寸导丝兼容换能器,其中心频率为17 MHz,分数带宽为37%。通过在使用可操纵导丝机械移动导丝末端的同时获取脉冲回波成像数据,可以使用合成孔径方法在安装在可自动操纵导丝末端的单个元件换能器上形成图像。在20 mm的金属靶材,深度为6 mm的成像实验中,横向分辨率为0.25 mm。另外,在离体的猪动脉中证实了血管形态和未闭管腔的概念可视化证明。该集成系统可以允许导航目前无法通行的外周动脉中的慢性阻塞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号