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案件記録

Ultrasound-Guided Alignment and Insertion of Percutaneous Cannulating Instruments

発明審査中
1閲覧数
19請求項 · 2 独立
§ Ⅰ

案件概要

発明者

Martin L. Yarmush; Alvin Chen; Max Balter; Joshua Leipheimer

IPC分類

A61B 8/8A61B 8/A61B 8/6A61B 8/12A61B 34/20

CPC分類

A61B8/841A61B8/6A61B8/12A61B8/4218A61B8/466A61B2034/2065A61B2562/219

A device and method for directing a cannula toward a target location under a patient's skin. The device is handheld and the device operations may be automated. The device includes an imaging probe for imaging the target location, a positioning unit for manipulating a cannula towards the target location, and a processor. The processor receives imaging data from the imaging probe, cannula pose data from at least one cannula position sensor, and device pose data from at least one device position sensor. The target location is identified from the imaging data, and a trajectory for manipulating the cannula towards the target location is determined based on the imaging data, the cannula pose data, and the device pose data. The processor may determine that the trajectory becomes misaligned with the target position, and may update to a corrected trajectory based on the imaging data, cannula pose data, and device pose data.

原文(中国語)

A device and method for directing a cannula toward a target location under a patient's skin. The device is handheld and the device operations may be automated. The device includes an imaging probe for imaging the target location, a positioning unit for manipulating a cannula towards the target location, and a processor. The processor receives imaging data from the imaging probe, cannula pose data from at least one cannula position sensor, and device pose data from at least one device position sensor. The target location is identified from the imaging data, and a trajectory for manipulating the cannula towards the target location is determined based on the imaging data, the cannula pose data, and the device pose data. The processor may determine that the trajectory becomes misaligned with the target position, and may update to a corrected trajectory based on the imaging data, cannula pose data, and device pose data.

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