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System for mapping and intervention of an organ within the human or animal body

一种光纤应变、光纤传感器的技术,应用在探测和治疗器官的装置领域,能够解决没有描述弯曲角度计算等问题,达到高等级抗干扰、减少插入截面、改进空间记录的效果

Active Publication Date: 2008-02-27
ST JUDE MEDICAL INT HLDG SARL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Although the publication discloses that the strain sensor can be placed in a deformable covering, like Bosselman's, it does not describe the calculation of the bending angle because of the material characteristics of the deformable covering.

Method used

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  • System for mapping and intervention of an organ within the human or animal body
  • System for mapping and intervention of an organ within the human or animal body
  • System for mapping and intervention of an organ within the human or animal body

Examples

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Embodiment Construction

[0050] The present invention relates to medical devices and methods for use in diagnostic and therapeutic systems where it is desired to measure the contact force between the distal tip of the device and the wall of organ or vascular tissue. The load sensing capability of the present invention can be used to intermittently measure contact force at discrete points or to continuously monitor contact force to aid in handling and operation of the device.

[0051] A medical device incorporating the present invention may typically be configured such that a catheter or guidewire is manually steered by a physician using visual or audio output cues from a load sensing system to determine, for example, the optimal position for measuring electrophysiological values ​​or administering therapy. Alternatively, the medical device can be automatically controlled by the load sensing system of the present invention providing a feedback and control system.

[0052] Advantageously, medical device...

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PUM

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Abstract

Apparatus is provided for diagnosing or treating an organ or vessel, wherein a device having at optical fiber contact force sensors disposed in a distal extremity thereof and a deflection mechanism configured to deflect the elongate body at a location proximal of the distal extremity. The optical fiber contact force sensors are configured to be coupled to processing logic programmed which computes a force vector responsive to detected changes in the optical characteristics of the optical fiber contact force sensors arising from deflection of the distal extremity resulting from contact with the tissue of the wall of the organ or vessel.

Description

technical field [0001] The present invention relates to devices for detecting and treating organs that are capable of calculating multi-dimensional force vectors resulting from contact between the distal tip of the device and tissue of the organ wall. Background technique [0002] Over the years, the exploration and treatment of various organs or vessels has become feasible through the use of catheter-based diagnostic and therapeutic systems. Such catheters are introduced from blood vessels leading to the lumen of the organ being explored or treated or alternatively can be introduced directly through an incision made in the organ wall. In this way, the patient avoids the trauma and prolonged recovery time typical of open surgical procedures. [0003] In order to provide effective diagnosis or treatment, it is often necessary to first map the diagnosed area very accurately. Such mapping may be performed, for example, when selective ablation of current pathways in the heart ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B5/00G01L1/24
CPCA61B2562/0266A61B5/015A61B5/06A61B90/06A61B2090/065A61B90/96A61B90/98A61B18/1492G01L1/246A61B5/065
Inventor 乔瓦尼·利奥尼古拉斯·埃比丹尼尔·伊诺蒂
Owner ST JUDE MEDICAL INT HLDG SARL
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