...
首页> 外文期刊>Current Directions in Biomedical Engineering >Audio waves and its loss of energy in puncture needles : Current Directions in Biomedical Engineering
【24h】

Audio waves and its loss of energy in puncture needles : Current Directions in Biomedical Engineering

机译:穿刺针中的声波及其能量损失:生物医学工程的当前方向

获取原文
           

摘要

The location of a puncture needle’s tip and the resistance of tissue against puncture are crucial information for clinicians during a percutaneous procedure. The tip location and needle alignment can be observed by image guidance. Tactile information caused by tissue resistance to rupture, allow clinicians the perception of structural changes during puncture. Nevertheless, this sense is individual and subjective. To improve percutaneous procedures, the implementation of transducers to enhance or complement the senses offer objective feedback to the user. Known approaches are e.g. based on integrated force sensors. However, this is connected to higher device costs, sterilization and certification issues. A recent publication shows the implementation of an audio transducer clipped at the proximal end of the needle. This sensor is capable of acquiring emitted sounds of the distal tiptissue interaction that are transmitted over the needle structure. The interpretation of the measured audio signals is highly depended on the transmission over the needle, the tissue and, the penetration depth. To evaluate the influence of these parameters, this work implements a simplified experimental setup in a controlled environment with a minimum of noise and without micro tremors induced by clinician’s hands. A steel rod simulating a needle is inserted into pork meat of different thickness. A controlled impact covering the needle’s tip mimics tissue contact. The resulting signals are recorded and analyzed for better understanding of the system.
机译:穿刺针尖的位置和组织对穿刺的抵抗力是临床医生在经皮手术过程中的重要信息。尖端位置和针头对准可通过图像引导观察。由组织对破裂的抵抗力引起的触觉信息,可使临床医生在穿刺期间感知结构变化。然而,这种感觉是个人的和主观的。为了改善经皮程序,换能器的实施以增强或补充感官向用户提供客观反馈。已知的方法是例如基于集成的力传感器。但是,这与更高的设备成本,灭菌和认证问题有关。最近的出版物显示了夹在针头近端的音频换能器的实现。该传感器能够获取在针头结构上传输的远端尖端组织相互作用的发射声。所测量的音频信号的解释高度取决于在针上的传输,组织以及穿透深度。为了评估这些参数的影响,这项工作在受控的环境中实施了简化的实验装置,该环境具有最小的噪音并且没有临床医生的手引起的微小震颤。将模拟针的钢棒插入不同厚度的猪肉中。覆盖针尖的受控撞击可模拟组织接触。记录并分析结果信号,以更好地了解系统。

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