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Design Of A Mechanical Clutch-based Needle-insertion Device

机译:基于机械离合器的针刺装置的设计

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摘要

Insertion of trocars, needles, and catheters into unintended tissues or tissue compartments results in hundreds of thousands of complications annually. Current methods for blood vessel cannulation or epidural, chest tube, and initial trocar placement often involve the blind pass of a needle through several layers of tissue and generally rely on distinguishable anatomic landmarks and a high degree of clinical skill. To address this simply and without the use of electronics, a purely mechanical clutch system was developed for use in medical devices that access tissue and tissue compartments. This clutch utilizes the surface contact of a buckled filament inside an S-shaped tube to transmit force from the filament (catheter/guide wire) to the tube (needle). Upon encountering sufficient resistance at the tip, such as dense tissue, the catheter buckles and locks within the tube, causing the filament and needle to advance as one. When the needle reaches the target tissue or fluid-filled cavity, the filament unlocks and slides freely into the target region while the needle remains stationary. A similar locking phenomenon has long been observed in drill strings inside drill shafts used by the oil-drilling industry, and oil industry models were adapted to describe the motion of this clutch system. A predictive analytical model was generated and validated with empirical data and used to develop prototypes of a complete device then tested in vitro on muscle tissue and in vivo on a porcine laparoscopic model with promising results.
机译:每年将套管针,针头和导管插入意外的组织或组织隔室会导致成千上万的并发症。当前用于血管插管或硬膜外,胸管和最初的套管针放置的方法通常涉及针头穿过多层组织的盲目通过,并且通常依赖于可区分的解剖学标志和高度的临床技能。为了简单地解决此问题,并且不使用电子设备,开发了一种纯机械离合器系统,用于进入组织和组织隔室的医疗设备。该离合器利用S型管内弯曲的细丝的表面接触将力从细丝(导管/导线)传递到管(针头)。在尖端遇到足够的阻力(例如致密的组织)后,导管会弯曲并锁定在管子内,从而使细丝和针头向前推进。当针头到达目标组织或充满液体的腔时,细丝会解锁并自由滑入目标区域,而针头保持静止。长期以来,在石油开采行业所使用的钻杆内的钻柱中都观察到了类似的锁定现象,并且石油行业模型也被用来描述该离合器系统的运动。生成了一个预测分析模型,并用经验数据进行了验证,并用于开发完整设备的原型,然后在肌肉组织上进行体外测试,并在猪腹腔镜模型上进行体内测试,结果令人满意。

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  • 作者单位

    Department of Mechanical Engineering,Center for Biomedical Engineering, Brigham and Women's Hospital, Cambridge, MA 02139;

    Department of Mechanical Engineering,Center for Biomedical Engineering, Brigham and Women's Hospital, Cambridge, MA 02139;

    Harvard Medical School, Boston, MA 02115 Department of Pediatric Surgery Massachusetts General Hospital, Boston, MA 02114;

    Harvard Medical School, Boston, MA 02115 Centerfor Regenerative Medicine,Massachusetts General Hospital, Boston, MA 02114;

    Harvard Medical School, Boston, MA 02115 Department of Anesthesia, Brigham and Women's Hospital, Boston, MA 02115;

    Harvard Medical School, Boston, MA 02115 Harvard-MIT Division of Health Science and Technology,Center for Biomedical Engineering, Brigham and Women's Hospital, Cambridge, MA 02139 Massachusetts Institute of Technology, Center for Biomedical Engineering, Brigham and Women's Hospital, Cambridge, MA 02139;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    catheter; helical-buckling; trocar;

    机译:导管;螺旋屈曲;套管针;

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