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首页> 外文期刊>Minimally invasive therapy and allied technologies: MITAT : official journal of the Society for Minimally Invasive Therapy >Newly developed haptic forceps enables sensitive, real-time measurements of organ elasticity
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Newly developed haptic forceps enables sensitive, real-time measurements of organ elasticity

机译:最新开发的触觉钳使敏感,实时的器官弹性测量成为可能

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摘要

Currently available master-slave manipulators cannot recognize the elasticity of organs or tissues. The aim of this study was to examine whether a newly developed haptic forceps using a linear motor could measure the elasticity of living organs using an animal model. We measured the elasticity values and the disruption limit values of rat organs using the new haptic forceps. The elasticity of the materials was calculated using the formula "power 4- position", with N/m as the unit. We successfully and reproducibly measured the changes in the elasticity values of various materials in real time. We were also able to perceive tactile changes transmitted through the forceps. The changes in gastrointestinal contraction were synchronized with the visually observed changes, and these changes were monitored and measured as elasticity values in real time using the forceps. The damage limits were also successfully measured. In conclusion, the new haptic forceps enabled highly sensitive, real-time measurements of elasticity in living rat organs. The use of this forceps enables the disruption limit values of organs to be measured, and the device could be useful for setting safety limits when grasping organs during endoscopic surgery.
机译:当前可用的主从操纵器无法识别器官或组织的弹性。这项研究的目的是检查使用线性电动机的新开发的触觉钳是否可以使用动物模型测量活体的弹性。我们使用新的触觉钳测量了大鼠器官的弹性值和破坏极限值。使用N / m作为单位,使用公式“功率4-位置”计算材料的弹性。我们成功且可重复地实时测量了各种材料的弹性值变化。我们还能够感知通过镊子传递的触觉变化。胃肠道收缩的变化与肉眼观察到的变化同步,并使用镊子实时监测和测量这些变化作为弹性值。损坏极限也已成功测量。总而言之,新的触觉钳使得能够对活的大鼠器官进行高度灵敏的实时弹性测量。使用这种镊子可以测量器官的破坏极限值,并且该设备对于在内窥镜手术中抓取器官时设置安全极限可能有用。

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