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Pneumatic delivery of untethered microgrippers for minimally invasive biopsy

机译:气动输送无束缚的微夹持器用于微创活检

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摘要

The surgical biopsy is one of the most widely utilized medical procedures for diagnosis of a number of diseases. In order to enable less invasive biopsies, we have previously developed and applied residual stress and physiologically activated sub-millimeter sized untethered grippers. Here, we report a controlled, pneumatic system and methodology for pressurized delivery of untethered microgrippers (μ-grippers) to improve the efficacy of tissue excision. The approach is compatible with current minimally invasive laparoscopic and endoscopic methods. Using a model experimental system, we observed that pneumatic delivery significantly improves the efficiency of the tissue attachment—μ-grippers attach up to 30-fold better on vertically oriented tissues, and up to 3.5-fold better on horizontally oriented tissues as compared to experiments without pressurized delivery. Hence, the use of pneumatics in the delivery of untethered microdevices could significantly enhance their efficiency in minimally invasive biopsy procedures.
机译:手术活检是诊断多种疾病最广泛使用的医学程序之一。为了实现更少的侵入性活检,我们之前已经开发并应用了残余应力和生理激活的亚毫米大小的无系紧夹具。在这里,我们报告了一种受控的气动系统和方法,用于加压释放未系紧的微型夹具(μ夹具),以提高组织切除的效率。该方法与当前的微创腹腔镜和内窥镜方法兼容。使用模型实验系统,我们观察到气动输送显着提高了组织附着的效率-与实验相比,μ形夹具在垂直取向的组织上的附着力提高了30倍,在水平取向的组织上的附着力提高了3.5倍无需加压输送。因此,在释放不受束缚的微型设备时使用气动工具可以显着提高其在微创活检过程中的效率。

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