首页> 外文会议>2010 IEEE/ASME International conference on mechatronic and embedded systems and applications. >Intra-luminal Injection of Ferro-fluid for Magnetic Bowel Retraction in Minimal Access Surgery
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Intra-luminal Injection of Ferro-fluid for Magnetic Bowel Retraction in Minimal Access Surgery

机译:腔内注射铁磁流体以最小限度的手术减少肠梗阻

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Safe and effective manipulation of soft tissue during laparoscopic and other minimal access surgical (MAS) procedures can be enabled by use of electromagnetic force. We investigated magnet interaction force using finite element modeling (FEM) and tensiometer measurement, and found that our FEM results were in good agreement with measurement data. Then, we describe a novel method of ferro-magnetisation of a bowel segment for magnetic retraction. Simulated surgical procedures were carried out using an ex-vivo pig bowel model. Ferromagnetic microparticles were dispersed in a viscous carrier liquid, and injected intra-luminally to the inner (mucosal) aspect of the bowel wall. The injected magnetic microparticles were then retracted towards a magnetic probe which was located external to the bowel wall, and magnetic interaction force between the injected magnetic aggregation and the probe was found sufficient to manipulate the bowel segment. In this preliminary experiment, the probe was consisted of small Neodymium magnet discs, and magnetic attraction force can be changed by adding or reducing the number of magnet discs used. Magnetic fluids with different concentration were prepared and injected without difficulty. To solidify the magnetic aggregation, a medical grade cyanoacrylate liquid was injected sequentially and mixed insitu with the injected microparticles aggregation underneath the magnet probe. The ferromagnetic coagulum appears to be a promising method for safe and effective magnetic bowel retraction in MAS.
机译:通过使用电磁力,可以在腹腔镜手术和其他最小通路手术(MAS)程序中安全有效地操纵软组织。我们使用有限元建模(FEM)和张力计测量研​​究了磁体相互作用力,发现我们的FEM结果与测量数据非常吻合。然后,我们描述了一种用于肠退磁的肠段铁磁化的新方法。使用离体猪肠模型进行模拟外科手术。将铁磁微粒分散在粘性载液中,然后腔内注射到肠壁的内(粘膜)方面。然后将注射的磁性微粒向位于肠壁外部的磁性探针缩回,并且发现注射的磁性聚集体和探针之间的磁性相互作用力足以操纵肠段。在该初步实验中,探头由小的钕磁碟组成,可以通过增加或减少磁碟的数量来改变磁吸引力。制备了不同浓度的磁性流体并轻松注入。为了固化磁性聚集体,顺序注入医用级氰基丙烯酸酯液体,并在磁性探针下方将其与注入的微粒聚集体原位混合。铁磁凝结物似乎是在MAS中安全有效地回肠的一种有前途的方法。

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