Visualization of parenchymal deformation during renorrhaphy: a novel deformation index in a simulated kidney model.

IF 2.2 3区 医学 Q2 SURGERY
Tomoyuki Tatenuma, Hikaru Takiyama, Takahiro Yamada, Kota Kobayashi, Ryosuke Jikuya, Go Noguchi, Hiroki Ito, Komeya Mitsuru, Yusuke Ito, Kentaro Muraoka, Hisashi Hasumi, Kazuhide Makiyama
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引用次数: 0

Abstract

The objective of this study is to evaluate mechanical tension on the renal parenchyma during partial nephrectomy using a novel index and compare the effects of different suture techniques on strain in a simulated model. A kidney-shaped urethane resin model with surface markers was created to measure deformation. Three-dimensional scanning assessed deformation before and after suturing. Strain values were calculated using finite-element shape functions on a triangular mesh. Distance from the centerline of the suture was also measured. The standard suturing method was defined as continuous stitches using self-retaining barbed sutures. Based on this standard, variations were introduced in suture material, suturing technique (continuous or interrupted), number of stitches, and the distance from the defect edge. Seven suture patterns were tested. Deformation values were higher when sutures were placed farther from the defect margin and lower when placed closer. Interrupted, tight, sparse, and multifilament suture patterns produced strain values similar to those of the standard technique. Narrow suture pattern tended to have longer distances from the centerline than the wide suture pattern. Interrupted and multifilament suture patterns also showed slightly longer distances than the standard pattern. This is the first study to visualize and quantify strain distribution during renorrhaphy using deformation values. The findings suggest that the distance of suture placement from the limbus may impact parenchymal strain. Despite limitations such as a small sample size and use of simulated models, these results offer insights into optimizing renorrhaphy techniques to minimize tissue stress. Future studies with larger sample sizes are warranted.

肾重建过程中实质变形的可视化:模拟肾脏模型中的一种新的变形指标。
本研究的目的是利用一种新的指标来评估肾部分切除术期间肾实质的机械张力,并在模拟模型中比较不同缝合技术对张力的影响。建立了一个带有表面标记的肾形聚氨酯树脂模型来测量变形。三维扫描评估缝合前后的变形。在三角形网格上使用有限元形状函数计算应变值。测量距缝线中心线的距离。标准缝合方法定义为使用自保留倒刺缝线连续缝合。根据该标准,在缝合材料、缝合技术(连续或间断)、针数和到缺陷边缘的距离等方面引入了变化。测试了7种缝合方式。缝线离缺损边缘越远,变形值越高,离缺损边缘越近,变形值越低。间断、紧密、稀疏和多丝缝合模式产生的应变值与标准技术相似。窄缝线离中心线的距离比宽缝线离中心线的距离长。间断和多丝缝合模式也比标准模式显示稍长的距离。这是首次使用变形值可视化和量化再缝合过程中的应变分布的研究。结果提示,缝线位置离边缘的距离可能影响实质应变。尽管存在样本量小和模拟模型使用等局限性,但这些结果为优化再缝合技术以最大限度地减少组织应力提供了见解。未来的研究需要更大的样本量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.20
自引率
8.70%
发文量
145
期刊介绍: The aim of the Journal of Robotic Surgery is to become the leading worldwide journal for publication of articles related to robotic surgery, encompassing surgical simulation and integrated imaging techniques. The journal provides a centralized, focused resource for physicians wishing to publish their experience or those wishing to avail themselves of the most up-to-date findings.The journal reports on advance in a wide range of surgical specialties including adult and pediatric urology, general surgery, cardiac surgery, gynecology, ENT, orthopedics and neurosurgery.The use of robotics in surgery is broad-based and will undoubtedly expand over the next decade as new technical innovations and techniques increase the applicability of its use. The journal intends to capture this trend as it develops.
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