首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Experimental mechanical characterization of abdominal organs: liver, kidney & spleen.
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Experimental mechanical characterization of abdominal organs: liver, kidney & spleen.

机译:腹部器官的实验力学表征:肝,肾脾。

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摘要

Abdominal organs are the most vulnerable body parts during vehicle trauma, leading to high mortality rate due to acute injuries of liver, kidney, spleen and other abdominal organs. Accurate mechanical properties and FE models of these organs are required for simulating the traumas, so that better designing of the accident environment can be done and the organs can be protected from severe damage. Also from biomedical aspect, accurate mechanical properties of organs are required for better designing of surgical tools and virtual surgery environments. In this study porcine liver, kidney and spleen tissues are studied in vitro and hyper-elastic material laws are provided for each. 12 porcine kidneys are used to perform 40 elongation tests on renal capsule and 60 compression tests on renal cortex, 5 porcine livers are used to perform 45 static compression tests on liver parenchyma and 5 porcine spleens are used to carry out 20 compression tests. All the tests are carried out at a static speed of 0.05 mm/s. A comparative analysis of all the results is done with the literature and though the results are of same order of magnitude, a slight dissonance is observed for the renal capsule. It is also observed that the spleen is the least stiff organ in the abdomen whereas the kidney is the stiffest. The results of this study would be essential to develop the FE models of liver, kidney and spleen which can be further used for impact biomechanical and biomedical applications.
机译:腹部器官是车辆创伤期间最脆弱的身体部位,导致肝脏,肾脏,脾脏和其他腹部器官的急性伤害导致的高死亡率。模拟创伤需要准确的机械性能和这些器官的FE模型,从而可以完成更好地设计事故环境,并且可以保护器官免受严重损坏。同样来自生物医学方面,需要更好地设计外科手术和虚拟手术环境所需的准确机械性能。在本研究中,在体外研究猪肝,肾脏和脾组织,为每个提供超弹性材料规律。 12猪肾脏用于对肾皮层的肾囊和60次压缩试验进行40次伸长试验,使用5个猪肝脏对肝脏牙科和5种静态压缩试验进行肝实质和5个猪脾脏进行20个血液脾脏进行20个压缩试验。所有测试都以0.05mm / s的静态速度进行。对所有结果的比较分析是用文献完成的,尽管结果具有相同的数量级,但肾囊呈现出轻微的不和谐。还观察到脾脏是腹部中最小的器官,而肾脏是最硬的。该研究的结果对于开发肝脏,肾和脾脏的FE模型至关重要,这可以进一步用于影响生物力学和生物医学应用。

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