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基于有限元法分析钝力性脾损伤的机制
引用本文:胡文虎,邵 煜,李正东,邹冬华,王慧君,陈忆九.基于有限元法分析钝力性脾损伤的机制[J].南方医科大学学报,2021,41(3):430-438.
作者姓名:胡文虎  邵 煜  李正东  邹冬华  王慧君  陈忆九
作者单位:南方医科大学法医学院,广东 广州 510515;司法鉴定科学研究院,上海市法医学重点实验室,司法部司法鉴定重点实验室,上海市司法鉴定专业技术服务平台,上海 200063;司法鉴定科学研究院,上海市法医学重点实验室,司法部司法鉴定重点实验室,上海市司法鉴定专业技术服务平台,上海 200063;南方医科大学法医学院,广东 广州 510515
基金项目:国家重点研发计划;国家自然科学基金;国家自然科学基金;国家自然科学基金;上海市法医学重点实验室项目;上海市司法鉴定专业技术服务平台资助项目
摘    要:

关 键 词:钝力性脾损伤  损伤机制  有限元法  打击  THUMS模型

Mechanism of blunt spleen injury: a finite element analysis
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Abstract:Objective To explore the biomechanical mechanism of blunt spleen injury based on finite element analysis. Methods A fist finite element model was used to simulate the impact at 4-8 m/s in the spleen area of THUMS4.0 human body model from the front of the left costal area, the left anterior axillary line and the rear scapular line. The strain distribution and damage of the spleen under different conditions were observed. The simulation results were compared with the clinical cases of spleen rupture to analyze the mechanism of spleen injury. Results The damage location and strain distribution of the spleen could vary under different conditions. Due to the special anatomical location of the spleen, a blunt impact at the speed of 4-8 m/s on the front side did not easily cause spleen injury, and the strain was distributed mainly in the front of the spleen and the spleen hilum; a similar blunt impact on the left side was likely to cause spleen diaphragmatic surface injury, the splenic visceral surface could be injured by the compression of the medial tissue and organs and the traction of the splenic pedicle, and the strain was distributed in the spleen diaphragmatic and visceral surfaces; an impact on the back side was likely to cause injuries in the posterior portion and hilum of the spleen, and the strain was mainly concentrated in the injured area. Conclusion Blunt spleen injuries caused by punches on the abdomen are mostly caused by direct impact on the ribs, the compression by the surrounding tissues and organs and the traction by the spleen pedicle.
Keywords:blunt spleen injury  injury mechanism  finite element method  blow  THUMS model  
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