肺癌引起的胸膜凹陷征的力学原理
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上海市卫生局和市科技发展资金资助


Mechanical principle of pleural indentation caused by lung cancer
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    摘要:

    目的研究肺癌引起的胸膜凹陷征的力学原理。方法从临床CT图片出发,使用数学软件Matlab和有限元分析软件ANSYS建立肺组织的生物力学模型,并分析在胸腔压力作用下凹陷的变形、应力和应变值的变化规律。结果(1)凹陷部分受癌变组织影响,变形较小,最小变形值为0.424mm;远离癌变组织的肺组织,变形较大,最大变形值为60.248mm;(2)吸气时,癌变组织的杨氏模量越大,凹陷程度越大;呼气时则相反;(3)结合临床CT图片,解释了吸气时凹陷比呼气时凹陷深的原因,因为吸气时,肺组织整体向外膨胀,凹陷周围边界的变形方向和凹陷方向相反,导致凹陷加深;呼气时,肺组织整体向内收缩,凹陷周围边界的变形方向和凹陷方向相同,导致凹陷变浅。结论从力学的角度解释了胸膜凹陷的形成机制,并且和临床上的相关现象相符。

    Abstract:

    Objective To study the mechanical principle of pleural indentation (PI) caused by lung cancer. Methods By using the software maths-"Matlab" and Finite Element Analysis-"Ansys", a biomechanics model of the lung was set to analyze the variation of PI in displacement, stress and strain under the pressure of thorax on the basis of clinical CT images. Results (1) The indentation part influenced by the cancer showed little deformation withthe minimum of 0.424 mm, while the indentation part far from the cancer has relatively much more deformation with the maximum of 60.248 mm. (2) During the inhalation, the bigger the Young’s module is, the more the degree of the indentation is; during the exhalation, the bigger the Young’s module is, the less the degree of the indentation is. (3) With the clinical CT picture we explain why the degree of the indentation during the inhalation is more than that during the exhalation. Because during the inhalation, the lung expands and the direction of deformation is opposite to that of indentation, which results in the growth of the depth of the indentation, while during the exhalation, the lung shrinks and the direction of deformation is the same as that of indentation, which brings on the decrease of depth of the indentation. Conclusion The principle for the formation of PI was explained based on the mechanics, which also accords with the clinical circumstances.

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殷文义,张志勇,单飞,丁光宏.肺癌引起的胸膜凹陷征的力学原理[J].医用生物力学,2007,22(2):202-208

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