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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Brain tissue deforms similarly to filled elastomers and follows consolidation theory
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Brain tissue deforms similarly to filled elastomers and follows consolidation theory

机译:脑组织的变形类似于填充的弹性体,并遵循固结理论

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Slow, large deformations of human brain tissue-accompanying cranial vault deformation induced by positional plagiocephaly, occurring during hydrocephalus, and in the convolutional development-has surprisingly received scarce mechanical investigation. Since the effects of these deformations may be important, we performed a systematic series of in vitro experiments on human brain tissue, revealing the following features. (i) Under uniaxial (quasi-static), cyclic loading, brain tissue exhibits a peculiar nonlinear mechanical behaviour, exhibiting hysteresis, Mullins effect and residual strain, qualitatively similar to that observed in filled elastomers. As a consequence, the loading and unloading uniaxial curves have been found to follow the Ogden nonlinear elastic theory of rubber (and its variants to include Mullins effect and permanent strain). (ii) Loaded up to failure, the "shape" of the stress/strain curve qualitatively changes, evidencing softening related to local failure. (iii) Uniaxial (quasi-static) strain experiments under controlled drainage conditions provide the first direct evidence that the tissue obeys consolidation theory involving fluid migration, with properties similar to fine soils, but having much smaller volumetric compressibility. (iv) Our experimental findings also support the existence of a viscous component of the solid phase deformation.
机译:令人惊讶的是,稀有的机械研究令人惊讶地发现,缓慢而大的人脑组织伴随颅脑穹deformation变形是由位置性脑畸形引起的,发生在脑积水期间以及在回旋发展中。由于这些变形的影响可能很重要,因此我们在人脑组织上进行了一系列系统的体外实验,揭示了以下特征。 (i)在单轴(准静态)循环载荷下,脑组织表现出特殊的非线性机械行为,表现出磁滞,穆林斯效应和残余应变,在质量上与填充弹性体相似。结果,已经发现加载和卸载单轴曲线遵循橡胶的Ogden非线性弹性理论(及其包括Mullins效应和永久应变的变体)。 (ii)加载至破坏,应力/应变曲线的“形状”发生质变,表明与局部破坏有关的软化。 (iii)在受控排水条件下进行的单轴(准静态)应变实验提供了第一个直接证据,表明该组织遵循涉及流体迁移的固结理论,其性质类似于细土,但体积压缩性小得多。 (iv)我们的实验结果也支持固相变形的粘性成分的存在。

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