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Model-Based Estimation of Ventricular Deformation in the Cat Brain

机译:猫脑室变形的基于模型的估计

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摘要

The estimation of ventricular deformation has important clinical implications related to neuro-structural disorders such as hydrocephalus. In this paper, a poroelastic model was used to represent deformation effects resulting from the ventricular system and was studied in 5 feline experiments. Chronic or acute hydrocephalus was induced by injection of kaolin into the cisterna magna or saline into the ventricles; a catheter was then inserted in the lateral ventricle to drain the fluid out of the brain. The measured displacement data which was extracted from pre-drainage and post-drainage MR images were incorporated into the model through the Adjoint Equations Method. The results indicate that the computational model of the brain and ventricular system captured 33% of the ventricle deformation on average and the model-predicted intraventricular pressure was accurate to 90% of the recorded value during the chronic hydrocephalus experiments.
机译:心室变形的估计与神经结构性疾病如脑积水有关,具有重要的临床意义。在本文中,使用多孔弹性模型来表示心室系统产生的变形效应,并在5个猫科动物实验中进行了研究。慢性或急性脑积水是通过在水罐中注入高岭土或在脑室中注入生理盐水而引起的。然后将导管插入侧脑室以将脑液排出。从排水前和排水后的MR图像中提取的测得的位移数据通过Adjoint Equations方法引入模型中。结果表明,在慢性脑积水实验中,大脑和心室系统的计算模型平均捕获了33%的心室变形,并且模型预测的心室内压精确到记录值的90%。

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