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Modeling of Thorax for Volumetric Computation Using Rotachora Shapes

机译:使用Rotachora形状模拟胸部的体积计算

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This paper presents the scope of mathematical modeling by using uncommon geometric shapes for the computation of thoracic volume. The modeling has been done for Rotachora shapes for estimation and computation of fluid volume present in the thoracic area. Proposed extended model based approach demonstrates the scopes of its sensitivity in terms of volumetric variations with the act of breathe. The act of breathe involved inspiration and expiration states. New models have been constructed to compute the thoracic volumes and their variations are shown with respect to the thoracic impedances. Four dimensional Rotachora shapes are taken into consideration. Human thorax is considered as cubinder in the first stage and as duo cylinder in the second phase under Rotachora shape category. It is observed that the volumes are rhythmically varying with the act of breath for the considered thoracic area along with the varying thoracic impedances. The obtained results validates that the chosen models are closely following the act of breath significantly and hence the obtained result could be utilized for clinical purposes.
机译:本文采用了使用罕见的几何形状来计算胸体积的数学建模范围。已经为Rotachora形状进行了建模,用于估计和计算胸部区域中存在的流体体积。所提出的基于模型的方法证明了其呼吸行为的体积变化方面的灵敏度范围。呼吸行为涉及灵感和到期状态。已经构建了新模型以计算胸部体积,并且它们的变化相对于胸部阻抗显示。考虑四维Rotachora形状。人胸部被认为是第一个阶段中的立方体,并且在Rotachora形状类别下的第二阶段中的Duo圆柱体。人们观察到,由于所考虑的胸部区域的呼吸行为以及不同的胸部阻抗,该体积是有节奏地变化。所获得的结果验证所选择的模型密切关注呼吸行为显着,因此可以使用所获得的结果进行临床目的。

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