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在一个详细的三维人体胸部模型中进行经胸和经静脉除颤的计算研究。

Computational studies of transthoracic and transvenous defibrillation in a detailed 3-D human thorax model.

作者信息

Jorgenson D B, Haynor D R, Bardy G H, Kim Y

机构信息

Heartstream, Inc., Seattle, WA 98121.

出版信息

IEEE Trans Biomed Eng. 1995 Feb;42(2):172-84. doi: 10.1109/10.341830.

Abstract

A method for constructing and solving detailed patient-specific 3-D finite element models of the human thorax is presented for use in defibrillation studies. The method utilizes the patient's own X-ray CT scan and a simplified meshing scheme to quickly and efficiently generate a model typically composed of approximately 400,000 elements. A parameter sensitivity study on one human thorax model to examine the effects of variation in assigned tissue resistivity values, level of anatomical detail included in the model, and number of CT slices used to produce the model is presented. Of the seven tissue types examined, the average left ventricular (LV) myocardial voltage gradient was most sensitive to the values of myocardial and blood resistivity. Incorrectly simplifying the model, for example modeling the heart as a homogeneous structure by ignoring the blood in the chambers, caused the average LV myocardial voltage gradient to increase by 12%. The sensitivity of the model to variations in electrode size and position was also examined. Small changes (< 2.0 cm) in electrode position caused average LV myocardial voltage gradient values to increase by up to 12%. We conclude that patient-specific 3-D finite element modeling of human thoracic electric fields is feasible and may reduce the empiric approach to insertion of implantable defibrillators and improve transthoracic defibrillation techniques.

摘要

本文提出了一种构建和求解人体胸部详细的患者特异性三维有限元模型的方法,用于除颤研究。该方法利用患者自身的X射线CT扫描和简化的网格划分方案,快速有效地生成一个通常由约40万个单元组成的模型。本文还对一个人体胸部模型进行了参数敏感性研究,以检查指定组织电阻率值的变化、模型中包含的解剖细节水平以及用于生成模型的CT切片数量的影响。在所检查的七种组织类型中,平均左心室(LV)心肌电压梯度对心肌和血液电阻率值最为敏感。对模型进行错误简化,例如通过忽略心腔内的血液将心脏建模为均匀结构,会导致平均LV心肌电压梯度增加12%。还研究了模型对电极尺寸和位置变化的敏感性。电极位置的微小变化(<2.0厘米)会导致平均LV心肌电压梯度值增加高达12%。我们得出结论,人体胸部电场的患者特异性三维有限元建模是可行的,并且可能减少植入式除颤器植入的经验方法,并改善经胸除颤技术。

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