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Identification of Reduced-Order Thermal Therapy Models Using Thermal MR Images: Theory and Validation

机译:使用热MR图像识别降阶热疗模型:理论与验证

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摘要

In this paper, we develop and validate a method to identify computationally efficient site- and patient-specific models of ultrasound thermal therapies from MR thermal images. The models of the specific absorption rate of the transduced energy and the temperature response of the therapy target are identified in the reduced basis of proper orthogonal decomposition of thermal images, acquired in response to a mild thermal test excitation. The method permits dynamic reidentification of the treatment models during the therapy by recursively utilizing newly acquired images. Such adaptation is particularly important during high-temperature therapies, which are known to substantially and rapidly change tissue properties and blood perfusion. The developed theory was validated for the case of focused ultrasound heating of a tissue phantom. The experimental and computational results indicate that the developed approach produces accurate low-dimensional treatment models despite temporal and spatial noises in MR images and slow image acquisition rate.
机译:在本文中,我们开发并验证了一种从MR热图像中识别计算有效的超声热疗法特定部位和患者特定模型的方法。在适当的热图像正交分解的简化基础上,确定了转换能量的比吸收率模型和治疗目标的温度响应模型,这些模型是响应于温和的热测试激发而获得的。该方法允许通过递归利用新获得的图像在治疗期间动态重新识别治疗模型。这种适应在高温疗法中尤其重要,高温疗法已知会显着且迅速地改变组织特性和血液灌注。对于聚焦于组织体模的超声加热的情况,已验证了开发的理论。实验和计算结果表明,尽管MR图像中存在时间和空间噪声,并且图像采集速度较慢,但​​开发的方法仍可生成准确的低维处理模型。

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