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Reconstruction of the perfusion coefficient from temperature measurements using the conjugate gradient method

机译:使用共轭梯度法从温度测量值重建灌注系数

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We consider the inverse bio-heat transfer problem to determine the space- and time-dependent perfusion coefficient from temperature measurements. In this formulation, the problem is fully determined and the coefficient is identifiable if and only if the temperature has dense support. However, the problem is still ill-posed since small errors in the measured temperature cause large errors in the output perfusion coefficient due to the numerical differentiation of noisy data involved which represents an unstable procedure. In order to overcome this difficulty and restore stability, we employ for the first time the conjugate gradient method (CGM) for solving the inverse problem under investigation. Regularization is achieved by stopping the iteration process at an appropriate threshold dictated by the discrepancy principle. Numerical results show that the CGM is accurate and reasonably stable in retrieving the perfusion coefficient. Moreover, comparison with other methods shows improved efficiency and stability in inverting noisy data.
机译:我们考虑逆向生物传热问题,以根据温度测量确定空间和时间相关的灌注系数。在此公式中,当且仅当温度具有密集支撑时,才可以完全确定问题并确定系数。然而,由于所测量的温度的小误差由于所涉及的代表不稳定过程的噪声数据的数值微分而导致输出灌注系数的大误差,所以该问题仍然是不合适的。为了克服这一困难并恢复稳定性,我们首次采用共轭梯度法(CGM)来解决所研究的反问题。通过在差异原则规定的适当阈值处停止迭代过程来实现正则化。数值结果表明,CGM在获取灌注系数方面是准确且合理稳定的。此外,与其他方法的比较表明,在转换噪声数据方面,效率和稳定性得到了提高。

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