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首页> 外文期刊>Medical Physics >Correction of breathing-induced errors in magnetic resonance thermometry of hyperthermia using multiecho field fitting techniques.
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Correction of breathing-induced errors in magnetic resonance thermometry of hyperthermia using multiecho field fitting techniques.

机译:使用多回波场拟合技术校正热疗磁共振测温中呼吸引起的误差。

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PURPOSE: Breathing motion can create large errors when performing magnetic resonance (MR) thermometry of the breast. Breath holds can be used to minimize these errors, but not eliminate them. Between breath holds, the referenceless method can be used to further reduce errors by relying on regions of nonheated fatty tissue surrounding the heated region. When the surrounding tissue is heated (i.e., for a hyperthermia treatment), errors can result due to phase changes of the small amounts of water in the tissue. Therefore, an extension of the referenceless method is proposed which fits for the field in fatty tissue independent of temperature change and extrapolates it to the water-rich regions. METHODS: Nonheating experiments were performed with male volunteers performing breath holds on top of a phantom mimicking a breast with a tumor. Heating experiments were also conducted with the same phantom while mechanically simulated breath holds were performed. A nonheating experiment was also performed with a healthy female breast. For each experiment, a nonlinear fitting algorithm was used to fit for temperature change and B0 field inside of the fatty tissue. The field changes were then extrapolated into water-rich (tumor) portions of the image using a least-squares fit to a fifth-order equation, to correct for field changes due to breath hold changes. Similar results were calculated using the image phase, to mimic the use of the referenceless method. RESULTS: Phantom results showed large reduction of mean error and standard deviation. In the non-heating experiments, the traditional referenceless method and our extended method both corrected by similar amounts. However, in the heating experiments, the average deviation of the temperature calculated with the extended method from a fiber optic probe temperature was approximately 50% less than the deviation with the referenceless method. The in vivo breast results demonstrated reduced standard deviation and mean. CONCLUSIONS: In this paper, we have developed an extension of the referenceless method to correct for breathing errors using multiecho fitting methods to fit for the B0 field in the fatty tissue and using measured field changes as references to extrapolate field corrections into a water-only (tumor) region. This technique has been validated in a number of situations, and in all cases, the correction method has been shown to greatly reduce temperature error in water-rich regions. The method has also been shown to be an improvement over similar methods that use image phase changes instead of field changes, particularly when temperature changes are induced.
机译:目的:当进行乳房的磁共振(MR)测温时,呼吸运动会产生较大的误差。屏气可以使这些错误最小化,但不能消除。在屏气之间,无参考方法可用于依靠周围加热区域的非加热脂肪组织区域来进一步减少错误。当周围组织被加热时(即,用于热疗),由于组织中少量水的相变而可能导致误差。因此,提出了无参考方法的扩展,该方法适用于脂肪组织中不受温度变化影响的领域,并将其外推到富水区域。方法:非加热实验是由男性志愿者在模仿肿瘤的乳房的幻像上屏住呼吸来进行的。在进行机械模拟屏气的同时,还使用相同的体模进行了加热实验。还对健康的女性乳房进行了不加热实验。对于每个实验,都使用非线性拟合算法来拟合脂肪组织内部的温度变化和B0场。然后使用与五阶方程拟合的最小二乘法将场变化外推到图像的富水(肿瘤)部分中,以校正由于屏气而引起的场变化。使用图像相位计算了相似的结果,以模仿无参考方法的使用。结果:幻影结果显示平均误差和标准偏差大大降低。在非加热实验中,传统的无参考方法和我们的扩展方法都以相似的量进行了校正。但是,在加热实验中,用扩展方法计算的温度与光纤探头温度的平均偏差比无参考方法的偏差小约50%。体内乳房结果显示标准偏差和均值降低。结论:在本文中,我们开发了无参考方法的扩展,以使用多重回波拟合方法来拟合脂肪组织中的B0场,并使用测得的场变化作为参考,将场外推算推断为纯水,从而纠正呼吸错误(肿瘤)区域。该技术已在多种情况下得到验证,并且在所有情况下,都显示出该校正方法可以大大减少富水地区的温度误差。与使用图像相位变化而不是场变化的类似方法相比,该方法也已显示出改进,特别是在引起温度变化时。

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