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首页> 外文期刊>Journal of computer assisted tomography >Reduction of electronic noise from radiofrequency generator during radiofrequency ablation in interventional MRI.
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Reduction of electronic noise from radiofrequency generator during radiofrequency ablation in interventional MRI.

机译:减少介入MRI中射频消融期间射频发生器产生的电子噪声。

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摘要

MRI has been used increasingly in the recent past for the guidance and monitoring of minimally invasive interventional procedures, using typically radiofrequency (RF) and laser energy, cryoablation, and percutaneous ethanol. RF energy has been used over the last 30 years for the ablation of tissues. Its use in conjunction with MRI for monitoring is limited, however, because of the electronic noise produced by the RF generators, which can significantly deteriorate image quality. The objective of this work was to devise methods by which this noise can be reduced to an acceptable level to allow simultaneous acquisition of MR images for monitoring purposes with the application of RF energy. Three different methods of noise reduction were investigated in a 0.2 T MR scanner: filtration using external hardware circuitry, MR scanner software-controlled filtration, and keyholing. The last two methods were unable by themselves to suppress the noise to an acceptable degree. Hardware filtration, however, provides excellent suppression of RF noise and is able to withstand up to 12 W of RF energy. When all the three approaches are combined, significant reduction of RF noise is achieved. The feasibility of creating an RF lesion of about 1.2 cm diameter in vivo in a porcine model simultaneously with temperature-sensitive MRI with adequate noise suppression is demonstrated.
机译:近年来,MRI已越来越多地用于微创介入程序的指导和监视,通常使用射频(RF)和激光能量,冷冻消融和经皮乙醇。在过去的30年中,射频能量已被用于消融组织。但是,由于RF发生器产生的电子噪声会严重降低图像质量,因此将其与MRI结合使用以进行监视受到了限制。这项工作的目的是设计一种方法,通过这种方法可以将这种噪声降低到可接受的水平,以允许同时采集MR图像以用于监视RF能量。在0.2 T MR扫描仪中研究了三种不同的降噪方法:使用外部硬件电路的过滤,MR扫描仪软件控制的过滤以及键孔。最后两种方法本身无法将噪声抑制到可接受的程度。但是,硬件过滤可以出色地抑制RF噪声,并且能够承受高达12 W的RF能量。当将这三种方法全部结合时,可以显着降低RF噪声。证明了在猪模型中与温度敏感的MRI同时产生具有足够噪声抑制能力的体内创建约1.2 cm直径的RF病变的可行性。

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