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Printed Receive Coils with High Acoustic Transparency for Magnetic Resonance Guided Focused Ultrasound

机译:具有高声透明性的印刷接收线圈用于磁共振引导聚焦超声

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摘要

In magnetic resonance guided focused ultrasound (MRgFUS) therapy sound waves are focused through the body to selectively ablate difficult to access lesions and tissues. A magnetic resonance imaging (MRI) scanner non-invasively tracks the temperature increase throughout the tissue to guide the therapy. In clinical MRI, tightly fitted hardware comprised of multichannel coil arrays are required to capture high quality images at high spatiotemporal resolution. Ablating tissue requires a clear path for acoustic energy to travel but current array materials scatter and attenuate acoustic energy. As a result coil arrays are placed outside of the transducer, clear of the beam path, compromising imaging speed, resolution, and temperature accuracy of the scan. Here we show that when coil arrays are fabricated by additive manufacturing (i.e., printing), they exhibit acoustic transparency as high as 89.5%. This allows the coils to be placed in the beam path increasing the image signal to noise ratio (SNR) five-fold in phantoms and volunteers. We also characterize printed coil materials properties over time when submerged in the water required for acoustic coupling. These arrays offer high SNR and acceleration capabilities, which can address current challenges in treating head and abdominal tumors allowing MRgFUS to give patients better outcomes.
机译:在磁共振引导聚焦超声(MRgFUS)治疗中,声波会通过身体聚焦,以选择性消融难以进入的病变和组织。磁共振成像(MRI)扫描仪无创地跟踪整个组织的温度升高,以指导治疗。在临床MRI中,需要紧密安装的,由多通道线圈阵列组成的硬件,才能以高时空分辨率捕获高质量的图像。消融组织需要一条清晰的路径来传播声能,但是当前的阵列材料会散射并衰减声能。结果,线圈阵列被放置在换能器外部,远离光路,从而损害了成像速度,分辨率和扫描的温度精度。在这里我们表明,当通过增材制造(即印刷)制造线圈阵列时,它们显示出高达89.5%的透声度。这允许将线圈放置在光路中,从而将幻像和志愿者的图像信噪比(SNR)提高五倍。当浸入声耦合所需的水中时,我们还将表征随时间变化的印刷线圈材料的特性。这些阵列具有很高的SNR和加速能力,可以应对当前治疗头和腹部肿瘤的挑战,从而使MRgFUS能够为患者提供更好的治疗效果。

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