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A high-impedance detector-array glove for magnetic resonance imaging of the hand

机译:用于手部磁共振成像的高阻抗探测器阵列手套

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摘要

Densely packed resonant structures used for magnetic resonance imaging (MRI), such as nuclear magnetic resonance phased-array detectors, suffer from resonant inductive coupling, which restricts coil design to fixed geometries, imposes performance limitations, and narrows the scope of MRI experiments to motionless subjects. Here, we report the design of high-impedance detectors, and the fabrication and performance of a wearable detector array for MRI of the hand, that cloak themselves from electrodynamic interactions with neighboring elements. We experimentally verified that the detectors do not suffer from signal-to-noise degradation mechanisms typically observed with the use of traditional low-impedance elements. The detectors are adaptive and can accommodate movement, providing access to the imaging of soft-tissue biomechanics with unprecedented flexibility. The design of the wearable detector glove exemplifies the potential of high-impedance detectors in enabling a wide range of applications that are not well suited to traditional coil designs.
机译:用于磁共振成像(MRI)的密集堆积的共振结构(例如核磁共振相控阵探测器)遭受共振感应耦合,这将线圈设计限制在固定的几何形状上,施加了性能限制,并将MRI实验的范围缩小到不动科目。在这里,我们报告了高阻抗检测器的设计以及用于手部MRI的可穿戴检测器阵列的制造和性能,它们掩盖了自己与相邻元件的电动相互作用。我们通过实验验证了检测器不会受到通常使用传统低阻抗元件观察到的信噪比降级机制的影响。这些探测器具有适应性,可以适应运动,从而以前所未有的灵活性提供对软组织生物力学成像的访问。可穿戴式检测器手套的设计充分体现了高阻抗检测器的潜力,可实现非常不适合传统线圈设计的广泛应用。

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