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使用MRI梯度线圈进行磁推进的梯度波形合成。

Gradient waveform synthesis for magnetic propulsion using MRI gradient coils.

作者信息

Han B H, Park S, Lee S Y

机构信息

Department of Biomedical Engineering, Kyung Hee University, Korea.

出版信息

Phys Med Biol. 2008 Sep 7;53(17):4639-49. doi: 10.1088/0031-9155/53/17/012. Epub 2008 Aug 11.

Abstract

Navigating an untethered micro device in a living subject is of great interest for both diagnostic and therapeutic applications. Magnetic propulsion of an untethered device carrying a magnetic core in it is one of the promising methods to navigate the device. MRI gradients coils are thought to be suitable for navigating the device since they are capable of magnetic propulsion in any direction while providing magnetic resonance images. For precise navigation of the device, especially in the peripheral region of the gradient coils, the concomitant gradient fields, as well as the linear gradient fields in the main magnetic field direction, should be considered in driving the gradient coils. For simple gradient coil configurations, the Maxwell coil in the z-direction and the Golay coil in the x- and y-directions, we have calculated the magnetic force fields, which are not necessarily the same as the conventional linear gradient fields of MRI. Using the calculated magnetic force fields, we have synthesized gradient waveforms to navigate the device along a desired path.

摘要

在活体中操控无束缚微型设备对于诊断和治疗应用都极具吸引力。对携带磁芯的无束缚设备进行磁驱动是操控该设备的一种很有前景的方法。人们认为MRI梯度线圈适用于操控该设备,因为它们能够在提供磁共振图像的同时在任何方向上进行磁驱动。为了精确操控该设备,尤其是在梯度线圈的外围区域,在驱动梯度线圈时应考虑伴随梯度场以及主磁场方向上的线性梯度场。对于简单的梯度线圈配置,即z方向的麦克斯韦线圈以及x和y方向的戈莱线圈,我们计算了磁力场,这些磁力场不一定与传统的MRI线性梯度场相同。利用计算出的磁力场,我们合成了梯度波形,以便沿着期望路径操控设备。

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