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首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Design and fabrication of a three-axis multilayer gradient coil for magnetic resonance microscopy of mice
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Design and fabrication of a three-axis multilayer gradient coil for magnetic resonance microscopy of mice

机译:用于小鼠磁共振显微镜的三轴多层梯度线圈的设计与制造

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摘要

There is great interest in the non-destructive capabilities of magnetic resonance microscopy for studying murine models of both disease and normal function; however, these studies place extreme demands on the MR hardware, most notably the gradient field system. We designed, using constrained current minimum inductance methods, and fabricated a complete, unshielded three-axis gradient coil set that utilizes interleaved, multilayer axes to achieve maximum gradient strengths of over 2000 mT m~(-1) in rise times of less than 50 μs with an inner coil diameter of 5 cm. The coil was wire-would using a rectangular wire that minimizes the deposited power for a given gradient efficiency. Water cooling was also incorporated into the coil to assist in thermal management. The duty cycle for the most extreme cases of single shot echo planar imaging (EPI) is limited by the thermal response and expressions for maximum rates of image collection are given for burst and continuous modes of operation. The final coil is capable of the collection of single shot EPI images with 6 mm field of view and 94 μm isotropic voxels at imaging rates exceeding 50 s~(-1).
机译:对于研究疾病和正常功能的小鼠模型的磁共振显微镜的无损检测能力引起了极大的兴趣。但是,这些研究对MR硬件(尤其是梯度场系统)提出了极高的要求。我们使用受限电流最小电感方法进行设计,并制造出完整的非屏蔽三轴梯度线圈组,该线圈组利用交错的多层轴在不到50的上升时间中实现了超过2000 mT m〜(-1)的最大梯度强度内部线圈直径为5 cm的μs。使用矩形线对线圈进行线绕,该矩形线可在给定的梯度效率下最大程度地降低沉积功率。盘管中还集成了水冷功能,以帮助进行热管理。单脉冲回波平面成像(EPI)在最极端情况下的占空比受热响应限制,并且给出了突发和连续操作模式的最大图像采集速率表达式。最终的线圈能够以超过50 s〜(-1)的成像速度收集6 mm视场和94μm各向同性体素的单次EPI图像。

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