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2D radially compensating excitation pulse in combination with an internal transceiver antenna for 3D MRI of the rectum at 7 T

机译:图2D径向补偿激励脉冲与7℃的直肠3D MRI的内部收发器天线组合

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摘要

Purpose: The high precession frequency in ultrahigh field MRI coincides with reduced RF penetration, increased RF power deposition and consequently can lead to reduced scan efficiency. However, the shorter wavelength enables the use of efficient antennas rather than loop coils. In fact, ultrathin monopole antennas have been demonstrated at 7 T, which fit in natural cavities like the rectum in the human body. As the RF field generated by the antenna provides an extremely nonuniform B-1 field, the use of conventional RF pulses will lead to severe image distortions and highly nonuniform contrast. However, using the two predominant dimensions (orthogonal to the antenna), 2D RF pulses can be designed that counteract the nonuniform B1 into uniform flip angles. In this study the authors investigate the use of an ultrathin antenna not only for reception, but also for transmission in 7 T MRI of the rectum.
机译:目的:超高的频率高频率与降低的射频渗透相一致,RF功率沉积增加,从而导致扫描效率降低。 但是,较短的波长使得能够使用高效的天线而不是环路线圈。 事实上,已经在7吨中证明了超薄单极天线,其在人体中的直肠等天然腔体配合。 由于天线产生的RF场提供极其不均匀的B-1场,因此使用传统的RF脉冲将导致严重的图像失真和高度不均匀的对比度。 然而,使用两种主要尺寸(正交到天线),可以将2D RF脉冲设计成抵消不均匀的B1成均匀的翻转角。 在这项研究中,作者调查了不仅用于接收的超薄天线,而且还用于在直肠的7 T MRI中传输。

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