Department of Radiotherapy, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, Netherlands. Imaging Division, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX, Utrecht, Netherlands.
Phys Med Biol. 2018 Aug 6;63(15):155023. doi: 10.1088/1361-6560/aad2b7.
Hybrid MR-linac systems can use fast dynamic MR sequences for tumor tracking and adapt the radiation treatment in real-time. For this the imaging latency must be as short as possible. This work describes how different acquisition parameters influence this latency. First, the latency was measured for Cartesian readouts with phase encode orderings linear, reverse-linear, and high-low. Second, the latency was measured for radial readouts with linear and golden angle profile orderings. To reduce the latency, a spatio-temporal (k-t) filter that suppresses the k-space center of earlier acquired spokes was implemented for the golden angle sequence. For Cartesian readouts a high-low ordering achieved a three times lower latency compared to a linear ordering with our sampling parameters. For radial readouts the filter was able to reduce the acquisition latency from half the acquisition time to a quarter of the acquisition time. The filter did not compromise the signal-to-noise ratio and the artifact power.
混合 MR-直线加速器系统可以使用快速动态 MR 序列进行肿瘤跟踪,并实时调整放射治疗。为此,成像延迟必须尽可能短。这项工作描述了不同的采集参数如何影响这种延迟。首先,测量了具有线性、反向线性和高低相位编码顺序的笛卡尔读出的延迟。其次,测量了具有线性和黄金角度轮廓顺序的径向读出的延迟。为了降低延迟,针对黄金角度序列实现了时空(k-t)滤波器,该滤波器抑制了先前采集的 spokes的 k 空间中心。对于笛卡尔读出,使用高低顺序与我们的采样参数相比,延迟降低了三倍。对于径向读出,滤波器能够将采集延迟从采集时间的一半减少到四分之一。该滤波器没有影响信噪比和伪影功率。