Division of Radiology, Department of Medical Technology, Kyushu University Hospital, Fukuoka, Japan.
Department of Clinical Radiology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Magn Reson Med. 2019 Jan;81(1):331-341. doi: 10.1002/mrm.27394. Epub 2018 Sep 8.
To evaluate the visualization of CSF dynamics using the novel method multi-spin echo acquisition cine imaging (MUSACI).
MUSACI is based on multi-echo volume isotropic turbo spin-echo acquisition (VISTA) with pulse gating. MUSACI images were acquired in 11 healthy volunteers (7 men, 4 women; age range, 24-46 y, mean age, 31.9 ± 5.51 y). We compared the CSF signal intensities (SIs) at multiple values of the effective echo time (TE ) at the lateral ventricle, the foramen of Monro, the third ventricle, and the fourth ventricle. We compared the CSF SI changes in MUSACI at multiple TE and the mean velocities in phase contrast (PC) at each trigger delay at the foramen of Monro, the third ventricle, and the fourth ventricle.
The anterograde CSF motion from the aqueduct to the fourth ventricle, the retrograde motion from the aqueduct to the third ventricle, and the retrograde motion from the foramen of Monro to the lateral ventricle were observed with MUSACI. The CSF SIs at each TE in the foramen of Monro, the third ventricle, and the fourth ventricle were significantly lower than that at each TE in the lateral ventricle (P < 0.05). The CSF SI in MUSACI changed with the TE , and the CSF movements were observed at each trigger delay in PC.
MUSACI can provide both high-resolution anatomical detail of the CSF passageways and physiologic information regarding CSF dynamics in a single scan.
评估使用新型多自旋回波采集电影成像(MUSACI)方法对 CSF 动力学的可视化效果。
MUSACI 基于具有脉冲门控的多回波容积各向同性涡轮自旋回波采集(VISTA)。在 11 名健康志愿者(7 名男性,4 名女性;年龄范围 24-46 岁,平均年龄 31.9±5.51 岁)中采集 MUSACI 图像。我们比较了侧脑室、Monro 孔、第三脑室和第四脑室在多个有效回波时间(TE)值的 CSF 信号强度(SI)。我们比较了 MUSACI 中多个 TE 的 CSF SI 变化以及 Monro 孔、第三脑室和第四脑室每个触发延迟处的相位对比(PC)中的平均速度。
MUSACI 观察到从 aqueduct 到第四脑室的 CSF 顺行运动、从 aqueduct 到第三脑室的逆行运动以及从 Monro 孔到侧脑室的逆行运动。Monro 孔、第三脑室和第四脑室的每个 TE 的 CSF SI 明显低于侧脑室的每个 TE(P<0.05)。MUSACI 中的 CSF SI 随 TE 而变化,在 PC 中的每个触发延迟处都可以观察到 CSF 运动。
MUSACI 可以在单次扫描中同时提供 CSF 通道的高分辨率解剖细节和 CSF 动力学的生理信息。