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利用磁化传递对比(MTC)对颅内血管环进行磁共振血管造影

[Magnetic resonance angiography of the intracranial circle using magnetization transfer contrast (MTC)].

作者信息

Catalano C, Pavone P, Laghi A, Faroni J, Clementi M, Di Girolamo M, Albertini Petroni G, Passariello R

机构信息

II Cattedra, Università degli Studi di Roma La Sapienza.

出版信息

Radiol Med. 1995 Mar;89(3):245-9.

PMID:7754116
Abstract

Magnetic Resonance Angiography (MRA) is becoming an accurate technique to study vascular conditions, especially when the intracranial circulation is involved. Nevertheless, the contrast-to-noise (C/N) ratio in MRA images is often inadequate to obtain diagnostic images. C/N ratio can be increased by using magnetization transfer contrast (MTC), the technique which allows to reduce the signal from the stationary tissues surrounding vascular structures. To demonstrate the value of MTC, 10 healthy volunteers and 10 patients with different cerebral vascular conditions were examined. All exams were performed using 3D MOTSA (Multiple Overlapping Thin Slab Acquisition) Time of Flight sequences, with and without MTC. A quantitative analysis was carried out in the images with and without MTC, measuring the signal intensity value in the regions of interest at the vascular and stationary structures. A qualitative analysis was also carried out with a double blind study by two independent radiologists. Our results showed that MTC allows to reduce stationary tissues signal intensity, without affecting flowing blood signal intensity. Therefore, the C/N ratio is increased, thus allowing better depiction of smaller peripheral branches. In conclusion, MTC applied to intracranial MRA allows image quality to be markedly improved, with an overall increase in the diagnostic accuracy of this technique.

摘要

磁共振血管造影(MRA)正成为一种研究血管状况的精确技术,尤其是涉及颅内循环时。然而,MRA图像中的对比噪声(C/N)比往往不足以获得诊断图像。通过使用磁化传递对比(MTC)可以提高C/N比,该技术能够减少血管结构周围静止组织的信号。为了证明MTC的价值,对10名健康志愿者和10名患有不同脑血管疾病的患者进行了检查。所有检查均使用3D MOTSA(多层重叠薄层采集)飞行时间序列,分别在有和没有MTC的情况下进行。对有和没有MTC的图像进行了定量分析,测量了血管和静止结构感兴趣区域的信号强度值。还通过两名独立放射科医生进行的双盲研究进行了定性分析。我们的结果表明,MTC能够降低静止组织的信号强度,而不影响流动血液的信号强度。因此,C/N比增加,从而能够更好地描绘较小的外周分支。总之,将MTC应用于颅内MRA可显著提高图像质量,总体上提高该技术的诊断准确性。

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