Catanese A, Malacario F, Cirillo L, Toni F, Zenesini C, Casolino D, Bacci A, Agati R
1 Department of Radiology, University of Bologna, S. Orsola Hospital, Bologna Italy.
2 Department of Radiology, University of Naples Federico II, Italy.
Neuroradiol J. 2018 Feb;31(1):4-9. doi: 10.1177/1971400917693025. Epub 2017 Jun 23.
Intravoxel incoherent motion is a potential non-invasive diagnostic tool in brain tumours, without any clear guidelines for its evaluation yet. In our study, we compare intravoxel incoherent motion with dynamic susceptibility contrast magnetic resonance imaging in the quantification of tumour tissue blood perfusion in 28 patients affected by brain tumours, highlighting the issues encountered during the acquisition set-up and post-processing steps. Intravoxel incoherent motion is a new imaging tool and an alternative technique to dynamic susceptibility contrast-magnetic resonance imaging which is of considerable interest at present. This is partly because it does not require the use of a contrast agent and relies on the intrinsic properties of motion in the capillaries of the spins. Compared to dynamic susceptibility contrast-magnetic resonance imaging, the intravoxel incoherent motion technique is also characterised by better resolution because the gadolinium-based contrast agent bolus used in the standard technique results in a variation by more than 50% of the signal coming from the brain. Finally, intravoxel incoherent motion is more sensitive to the incoherent motion that originates from small capillary vessels, while the dynamic susceptibility contrast signal is also contaminated by the input from larger arteries and veins, which may result in an overestimation of the blood volume. Although there are limitations due to the heterogeneity of the sample considered in our study, intravoxel incoherent motion has been shown to be an accurate noninvasive radiological biomarker, useful to distinguish between low and high grade glial tumours.
体素内不相干运动是一种用于脑肿瘤的潜在非侵入性诊断工具,但目前尚无明确的评估指南。在我们的研究中,我们比较了体素内不相干运动与动态磁敏感对比磁共振成像在28例脑肿瘤患者肿瘤组织血流灌注定量中的应用,突出了采集设置和后处理步骤中遇到的问题。体素内不相干运动是一种新的成像工具,也是目前备受关注的动态磁敏感对比磁共振成像的替代技术。部分原因是它不需要使用造影剂,而是依赖于自旋毛细血管中运动的固有特性。与动态磁敏感对比磁共振成像相比,体素内不相干运动技术的分辨率也更高,因为标准技术中使用的钆基造影剂团注会导致来自大脑的信号变化超过50%。最后,体素内不相干运动对源自小毛细血管的不相干运动更敏感,而动态磁敏感对比信号也受到来自较大动脉和静脉的输入的污染,这可能导致血容量的高估。尽管由于我们研究中所考虑样本的异质性存在局限性,但体素内不相干运动已被证明是一种准确的非侵入性放射学生物标志物,有助于区分低级别和高级别胶质肿瘤。