Trasimeni Guido, Auconi Marina, Grossi Andrea, Gagliardo Olga, Romano Andrea, Covelli Edoardo, Bozzao Alessandro
Division of Neuroradiology, Department of Neurosciences, Mental Health and Sensory Organs (NESMOS), "Sapienza" University of Rome, Rome, Italy.
Otolaryngology Clinic, Department of Neurosciences, Mental Health and Sensory Organs (NESMOS), "Sapienza" University of Rome, Rome, Italy.
J Neurol Surg B Skull Base. 2020 Apr;81(2):172-179. doi: 10.1055/s-0039-1681039. Epub 2019 Mar 15.
This study was aimed to investigate the role of dynamic TurboFLASH gadolinium (Gd) magnetic resonance (MR) imaging in improving the differential diagnosis of skull base tumors. Eleven patients with skull base tumors underwent standard MR and ultrafast TurboFLASH sequence during gadolinium injection. The characterization of tumor vascularity was performed. Different patterns of gadolinium uptake for each tumor type were observed. This is particularly important to identify tumors at high risk of intraoperative bleeding. All glomus tumors, typically highly vascularized, showed an enhancement at the arterial phase, reflecting the arterialization of these tumors which is not detectable on conventional MR. No signal increase at the arterial phase was instead observed in other cases in which the ruling out of a glomus tumor was important because of the location of the lesion. Moreover TurboFLASH identified the pathognomonic "filling-in" profile of cavernous sinus cavernous hemangiomas (CSCH), that is, the progressive centripetal enhancement of the lesion at the beginning of the venous phase. The dynamic analysis of tumor contrast enhancement with the TurboFLASH sequence provides useful additional information to that obtained with conventional MR, improving the differential diagnosis of skull base tumors, particularly in the distinction between glomus and nonglomus tumors and in diagnosing CSCH.
本研究旨在探讨动态TurboFLASH钆(Gd)磁共振(MR)成像在改善颅底肿瘤鉴别诊断中的作用。11例颅底肿瘤患者在注射钆期间接受了标准MR和超快TurboFLASH序列检查。对肿瘤血管特征进行了分析。观察到每种肿瘤类型钆摄取的不同模式。这对于识别术中出血高风险的肿瘤尤为重要。所有典型的高血管化的球瘤在动脉期均表现为强化,反映出这些肿瘤的动脉化,这在传统MR上无法检测到。而在其他因病变位置需要排除球瘤的病例中,未观察到动脉期信号增加。此外,TurboFLASH还识别出海绵窦海绵状血管瘤(CSCH)的特征性“填充”模式,即病变在静脉期开始时向心性渐进性强化。使用TurboFLASH序列对肿瘤对比增强进行动态分析,可为传统MR提供有用的额外信息,改善颅底肿瘤的鉴别诊断,特别是在区分球瘤和非球瘤肿瘤以及诊断CSCH方面。