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High-resolution magnetic resonance imaging at 3T of pituitary gland: advantages and pitfalls

机译:垂体3T的高分辨率磁共振成像:优点和缺点

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摘要

Magnetic resonance imaging (MRI) is the primary imaging tool for the evaluation of pituitary gland pathology. In the last decades, MRI with high-field scanners has become widely used in clinical practice, leading to significant improvements in image quality mainly thanks to a superior spatial resolution and signal intensity. Moreover, several advanced functional MRI sequences have been implemented for pituitary imaging, providing valuable information in diagnostic and presurgical planning of pituitary adenomas. Higher field strength presents however some technical pitfalls to be aware of. The purpose of this article is to review the state of the art of high-resolution MRI of the pituitary gland at 3 Tesla (3T), with a particular focus on the main benefits and the possible limitations of higher field imaging.
机译:磁共振成像(MRI)是评估垂体病理的主要成像工具。在过去的几十年中,带有高场扫描仪的MRI已在临床实践中得到广泛使用,这主要归功于出色的空间分辨率和信号强度,从而显着改善了图像质量。此外,一些先进的功能性MRI序列已用于垂体成像,为垂体腺瘤的诊断和术前计划提供了有价值的信息。然而,更高的场强带来了一些技术陷阱。本文的目的是回顾3特斯拉(3T)下垂体的高分辨率MRI技术的现状,特别关注于高场成像的主要好处和可能的局限性。

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