GE Research, Niskayuna, New York, USA.
Brigham and Women's Hospital, Boston, Massachusetts, USA.
Magn Reson Med. 2024 Feb;91(2):640-648. doi: 10.1002/mrm.29874. Epub 2023 Sep 27.
To demonstrate the technical feasibility and the value of ultrahigh-performance gradient in imaging the prostate in a 3T MRI system.
In this local institutional review board-approved study, prostate MRI was performed on 4 healthy men. Each subject was scanned in a prototype 3T MRI system with a 42-cm inner-diameter gradient coil that achieves a maximum gradient amplitude of 200 mT/m and slew rate of 500 T/m/s. PI-RADS V2.1-compliant axial T -weighted anatomical imaging and single-shot echo planar DWI at standard gradient of 70 mT/m and 150 T/m/s were obtained, followed by DWI at maximum performance (i.e., 200 mT/m and 500 T/m/s). In comparison to state-of-the-art clinical whole-body MRI systems, the high slew rate improved echo spacing from 1020 to 596 μs and, together with a high gradient amplitude for diffusion encoding, TE was reduced from 55 to 36 ms.
In all 4 subjects (waist circumference = 81-91 cm, age = 45-65 years), no peripheral nerve stimulation sensation was reported during DWI. Reduced image distortion in the posterior peripheral zone prostate gland and higher signal intensity, such as in the surrounding muscle of high-gradient DWI, were noted.
Human prostate MRI at simultaneously high gradient amplitude of 200 mT/m and slew rate of 500 T/m/s is feasible, demonstrating that improved gradient performance can address image distortion and T decay-induced SNR issues for in vivo prostate imaging.
展示在 3T MRI 系统中使用超高性能梯度对前列腺进行成像的技术可行性和价值。
在这项经过当地机构审查委员会批准的研究中,对 4 名健康男性进行了前列腺 MRI 检查。每位受试者均在配备 42cm 内径梯度线圈的原型 3T MRI 系统中进行扫描,该梯度线圈可实现 200mT/m 的最大梯度幅度和 500T/m/s 的上升速率。获得符合 PI-RADS V2.1 的轴向 T2 加权解剖成像和标准梯度 70mT/m 和 150T/m/s 的单次激发回波平面弥散加权成像,随后进行最大性能(即 200mT/m 和 500T/m/s)的弥散加权成像。与最先进的临床全身 MRI 系统相比,高上升速率将回波间隔从 1020 微秒提高到 596 微秒,并且扩散编码的高梯度幅度使 TE 从 55 毫秒降低到 36 毫秒。
在所有 4 名受试者(腰围=81-91cm,年龄=45-65 岁)中,在弥散加权成像过程中均未报告周围神经刺激感。在前列腺后外周区,图像失真减少,高梯度弥散加权成像中周围肌肉的信号强度更高。
在 200mT/m 的同时高梯度幅度和 500T/m/s 的上升速率下进行人体前列腺 MRI 是可行的,这表明改进的梯度性能可以解决体内前列腺成像中的图像失真和 T 衰减引起的 SNR 问题。