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Technical challenges in 3 T magnetic resonance spectroscopic imaging of the prostate—A single-institution experience

机译:前列腺的3 T磁共振波谱成像中的技术挑战-单机构经验

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The magnetic resonance spectroscopic imaging (MRSI) is the only technique that is currently available in the clinical practice to provide the metabolic status of prostate tissue at the cellular level with a great potential to improve the clinical patient care. Increasing the field strength from 1.5 to 3 T can theoretically provide proportionately higher signal-to-noise ratio (SNR) and improve spectral separation between prostatic metabolite peaks. The technique, however, has been limited to a few academic institutions that are equipped with a team of experts primarily due to due to serious technical challenges in optimizing the spectral quality. High quality shimming is key to the successful MRSI acquisition. Without optimization of the increased field inhomogeneity and radiofrequency (RF) dielectric effect at 3 T, the spectral peak broadening and residual signal from the periprostatic fat tissue may render the overall spectra non-diagnostic. The purpose of this technical note is to present the practical steps of successful acquisition of 3 T MRSI and to address several important technical challenges in minimizing the effect of the increased magnetic field and RF field inhomogeneity in order to obtain highest possible spectral quality based on our initial experience in using 3 T MRSI prototype software.
机译:磁共振波谱成像(MRSI)是临床实践中目前可用的唯一技术,可在细胞水平上提供前列腺组织的代谢状态,并具有改善临床患者护理的巨大潜力。理论上,将场强从1.5 T增加到3 T可以按比例提供更高的信噪比(SNR),并改善前列腺代谢物峰之间的光谱分离。然而,由于在优化频谱质量方面的严峻技术挑战,该技术仅限于配备了专家团队的少数学术机构。高质量匀场是成功收购MRSI的关键。如果不优化3 T下增加的电场不均匀性和射频(RF)介电效应,则前列腺增生周围脂肪组织的光谱峰展宽和残留信号可能使整个光谱无法诊断。本技术说明的目的是介绍成功获取3 T MRSI的实际步骤,并解决一些重要的技术挑战,以最大程度地减小磁场和RF场的不均匀性的影响,以便根据我们的技术获得尽可能高的频谱质量使用3 T MRSI原型软件的初步经验。

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