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1{sup left}H MRS and MRSI: analysis of acquisition parameters and improvement of various clinical applications

机译:1 {SUP左} H夫人和MRSI:分析采集参数和各种临床应用的改进

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MRS and MRSI are valuable tools for diagnosis and staging of several pathologies, much before become detectable by other imaging methods. Combined with other imaging techniques in an advancing modality like MRI offer the ability to estimate accurately the overall condition of the examined tissue. MRS and MRSI could be potentially suited for repeated monitoring since it entails no exposure to ionizing radiation. Incorporation of these tools in clinical practice is, however, limited due to the considerable amount of user intervention. In this study various acquisition parameters and their effect in spectrum quality are investigated. A series of experiments were conducted, using a manufacturer's spectroscopy phantom, to assess the quality of various spectroscopic imaging techniques. The effectiveness of the available water and lipid suppression techniques and their compatibility with other parameters were also investigated. The stability of the equipment, the appearance of artifacts and the reproducibility of the results were also examined to obtain conclusions for the interaction of acquisition parameters. All the data were processed with jMRUI 2.2 to analyze various aspects of the measurements, quantify parameters such as signal to noise ratio (SNR) and full width at half maximum (FWHM) and extract useful conclusions for the function of these methods. The experience acquired from the conducted experiments was applied in improvement of clinical applications (prostate, brain and muscle examinations) by significantly improving the spectrum quality, SNR (up to 75%), spatial resolution and in most cases reducing exam times (up to 60%).
机译:MRS和MRSI是用于诊断和病理几个分期有价值的工具,很多之前成为其他影像学方法检测。在如MRI前进模态的其他成像技术相结合提供准确地估计检查的组织的总体状况的能力。 MRS和MRSI可以潜在地适用于重复监控,因为它需要没有暴露于电离辐射。在临床实践中这些工具的结合,然而,有限的,由于相当数量的用户干预。在这项研究中的各种采集参数以及它们在光谱质量的影响进行了研究。一系列的实验进行的,使用制造商的光谱幻象,以评估各种光谱成像技术的质量。可用的水和脂质抑制技术及其与其它参数兼容的有效性进行了研究。还检查了设备,伪影的出现,其结果的再现性的稳定性,得到的结论为的采集参数的相互作用。所有数据均用jMRUI 2.2处理以分析测量结果的各个方面,参数进行量化,如信噪比(SNR)和全宽半值(FWHM),并提取有用的结论为这些方法的功能。从进行的实验中取得的经验被显著提高频谱质量,SNR(高达75%),空间分辨率,而且在大多数情况下,减少了考试的时间(最多60个在改善临床应用(前列腺,脑和肌肉检查)应用%)。

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