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Impact of pulse sequence analysis method and signal to noise ratio on the accuracy of intervertebral disc

机译:脉冲序列分析方法的影响信号与信噪比对椎间盘精度的影响

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摘要

Noninvasive assessments of intervertebral disc health and degeneration are critical for addressing disc degeneration and low back pain. Magnetic resonance imaging (MRI) is exceptionally sensitive to tissue with high water content, and measurement of the MR transverse relaxation time, T2, has been applied as a quantitative, continuous, and objective measure of disc degeneration that is linked to the water and matrix composition of the disc. However, T2 measurement is susceptible to inaccuracies due to Rician noise, T1 contamination, and stimulated echo effects. These error generators can all be controlled for with proper data collection and fitting methods. The objective of this study was to identify sequence parameters to appropriately acquire MR data and to establish curve fitting methods to accurately calculate disc T2 in the presence of noise by correcting for Rician noise. To do so, we compared T2 calculated from the typical monoexponential (MONO) fits and noise corrected exponential (NCEXP) fits. We examined how the selected sequence parameters altered the calculated T2 in silico and in vivo. Typical MONO fits were frequently poor due to Rician noise, and NCEXP fits were more likely to provide accurate T2 calculations. NCEXP is particularly less biased and less uncertain at low SNR. This study showed that the NCEXP using sequences with data from 20 echoes out to echo times of ~300 ms is the best method for calculating T2 of discs. By acquiring signal data out to longer echo times and accounting for Rician noise, the curve fitting is more robust in calculating T2 despite the noise in the data. This is particularly important when considering degenerate discs or AF tissue because the SNR of these regions is lower.
机译:非侵入性评估椎间盘健康和变性对于寻址椎间盘变性和低腰疼痛至关重要。磁共振成像(MRI)对具有高含水量的组织特别敏感,以及MR横向松弛时间,T的测量如图2所示,已应用于与椎间盘的水和基质组成相关的盘变性的定量,连续和客观测量。但是,T.由于瑞典噪音,2测量易受不准确的影响1污染,刺激回声效应。这些错误发生器都可以控制适当的数据收集和拟合方法。本研究的目的是识别序列参数以适当地获取MR数据并建立曲线拟合方法以准确计算磁盘T.2通过纠正瑞典噪音的存在。为此,我们比较了图2由典型的单型单值(MONO)配合拟合和噪声校正指数(NCEXP)配合。我们检查了所选序列参数如何改变计算的T2在硅和体内。由于瑞典噪声,典型的单声道常量频繁差,并且NCEXP适合的可能性是提供准确的t2计算。 NCEXP特别较小,低SNR的不确定。该研究表明,NCEXP使用来自20个回波的数据的序列与〜300ms的回声次数是计算T的最佳方法2个光盘。通过获取以更长的回声时间和衡量利员噪声的信号数据,曲线拟合在计算T时更加坚固2尽管数据中的噪音。当这些区域的SNR降低时,这尤其重要,因为这些区域的SNR较低。

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