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静息状态下腰椎肌肉中体素内不相干运动(IVIM)参数拟合方法及变异性的评估

Assessment of fitting methods and variability of IVIM parameters in muscles of the lumbar spine at rest.

作者信息

Englund Erin K, Berry David B, Behun John J, Frank Lawrence R, Ward Samuel R, Shahidi Bahar

机构信息

Orthopaedic Surgery, University of California, San Diego, La Jolla, CA, United States.

Radiology, University of Colorado Anschutz Medical Campus, Aurora, CO, United States.

出版信息

Front Musculoskelet Disord. 2024;2. doi: 10.3389/fmscd.2024.1386276. Epub 2024 Apr 10.

Abstract

Intravoxel incoherent motion (IVIM) MRI provides insight into tissue diffusion and perfusion. Here, estimates of perfusion fraction ( ), pseudo-diffusion coefficient ( ), and diffusion coefficient ( ) obtained via different fitting methods are compared to ascertain (1) the optimal analysis strategy for muscles of the lumbar spine and (2) repeatability of IVIM parameters in skeletal muscle at rest. Diffusion-weighted images were acquired in the lumbar spine at rest in 15 healthy participants. Data were fit to the bi-exponential IVIM model to estimate and using three variably segmented approaches based on non-linear least squares fitting, and a Bayesian fitting method. Assuming that perfusion and diffusion are temporally stable in skeletal muscle at rest, and spatially uniform within a spinal segment, the optimal analysis strategy was determined as the approach with the lowest temporal or spatial variation and smallest residual between measured and fit data. Inter-session repeatability of IVIM parameters was evaluated in a subset of 11 people. Finally, simulated IVIM signal at varying signal to noise ratio were evaluated to understand precision and bias. Experimental results showed that IVIM parameter values differed depending on the fitting method. A three-step non-linear least squares fitting approach, where , and were estimated sequentially, generally yielded the lowest spatial and temporal variation. Solving all parameters simultaneously yielded the lowest residual between measured and fit data, however there was substantial spatial and temporal variability. Results obtained by Bayesian fitting had high spatial and temporal variability in addition to a large residual between measured and fit data. Simulations showed that all fitting methods can fit the IVIM data at signal to noise ratios >35, and that was the most challenging to accurately obtain. Overall, this study motivates use of a three-step non-linear least squares fitting strategy to quantify IVIM parameters in skeletal muscle.

摘要

体素内不相干运动(IVIM)磁共振成像可深入了解组织扩散和灌注情况。在此,通过不同拟合方法获得的灌注分数( )、伪扩散系数( )和扩散系数( )的估计值进行比较,以确定(1)腰椎肌肉的最佳分析策略,以及(2)静息状态下骨骼肌中IVIM参数的可重复性。对15名健康参与者的腰椎进行了静息状态下的扩散加权成像。数据采用双指数IVIM模型进行拟合,以基于非线性最小二乘法拟合的三种可变分割方法以及贝叶斯拟合方法来估计 和 。假设静息状态下骨骼肌中的灌注和扩散在时间上是稳定的,且在一个脊柱节段内空间上是均匀的,将最佳分析策略确定为时间或空间变化最小且测量数据与拟合数据之间残差最小的方法。在11人的子集中评估了IVIM参数的组间可重复性。最后,评估了不同信噪比下的模拟IVIM信号,以了解精度和偏差。实验结果表明,IVIM参数值因拟合方法而异。一种三步非线性最小二乘法拟合方法,即依次估计 、 和 ,通常产生最低的空间和时间变化。同时求解所有参数时,测量数据与拟合数据之间的残差最低,然而存在大量的空间和时间变异性。贝叶斯拟合得到的结果除了测量数据与拟合数据之间存在较大残差外,还具有较高的空间和时间变异性。模拟表明,所有拟合方法在信噪比>35时都能拟合IVIM数据,且 最难准确获得。总体而言,本研究促使采用三步非线性最小二乘法拟合策略来量化骨骼肌中的IVIM参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52ae/11318298/eaf26f50c097/nihms-2008421-f0001.jpg

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