Department of Neuroradiology, Heidelberg University Hospital, INF 400, 69120, Heidelberg, Germany.
Department of Internal Medicine I and Clinical Chemistry, Heidelberg University Hospital, INF 410, Heidelberg, Germany.
Eur Radiol Exp. 2024 Apr 2;8(1):37. doi: 10.1186/s41747-024-00444-2.
In contrast to the brain, fibers within peripheral nerves have distinct monodirectional structure questioning the necessity of complex multidirectional gradient vector schemes for DTI. This proof-of-concept study investigated the diagnostic utility of reduced gradient vector schemes in peripheral nerve DTI.
Three-Tesla magnetic resonance neurography of the tibial nerve using 20-vector DTI (DTI) was performed in 10 healthy volunteers, 12 patients with type 2 diabetes, and 12 age-matched healthy controls. From the full DTI dataset, three reduced datasets including only two or three vectors along the x- and/or y- and z-axes were built to calculate major parameters. The influence of nerve angulation and intraneural connective tissue was assessed. The area under the receiver operating characteristics curve (ROC-AUC) was used for analysis.
Simplified datasets achieved excellent diagnostic accuracy equal to DTI (ROC-AUC 0.847-0.868, p ≤ 0.005), but compared to DTI, the reduced models yielded mostly lower absolute values of DTI scalars: median fractional anisotropy (FA) ≤ 0.12; apparent diffusion coefficient (ADC) ≤ 0.25; axial diffusivity ≤ 0.96, radial diffusivity ≤ 0.07). The precision of FA and ADC with the three-vector model was closest to DTI. Intraneural connective tissue was negatively correlated with FA and ADC (r ≥ -0.49, p < 0.001). Small deviations of nerve angulation had little effect on FA accuracy.
In peripheral nerves, bulk tissue DTI metrics can be approximated with only three predefined gradient vectors along the scanner's main axes, yielding similar diagnostic accuracy as a 20-vector DTI, resulting in substantial scan time reduction.
DTI bulk tissue parameters of peripheral nerves can be calculated with only three predefined gradient vectors at similar diagnostic performance as a standard DTI but providing a substantial scan time reduction.
• In peripheral nerves, DTI parameters can be approximated using only three gradient vectors. • The simplified model achieves a similar diagnostic performance as a standard DTI. • The simplified model allows for a significant acceleration of image acquisition. • This can help to introduce multi-b-value DTI techniques into clinical practice.
与大脑不同,周围神经内的纤维具有明显的单方向性结构,这使得复杂的多维梯度向量方案在弥散张量成像(DTI)中变得没有必要。本概念验证研究旨在探讨简化梯度向量方案在外周神经 DTI 中的诊断效用。
在 10 名健康志愿者、12 名 2 型糖尿病患者和 12 名年龄匹配的健康对照者中,使用 20 个向量的 DTI(DTI)进行了胫骨神经的 3 特斯拉磁共振神经成像。从完整的 DTI 数据集中,构建了仅包含 x、y 和 z 轴上的两个或三个向量的三个简化数据集,以计算主要参数。评估了神经角度和神经内结缔组织的影响。使用受试者工作特征曲线下面积(ROC-AUC)进行分析。
简化数据集达到了与 DTI 相当的出色诊断准确性(ROC-AUC 0.847-0.868,p≤0.005),但与 DTI 相比,简化模型的 DTI 标量的绝对值大多较低:中位数各向异性分数(FA)≤0.12;表观扩散系数(ADC)≤0.25;轴向弥散度≤0.96,径向弥散度≤0.07)。三向量模型的 FA 和 ADC 的精度最接近 DTI。神经内结缔组织与 FA 和 ADC 呈负相关(r≥-0.49,p<0.001)。神经角度的小偏差对 FA 的准确性影响不大。
在外周神经中,仅使用沿扫描仪主轴的三个预设梯度向量就可以近似估计组织整体 DTI 指标,从而获得与 20 个向量 DTI 相似的诊断准确性,但扫描时间显著减少。
外周神经的 DTI 整体组织参数仅使用三个预设梯度向量即可计算,诊断性能与标准 DTI 相似,但可显著缩短扫描时间。
•在周围神经中,仅使用三个梯度向量就可以近似估计 DTI 参数。•简化模型达到与标准 DTI 相似的诊断性能。•简化模型允许显著加速图像采集。•这有助于将多 b 值 DTI 技术引入临床实践。