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纯球部型和纯脊髓型肌萎缩侧索硬化症患者脑代谢的差异:一项 2-[F]FDG-PET 研究。

Brain metabolic differences between pure bulbar and pure spinal ALS: a 2-[F]FDG-PET study.

机构信息

ALS Centre, 'Rita Levi Montalcini' Department of Neuroscience, University of Turin, Via Cherasco 15, 10126, Turin, Italy.

Azienda Ospedaliero-Universitaria Città Della Salute E Della Scienza Di Torino, SC Neurologia 1U, Turin, Italy.

出版信息

J Neurol. 2023 Feb;270(2):953-959. doi: 10.1007/s00415-022-11445-9. Epub 2022 Nov 2.

Abstract

BACKGROUND

MRI studies reported that ALS patients with bulbar and spinal onset showed focal cortical changes in corresponding regions of the motor homunculus. We evaluated the capability of brain 2-[F]FDG-PET to disclose the metabolic features characterizing patients with pure bulbar or spinal motor impairment.

METHODS

We classified as pure bulbar (PB) patients with bulbar onset and a normal score in the spinal items of the ALSFRS-R, and as pure spinal (PS) patients with spinal onset and a normal score in the bulbar items at the time of PET. Forty healthy controls (HC) were enrolled. We compared PB and PS, and each patient group with HC. Metabolic clusters showing a statistically significant difference between PB and PS were tested to evaluate their accuracy in discriminating the two groups. We performed a leave-one-out cross-validation (LOOCV) over the entire dataset. Four classifiers were considered: support vector machines (SVM), K-nearest neighbours, linear classifier, and decision tree. Then, we used a separate test set, including 10% of patients, with the remaining 90% composing the training set.

RESULTS

We included 63 PB, 271 PS, and 40 HC. PB showed a relative hypometabolism compared to PS in bilateral precentral gyrus in the regions of the motor cortex involved in the control of bulbar function. SVM showed the best performance, resulting in the lowest error rate in both LOOCV (4.19%) and test set (9.09 ± 2.02%).

CONCLUSIONS

Our data support the concept of the focality of ALS onset and the use of 2-[F]FDG-PET as a biomarker for precision medicine-oriented clinical trials.

摘要

背景

MRI 研究报告称,以球部和脊髓起病的 ALS 患者在运动同形同构的相应区域显示出局灶性皮质变化。我们评估了脑 2-[F]FDG-PET 揭示以纯球部或纯脊髓运动障碍为特征的患者的代谢特征的能力。

方法

我们将以球部起病且 ALSFRS-R 的脊髓项目评分正常的患者分类为纯球部(PB)患者,以及以脊髓起病且 PET 时球部项目评分正常的患者分类为纯脊髓(PS)患者。纳入 40 名健康对照者(HC)。我们比较了 PB 和 PS 以及每个患者组与 HC。对在 PB 和 PS 之间显示出统计学差异的代谢簇进行测试,以评估其区分两组的准确性。我们对整个数据集进行了一次留一法交叉验证(LOOCV)。考虑了 4 种分类器:支持向量机(SVM)、K-最近邻、线性分类器和决策树。然后,我们使用了一个包含 10%患者的单独测试集,其余 90%构成训练集。

结果

我们纳入了 63 名 PB、271 名 PS 和 40 名 HC。与 PS 相比,PB 在涉及控制球部功能的运动皮层的双侧中央前回显示出相对低代谢。SVM 表现出最佳性能,在 LOOCV(4.19%)和测试集(9.09±2.02%)中均产生了最低的错误率。

结论

我们的数据支持 ALS 发病的局灶性概念和将 2-[F]FDG-PET 用作精准医学导向临床试验的生物标志物的概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd44/9886651/0bfcb53def48/415_2022_11445_Fig1_HTML.jpg

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