Department of Psychiatry, University of California San Diego, La Jolla, CA 92093, USA.
Center for Behavior Genetics of Aging, University of California San Diego, La Jolla, CA 92093, USA.
Cereb Cortex. 2022 Sep 19;32(19):4191-4203. doi: 10.1093/cercor/bhab475.
The locus coeruleus (LC) is one of the earliest sites of tau pathology, making it a key structure in early Alzheimer's disease (AD) progression. As the primary source of norepinephrine for the brain, reduced LC integrity may have negative consequences for brain health, yet macrostructural brain measures (e.g. cortical thickness) may not be sensitive to early stages of neurodegeneration. We therefore examined whether LC integrity was associated with differences in cortical gray matter microstructure among 435 men (mean age = 67.5; range = 62-71.7). LC structural integrity was indexed by contrast-to-noise ratio (LCCNR) from a neuromelanin-sensitive MRI scan. Restriction spectrum imaging (RSI), an advanced multi-shell diffusion technique, was used to characterize cortical microstructure, modeling total diffusion in restricted, hindered, and free water compartments. Higher LCCNR (greater integrity) was associated with higher hindered and lower free water diffusion in multiple cortical regions. In contrast, no associations between LCCNR and cortical thickness survived correction. Results suggest lower LC integrity is associated with patterns of cortical microstructure that may reflect a reduction in cytoarchitectural barriers due to broader neurodegenerative processes. These findings highlight the potential utility for LC imaging and advanced diffusion measures of cortical microstructure in assessing brain health and early identification of neurodegenerative processes.
蓝斑(LC)是 tau 病理学最早的部位之一,使其成为阿尔茨海默病(AD)早期进展的关键结构。作为大脑去甲肾上腺素的主要来源,LC 完整性降低可能对大脑健康产生负面影响,但宏观结构脑测量(例如皮质厚度)可能对神经退行性变的早期阶段不敏感。因此,我们研究了 LC 完整性是否与 435 名男性(平均年龄 67.5 岁;范围 62-71.7 岁)的皮质灰质微观结构差异有关。LC 结构完整性通过神经黑色素敏感 MRI 扫描的对比噪声比(LCCNR)来衡量。限制谱成像(RSI)是一种先进的多壳扩散技术,用于描述皮质微观结构,对受限、受阻和自由水隔室中的总扩散进行建模。较高的 LCCNR(更高的完整性)与多个皮质区域的较高受阻和较低自由水扩散相关。相比之下,LCCNR 与皮质厚度之间没有关联在纠正后仍然存在。结果表明,LC 完整性降低与皮质微观结构模式相关,这可能反映了由于更广泛的神经退行性过程导致细胞结构屏障减少。这些发现强调了 LC 成像和皮质微观结构的先进扩散测量在评估大脑健康和早期识别神经退行性过程中的潜在效用。