Sissons Claire, Saeed Fiza, Carter Caroline, Lee Kathy, Kerr Kristen, Shahdadian Sadra, Liu Hanli
Department of Bioengineering, University of Texas at Arlington, Arlington, TX 76019, USA.
School of Social Work, University of Texas at Arlington, Arlington, TX 76019, USA.
Bioengineering (Basel). 2023 Nov 20;10(11):1336. doi: 10.3390/bioengineering10111336.
A recent study demonstrated that noninvasive measurements of cortical hemodynamics and metabolism in the resting human prefrontal cortex can facilitate quantitative metrics of unilateral mitochondrial-hemodynamic coupling and bilateral connectivity in infraslow oscillation frequencies in young adults. The infraslow oscillation includes three distinct vasomotions with endogenic (E), neurogenic (N), and myogenic (M) frequency bands. The goal of this study was to prove the hypothesis that there are significant differences between young and older adults in the unilateral coupling (uCOP) and bilateral connectivity (bCON) in the prefrontal cortex. Accordingly, we performed measurements from 24 older adults (67.2 ± 5.9 years of age) using the same two-channel broadband near-infrared spectroscopy (bbNIRS) setup and resting-state experimental protocol as those in the recent study. After quantification of uCOP and bCON in three E/N/M frequencies and statistical analysis, we demonstrated that older adults had significantly weaker bilateral hemodynamic connectivity but significantly stronger bilateral metabolic connectivity than young adults in the M band. Furthermore, older adults exhibited significantly stronger unilateral coupling on both prefrontal sides in all E/N/M bands, particularly with a very large effect size in the M band (>1.9). These age-related results clearly support our hypothesis and were well interpreted following neurophysiological principles. The key finding of this paper is that the neurophysiological metrics of uCOP and bCON are highly associated with age and may have the potential to become meaningful features for human brain health and be translatable for future clinical applications, such as the early detection of Alzheimer's disease.
最近的一项研究表明,对静息状态下人类前额叶皮质的皮质血流动力学和代谢进行无创测量,有助于获得年轻成年人低频振荡频率下单侧线粒体-血流动力学耦合和双侧连通性的定量指标。低频振荡包括三种不同的血管运动,具有内源性(E)、神经源性(N)和肌源性(M)频段。本研究的目的是验证这一假设:年轻成年人与年长者在前额叶皮质的单侧耦合(uCOP)和双侧连通性(bCON)方面存在显著差异。因此,我们使用与最近的研究相同的双通道宽带近红外光谱(bbNIRS)设置和静息状态实验方案,对24名年长者(67.2±5.9岁)进行了测量。在对三个E/N/M频率下的uCOP和bCON进行量化并进行统计分析后,我们发现,在M频段,年长者的双侧血流动力学连通性明显弱于年轻成年人,但双侧代谢连通性明显强于年轻成年人。此外,在所有E/N/M频段,年长者双侧前额叶的单侧耦合均明显更强,尤其是在M频段效应量非常大(>1.9)。这些与年龄相关的结果明确支持了我们的假设,并根据神经生理学原理得到了很好的解释。本文的关键发现是,uCOP和bCON的神经生理学指标与年龄高度相关,可能有潜力成为人类大脑健康的有意义特征,并可转化为未来的临床应用,如阿尔茨海默病的早期检测。