Department of Neuroscience, Central Clinical School, Monash University, Melbourne, VIC, 3004, Australia.
Baker Heart and Diabetes Institute, 75 Commercial Rd, Melbourne, VIC, 3004, Australia.
Clin Auton Res. 2022 Dec;32(6):409-422. doi: 10.1007/s10286-022-00907-9. Epub 2022 Nov 21.
The neural pathways in which the brain regulates the cardiovascular system is via sympathetic and parasympathetic control of the heart and sympathetic control of the systemic vasculature. Various cortical and sub-cortical sites are involved, but how these critical brain regions for cardiovascular control are altered in healthy aging and other risk conditions that may contribute to cardiovascular disease is uncertain.
Here we review the functional and structural brain changes in healthy aging, hypertension, and atrial fibrillation - noting their potential influence on the autonomic nervous system and hence on cardiovascular control.
Evidence suggests that aging, hypertension, and atrial fibrillation are each associated with functional and structural changes in specific areas of the central nervous system involved in autonomic control. Increased muscle sympathetic nerve activity (MSNA) and significant alterations in the brain regions involved in the default mode network are commonly reported in aging, hypertension, and atrial fibrillation.
Further studies using functional and structural magnetic resonance imaging (MRI) coupled with autonomic nerve activity in healthy aging, hypertension, and atrial fibrillation promise to reveal the underlying brain circuitry modulating the abnormal sympathetic nerve activity in these conditions. This understanding will guide future therapies to rectify dysregulation of autonomic and cardiovascular control by the brain.
大脑通过交感和副交感神经控制心脏以及交感神经控制全身血管来调节心血管系统。涉及到各种皮质和皮质下部位,但在健康衰老和其他可能导致心血管疾病的风险条件下,这些对心血管控制至关重要的大脑区域如何发生变化尚不确定。
在这里,我们回顾了健康衰老、高血压和心房颤动中大脑的功能和结构变化 - 注意它们对自主神经系统的潜在影响,从而对心血管控制的影响。
有证据表明,衰老、高血压和心房颤动与自主控制相关的中枢神经系统特定区域的功能和结构变化均有关。在健康衰老、高血压和心房颤动中,通常会报告肌肉交感神经活动(MSNA)增加和涉及默认模式网络的大脑区域的显着改变。
在健康衰老、高血压和心房颤动中使用功能和结构磁共振成像(MRI)以及自主神经活动的进一步研究有望揭示调节这些情况下异常交感神经活动的大脑电路。这种理解将指导未来的治疗方法,以纠正大脑对自主和心血管控制的失调。