University of California Los Angeles (UCLA) Cardiac Arrhythmia Center, David Geffen School of Medicine, UCLA, Los Angeles, CA 90095, USA; UCLA Neurocardiology Research Program of Excellence, UCLA, Los Angeles, CA 90095, USA.
University of California Los Angeles (UCLA) Cardiac Arrhythmia Center, David Geffen School of Medicine, UCLA, Los Angeles, CA 90095, USA; UCLA Neurocardiology Research Program of Excellence, UCLA, Los Angeles, CA 90095, USA.
Card Electrophysiol Clin. 2024 Sep;16(3):229-237. doi: 10.1016/j.ccep.2024.01.002. Epub 2024 Mar 4.
Cardiac control is mediated via nested-feedback reflex control networks involving the intrinsic cardiac ganglia, intra-thoracic extra-cardiac ganglia, spinal cord, brainstem, and higher centers. This control system is optimized to respond to normal physiologic stressors; however, it can be catastrophically disrupted by pathologic events such as myocardial ischemia. In fact, it is now recognized that cardiac disease progression reflects the dynamic interplay between adverse remodeling of the cardiac substrate coupled with autonomic dysregulation. With advances in understanding of this network dynamic in normal and pathologic states, neuroscience-based neuromodulation therapies can be devised for the management of acute and chronic cardiac pathologies.
心脏控制是通过嵌套反馈反射控制网络介导的,涉及内在心脏神经节、胸腔内心脏外神经节、脊髓、脑干和高级中枢。这个控制系统经过优化,可以应对正常的生理应激;然而,它可能会被心肌缺血等病理事件灾难性地破坏。事实上,现在人们认识到,心脏疾病的进展反映了心脏基质的不利重构与自主神经调节失调之间的动态相互作用。随着对正常和病理状态下这个网络动态的理解的进步,可以设计基于神经科学的神经调节疗法来治疗急性和慢性心脏病理。