Department of Cardiology, Heart Lung Center, Leiden University Medical Center, Albinusdreef 2, 2300 RC, Leiden, The Netherlands.
Turku PET Center, Turku University Hospital, Turku, Finland.
Curr Cardiol Rep. 2020 Nov 27;23(1):4. doi: 10.1007/s11886-020-01432-9.
The present article reviews the pathophysiology of cardiac sympathetic denervation, the principles of positron emission tomography (PET) imaging of the sympathetic innervation of the heart and its potential clinical role, based on current and expected future evidence.
Imaging of cardiac sympathetic denervation can be performed with radiolabeled noradrenaline analogues, e.g., C-hydroxyephedrine. A greater burden of sympathetic denervation carries prognostic significance, e.g., in patients with ischemic cardiomyopathy and a left ventricular ejection fraction ≤ 35%, who are more likely to experience sudden cardiac death. Abnormalities of sympathetic cardiac innervation have been demonstrated in hypertrophic, dilated, and arrhythmic right ventricular cardiomyopathies, and may be helpful in better phenotyping patients who will benefit from device therapy, e.g., cardiac resynchronization and implantable cardioverter-defibrillator implantation. The results of future trials, e.g., the Prediction of Arrhythmic Events with Positron Emission Tomography (PAREPET) II study, are awaited to inform on the role of PET cardiac sympathetic imaging in the selection of device therapy. PET cardiac sympathetic innervation imaging allows visualization and quantification of autonomic denervation secondary to various cardiac diseases, and has significant potential to influence clinical decision-making, e.g., the titration of pharmacotherapy and more directed selection of candidates for device implantation.
本文基于现有证据和预期的未来证据,回顾心脏去交感神经支配的病理生理学、心脏交感神经支配的正电子发射断层扫描(PET)成像原理及其潜在的临床作用。
可以使用放射性标记的去甲肾上腺素类似物(例如 C-羟基麻黄碱)对心脏去交感神经支配进行成像。更大的去交感神经支配负担具有预后意义,例如在左心室射血分数≤35%的缺血性心肌病和更有可能发生心脏性猝死的患者中。在肥厚型、扩张型和心律失常性右心室心肌病中已经证明了交感神经心脏支配的异常,并且可能有助于更好地对将从心脏再同步治疗和植入式心脏除颤器植入中获益的患者进行表型分析。未来试验的结果,例如正电子发射断层扫描预测心律失常事件(PAREPET)II 研究,将有助于确定 PET 心脏交感神经成像在选择心脏装置治疗中的作用。PET 心脏自主神经支配成像可用于可视化和量化各种心脏疾病引起的自主神经支配丧失,并具有重大的影响临床决策的潜力,例如药物治疗的滴定和更有针对性地选择心脏装置植入的候选者。