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充血性心力衰竭

科研文章

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Age-Related Characteristics and Outcomes of Patients With Heart Failure With Preserved Ejection Fraction Nuclear Imaging of the Cardiac Sympathetic Nervous System: A Disease-Specific Interpretation in Heart Failure The pyruvate-lactate axis modulates cardiac hypertrophy and heart failure Natriuretic Peptide-Guided Heart Failure Therapy After the GUIDE-IT Study Heart Failure Outcomes With Volume-Guided Management Heart Failure and Atrial Fibrillation, Like Fire and Fury The prevalence and importance of frailty in heart failure with reduced ejection fraction - an analysis of PARADIGM-HF and ATMOSPHERE Atrial Fibrillation and the Prognostic Performance of Biomarkers in Heart Failure SPECT and PET in ischemic heart failure Is Acute heart failure a distinctive disorder? An analysis from BIOSTAT-CHF

Review ArticleVolume 13, Issue 4, April 2020

JOURNAL:JACC: Cardiovascular Imaging Article Link

Nuclear Imaging of the Cardiac Sympathetic Nervous System: A Disease-Specific Interpretation in Heart Failure

JGE Zelt, RA deKemp, BH Rotstein et al. Keywords: positron emissions tomography; sympathetic nervous system; sympathetic nervous system radioisotopes

ABSTRACT

Abnormalities in the cardiac sympathetic nervous system have been documented in various heart diseases and have been directly implicated in their pathogenesis and disease progression. Noninvasive techniques using single-photon-emitting radiotracers for planar scintigraphy and single-photon emission computed tomography, and positron-emitting tracers for positron emissions tomography, have been used to characterize the cardiac sympathetic nervous system with norepinephrine analogs [123I]meta-iodobenzylguanidine for planar and single-photon emission computed tomography imaging and [11C]meta-hydroxyephedrine for positron emissions tomography. Their usefulness in prognostication and risk stratification for cardiac events has been demonstrated. This review bridges basic and clinical research and focuses on applying an understanding of tracer kinetics and neuronal biology, to aid in the interpretation of nuclear imaging of cardiac sympathetic innervation.