Current status of nuclear cardiology in the Russian Federation
暂无分享,去创建一个
E. Karpov | V. Sergienko | A. Ansheles | S. Sazonova | V. Chernov | V. Shipulin | Z. Vesnina | N. E. Kudryashova | Y. Varlamova | A. Mochula | A. Kokov | I. Shurupova | I. P. Aslanidi | G. A. Davydov | S. Minin | I. Znamensky | V. Sukhov | D. Ryzhkova | N. Valiullina | M. Vakhromeeva | M. Smolyarchuk | V. Udodov | S. G. Mirzoyants | E. V. Starikova | K. V. ZavadovskyZavadovsky | Z. Anashbaev | Yuliya N. Ilyushenkova | V. Volodina | E. A. Drizner | A. A. Sadchikov | G. B. Sayfullina | S. V. Talantov | M. V. Tempel | D. Teffenberg | I. Tomashevsky | T. Trifonova
[1] S. Massalha,et al. Low-dose dobutamine stress gated blood pool SPECT assessment of left ventricular contractile reserve in ischemic cardiomyopathy: a feasibility study , 2021, European Journal of Nuclear Medicine and Molecular Imaging.
[2] J. McMurray,et al. 2021 ESC Guidelines for the diagnosis and treatment of acute and chronic heart failure. , 2021, European heart journal.
[3] R. Batalov,et al. Cardiac 123I-mIBG scintigraphy for prediction of catheter ablation outcome in patients with atrial fibrillation , 2021, Journal of Nuclear Cardiology.
[4] A. Gimelli,et al. The current status of CZT SPECT myocardial blood flow and reserve assessment: Tips and tricks , 2021, Journal of Nuclear Cardiology.
[5] В. Е. Синицын,et al. Влияние первой волны пандемии новой коронавирусной инфекции (COVID-19) на объемы диагностических исследований кардиологических заболеваний в Российской Федерации: результаты Российского сегмента международного исследования INCAPS COVID под эгидой Международного агентства по атомной энергии , 2021 .
[6] E. Golukhova,et al. [18F-fluorodeoxyglucose PET/CT in the diagnosis of vascular graft infection]. , 2021, Khirurgiia.
[7] V. Shipulin,et al. Long-term prognosis of left ventricular re-remodeling after surgery of ischemic cardiomyopathy: the potential of tomographic radionuclide ventriculography , 2020 .
[8] A. Gimelli,et al. The diagnostic value of SPECT CZT quantitative myocardial blood flow in high-risk patients , 2020, Journal of Nuclear Cardiology.
[9] A. Romanov,et al. Modern possibilities of cardiovascular imaging using gamma cameras with cadmium–zinc–telluride-detectors , 2020 .
[10] R. Batalov,et al. Diagnostic Efficacy of Cardiac Scintigraphy with 99mTc-Pyrophosphate for Latent Myocardial Inflammation in Patients with Atrial Fibrillation , 2020, Cardiology research and practice.
[11] In Yan Zhang. Corrigendum. , 2020, European heart journal.
[12] Y. Lishmanov,et al. MODERN POSSIBILITIES OF SPECT FOR THE DIAGNOSIS OF INFECTIOUS ENDOCARDITIS , 2020 .
[13] V. Shipulin,et al. Evaluation of myocardial blood flow and coronary flow reserve — the physiological foundation and clinical significance of myocardial perfusion scintigraphy in the examination of patients with chronic coronary syndrome , 2020 .
[14] S. Popov,et al. [123 I-MIBG scintigraphy in the assessment of heart failure prognosis and effectiveness of cardiac resynchronization therapy]. , 2019, Kardiologiia.
[15] A. Kopp-Schneider,et al. Equilibrium radionuclide angiography: Intra- and inter-observer repeatability and reproducibility in the assessment of cardiac systolic and diastolic function , 2019, Journal of Nuclear Cardiology.
[16] Yu. N. Il’yushenkova,et al. Hybrid Imaging Techniques in the Diagnosis of Ventricular Myocardial Inflammatory Processes in Patients with Atrial Fibrillation of Unknown Etiology , 2019, Journal of radiology and nuclear medicine.
[17] E. Pokushalov,et al. [Visualisation and Radiofrequency Ablation of Sympathetic Innervation Loci in the Left Atrium in Patients with Paroxysmal Atrial Fibrillation]. , 2019, Kardiologiia.
[18] A. Gimelli,et al. Absolute myocardial blood flows derived by dynamic CZT scan vs invasive fractional flow reserve: Correlation and accuracy , 2019, Journal of Nuclear Cardiology.
[19] V. Sergienko,et al. MYOCARDIAL PERFUSION AND NEUROTROPIC SINGLE-PHOTON EMISSION COMPUTED TOMOGRAPHY FEATURES IN PATIENTS WITH PRIMARY PULMONARY HYPERTENSION , 2018, Journal of radiology and nuclear medicine.
[20] Alain Manrique,et al. First validation of myocardial flow reserve assessed by dynamic 99mTc-sestamibi CZT-SPECT camera: head to head comparison with 15O-water PET and fractional flow reserve in patients with suspected coronary artery disease. The WATERDAY study , 2018, European Journal of Nuclear Medicine and Molecular Imaging.
[21] G. Beller. Future growth and success of nuclear cardiology , 2018, Journal of Nuclear Cardiology.
[22] M. Miyagawa,et al. Estimation of myocardial flow reserve utilizing an ultrafast cardiac SPECT: Comparison with coronary angiography, fractional flow reserve, and the SYNTAX score. , 2017, International journal of cardiology.
[23] S. Popov,et al. Radionuclide Assessment of Cardiac Function and Dyssynchrony in Children with Idiopathic Ventricular Tachycardia , 2016, Pacing and clinical electrophysiology : PACE.
[24] Ran Klein,et al. Dynamic SPECT Measurement of Absolute Myocardial Blood Flow in a Porcine Model , 2014, The Journal of Nuclear Medicine.
[25] M. Travin. Cardiac radionuclide imaging to assess patients with heart failure. , 2014, Seminars in nuclear medicine.
[26] K. Zavadovsky,et al. The usefulness of gated blood pool scintigraphy for right ventricular function evaluation in pulmonary embolism patients , 2014, Annals of Nuclear Medicine.
[27] R. Batalov,et al. [Capabilities of 99mTc-pyrphotech single-photon emission computed tomography in combination with myocardial perfusion scintigraphy in the evaluation of inflammatory changes in the heart of patients with persistent atrial fibrillation]. , 2014, Terapevticheskii arkhiv.
[28] Juhani Knuuti,et al. Anatomic versus physiologic assessment of coronary artery disease. Role of coronary flow reserve, fractional flow reserve, and positron emission tomography imaging in revascularization decision-making. , 2013, Journal of the American College of Cardiology.
[29] D. Berman,et al. Temporal trends in the frequency of inducible myocardial ischemia during cardiac stress testing: 1991 to 2009. , 2013, Journal of the American College of Cardiology.
[30] S. Underwood,et al. Myocardial perfusion scintigraphy in Europe 2007: a survey of the European Council of Nuclear Cardiology , 2009, European Journal of Nuclear Medicine and Molecular Imaging.
[31] D. Le Guludec,et al. Proposal for standardization of 123I-metaiodobenzylguanidine (MIBG) cardiac sympathetic imaging by the EANM Cardiovascular Committee and the European Council of Nuclear Cardiology , 2010, European Journal of Nuclear Medicine and Molecular Imaging.
[32] M. Yacoub,et al. Myocardial sympathetic innervation and long-term left ventricular mechanical unloading. , 2010, JACC. Cardiovascular imaging.