Journal of Nuclear Cardiology

Papers
(The median citation count of Journal of Nuclear Cardiology is 1. The table below lists those papers that are above that threshold based on CrossRef citation counts [max. 250 papers]. The publications cover those that have been published in the past four years, i.e., from 2021-02-01 to 2025-02-01.)
ArticleCitations
Expanding best practices in nuclear cardiology: A blueprint for growth71
The time is now: Identifying optimal imaging strategies to monitor cardiac sarcoidosis activity56
AHL Amyloidosis Mimicking ATTR on Cardiac PYP Scan: A Diagnostic Challenge55
Cardiac amyloidosis characterization by kinetic model fitting on [18F]florbetaben PET images44
Recent clinical trials support continued emphasis on patient-first over modality-first approaches to initial test selection in patients with stable ischemic heart disease43
The rate of myocardial perfusion recovery after steroid therapy and its implication for cardiac events in cardiac sarcoidosis and primarily preserved left ventricular ejection fraction41
Mitochondrial dysfunction in heart failure. Lessons from a hereditary mitochondrial disease41
Fluorine-18 fluorodeoxyglucose positron emission tomography-based textural features for prediction of event prone carotid atherosclerotic plaques39
Diagnostic safety of a machine learning-based automatic patient selection algorithm for stress-only myocardial perfusion SPECT37
Comparison of positional artifacts in myocardial perfusion imaging in supine and semi-reclining position using dedicated D-SPECT cardiac camera: validation using CT based attenuation correction37
Machine learning based model to diagnose obstructive coronary artery disease using calcium scoring, PET imaging, and clinical data34
Myocardial scar reduction after cardiac resynchronization therapy assessed by gated myocardial perfusion SPECT33
Papillary muscle ischemia and myocardial blood flow on N13-ammonia positron emission tomography myocardial perfusion imaging33
Technetium-99m-3,3-diphosphono-1,2-2 propanodicarboxylic acid (DPD) in AL cardiac amyloidosis32
Spotlight on left ventricular dyssynchrony: Part 3: Diagnostic value and therapeutic guidance31
President’s message: ASNC's global message30
Perspective and future direction of intraventricular mechanical dyssynchrony assessment30
Vicarious excretion of 99mTc-pyrophosphate in the gallbladder29
The future of PET imaging: Looking forward to more choices and increased precision with the use of oxygen-15 water28
Expanding the repertoire of 18F-labeled PET MPI radiotracers27
How might coronary sinus reducer treatment change myocardial perfusion?27
Shortening the acquisition times of CZT SPECT imaging for measurement of myocardial blood flow27
Positron emission tomography assessment of coronary microvascular angina in patients with angina and nonobstructive coronary artery disease26
Normal imaging findings after aortic valve implantation on 18F-Fluorodeoxyglucose positron emission tomography with computed tomography26
Editorial Board26
Conversion of PYP/HMDP scanning on sequential imaging in a patient with a TTR gene mutation25
Clinical significance of corrected relative flow reserve derived from 13N-ammonia positron emission tomography combined with coronary computed tomography angiography24
Accuracy of 18F-FDG PET/CT in patients with the suspicion of cardiac implantable electronic device infections23
Multimodality evaluation of Takotsubo cardiomyopathy in an isolated single coronary artery anomaly23
Raymond J Gibbons, MSc, MD (born 1949)23
Resting myocardial blood flow: To correct, or not to correct, that is the question!23
Autonomic denervation, myocardial hypoperfusion and fibrosis may predict ventricular arrhythmia in the early stages of Chagas cardiomyopathy23
Transthyretin Cardiac Amyloidosis Scintigraphy Using Planar D-SPECT on Dedicated Cardiac CZT Camera22
Diagnostic accuracy of bone scintigraphy imaging for transthyretin cardiac amyloidosis: systematic review and meta-analysis22
Rationale and design of the RAPID-WATER-FLOW trial: Radiolabeled perfusion to identify coronary artery disease using water to evaluate responses of myocardial FLOW21
A cardiovascular risk model validated in Japan applied to an Italian cohort: Procedere con prudenza21
Diagnostic testing in cardiac sarcoidosis: what comes first?21
A level of confidence: beta-hydroxybutyrate and myocardial glucose uptake suppression on 18F-FDG PET imaging20
Effects of cardiac rehabilitation with and without meditation on myocardial blood flow using quantitative positron emission tomography: A pilot study20
18F-FDG PET imaging of myocardial inflammation and viability following experimental infarction and anti-inflammatory treatment with compound MCC95020
Integration of quantitative absolute myocardial blood flow estimates from dynamic CZT-SPECT improves the detection of coronary artery disease20
Added value gated PET with phase analysis for the detection of scar burden and prognostication in cardiac sarcoidosis?19
Future of nuclear cardiology is bright: Promise of cardiac PET/CT and artificial intelligence19
Incremental value of left ventricular shape parameters measured by gated SPECT MPI in predicting the super-response to CRT19
Using a sledgehammer to crack a nut: The burdensome appropriate use criteria program19
Image-guided device therapy: An opportunity for personalized medicine19
The long fight against motion artifacts in cardiac PET19
Outcomes of patients with moderate-to-severe Ischemia excluded from the ischemia trial19
Reasons for discordance between positron emission tomography (PET) myocardial perfusion imaging (MPI) results and subsequent management19
Parameters of left ventricular systolic and diastolic dyssynchrony on radionuclide imaging to improve cardiac resynchronization therapy in heart failure patients with dilated cardiomyopathy19
Large sliding hiatus hernia: incidental finding in myocardial perfusion scintigraphy performed with SPECT/CT technique18
Autonomic disorders and myocardial 123I-metaiodobenzylguanidine scintigraphy in Huntington’s disease18
Comparison of left ventricle mechanical dyssynchrony parameters in ischemic and non-ischemic patients using 13N-NH3 PET/CT18
Extra-cardiac uptake on technetium-99m pyrophosphate (Tc-99m PYP) scan: not just a matter of the heart18
Impact of ECG gating methods on the assessment of left ventricular cardiac function using PET/MRI17
Gating failure can result in underestimation of cardiac function in myocardial perfusion scintigraphy17
Left ventricular ejection fraction, myocardial blood flow and hemodynamic variables in adenosine and regadenoson vasodilator 82-Rubidium PET16
Multimodality imaging of simultaneous occurrence of cardiac transthyretin amyloidosis and cardiac sarcoidosis16
Detection and correction of patient motion in dynamic 15O-water PET MPI16
Assessment of left and right ventricular functional parameters using dynamic dual-tracer [13N]NH3 and [18F]FDG PET/MRI16
Effect of PET-CT misalignment on the quantitative accuracy of cardiac 15O-water PET15
A positive Tc-99m PYP scan in a patient with cardiac sarcoidosis15
Effect of temporal sampling protocols on myocardial blood flow measurements using Rubidium-82 PET15
Potential utility of SPECT/CT with 99mTc-Tektrotyd for imaging of post-myocardial infarction inflammation15
Evaluating the prognostic effectiveness of stress single photon emission computed tomography vs positron emission tomography myocardial perfusion imaging14
Interpretation of SPECT wall motion with deep learning14
Parametric 82Rb-chloride positron emission tomography imaging of myocardial blood flow: Ready for clinical prime time?14
82Rb PET/CT left ventricular mass computations14
PET myocardial perfusion imaging: Trends, challenges, and opportunities14
Transmural perfusion: A new direction for myocardial blood flow14
Initial clinical experience of N13-ammonia myocardial perfusion PET/CT using a compact superconducting production system13
18F-sodium fluoride PET/MRI myocardial imaging in patients with suspected cardiac amyloidosis13
Innovative atherosclerosis imaging using 18F-NaF PET/CT: Its clinical potential13
Heart–brain axis: Pushing the boundaries of cardiovascular molecular imaging13
2020 vision: New insights on hypoxia imaging to assess cardiac and extra-cardiac active inflammatory sarcoidosis13
Diagnostic performance of quantitative and qualitative parameters for the diagnosis of aortic graft infection using [18F]-FDG PET/CT13
Vascular uptake on 18F-sodium fluoride positron emission tomography: precursor of vascular calcification?13
Perfusion defect with characteristic anterior wall indentation on myocardial perfusion imaging caused by a large left ventricular aneurysm13
Myocardial perfusion years after radiation therapy for left-sided breast cancer: Normal or abnormal? This is the question12
What is this image? 2021 image 2 result12
Call for manuscripts for themed issue on coronary microvascular disease12
Optimal 99mTc activity ratio in the single-day stress-rest myocardial perfusion imaging protocol: A multi-SPECT phantom study12
Accounting for residual activity in the estimate of myocardial blood flow with PET12
Reduced acquisition time for thallium myocardial perfusion imaging with large field cadmium-zinc-telluride SPECT/CT cameras: An equivalence study12
Imaging cellular activity and proliferation in the aortic wall12
The prognostic value of 123I-mIBG SPECT cardiac imaging in heart failure patients: a systematic review12
Longitudinal evaluation of diastolic dyssynchrony by SPECT gated myocardial perfusion imaging early after acute myocardial infarction and the relationship with left ventricular remodeling progression 12
Polarity status of trigger signal during ECG-gating affects parameters of LV function in gated myocardial perfusion SPECT12
Quantitative myocardial perfusion response to adenosine and regadenoson in patients with suspected coronary artery disease12
Time is Myocardium, but Who Does Best?11
Incidental scan findings in cardiac amyloid scintigraphy11
Cardiovascular disease in the literature: A selection of recent original research papers11
CME Instructions: Efficiency of tetrofosmin versus sestamibi achieved through shorter injection-to-imaging times—A systematic review of the literature11
The Mediastinum is LIT11
Low-dose gated bloodpool SPECT: Is it time to make the shift?11
Dynamic CZT-SPECT in coronary artery disease: Where are we now?11
Using standardized uptake values in pyrophosphate imaging11
Are we good enough in the evaluation of MPI using Rubidium82 with PMT PET/CT? A comparison to SiPM PET/CT11
The eye cannot see what the mind does not know11
Update on guidance and best practices for nuclear cardiology laboratories during the coronavirus disease 2019 (COVID-19) pandemic: Emphasis on transition to chronic endemic state. An information state11
Serial changes in cardiac sympathetic nervous function after transcatheter aortic valve replacement: A prospective observational study using 123I-meta-iodobenzylguanidine imaging11
Assessment of myocardial viability using a [15O]-water perfusion PET: Towards a one-stop shop?11
Interatrial septal 99mTc-pyrophosphate uptake and reduced strain in wild-type transthyretin amyloid cardiomyopathy11
CME INSTRUCTIONS: Diagnostic accuracy of dynamic CZT-SPECT in coronary artery disease: A systematic review and meta-analysis11
Invasive vs non-invasive testing10
Transient multifocal pulmonary uptake of 99mTc-sestamibi in myocardial perfusion imaging: Iatrogenic clot artifact10
Cardiovascular disease in the literature: A selection of recent original research papers10
JNC Awards10
Exercise ECG must be considered in conjunction with conventional SPECT10
Relationship between impaired myocardial blood flow by positron emission tomography and low-attenuation plaque burden and pericoronary adipose tissue attenuation from coronary computed tomography: Fro10
In 2023 PET myocardial perfusion imaging is preferred to invasive coronary angiography for the initial work-up of a symptomatic patient with a high coronary artery calcium score10
In the thick of it: highlighting the importance of SPECT imaging10
Theme papers10
Cardiac sarcoidosis cases from a busy nuclear cardiology laboratory10
Myocardial fibroblast activation imaging in light chain cardiac amyloidosis10
18F-FDG PET/CT assisted exclusion of cardiac device-related infective endocarditis10
Cardiac imaging for the assessment of patients being evaluated for liver transplantation10
Predictive value of incidental right ventricular abnormalities identified on SPECT for mortality and pulmonary hypertension10
Inflammatory response of Teflon felt strip 41 years after surgical repair for Ebstein’s anomaly10
Utility of very long fasting to detect myocardial inflammation in cardiac sarcoidosis10
Serial Tc-99m MDP scintigraphy demonstrating increasing cardiac uptake over time in a patient with light-chain cardiac amyloidosis10
Asymptomatic STEMI during PET stress testing: First report in a patient with heart transplant10
Is Cardiac Shock Wave Therapy an Option for the Treatment of Myocardial Ischemia in Patients with Refractory Angina?10
Early prediction of chemotherapy-induced cardiotoxicity10
Review of cardiovascular imaging in the Journal of Nuclear Cardiology 2022: positron emission tomography, computed tomography, and magnetic resonance10
Increasing frequency of dyspnea among patients referred for cardiac stress testing10
Quantitative single photon emission computed tomography derived standardized uptake values on 99mTc-PYP scan in patients with suspected ATTR cardiac amyloidosis9
A new method to recommend left ventricular lead positions for improved CRT volumetric response and long-term prognosis9
What do changes in myocardial bone-avid radiotracer uptake mean in transthyretin cardiac amyloidosis?9
Comparison of myocardial blood flow and flow reserve with dobutamine and dipyridamole stress using rubidium-82 positron emission tomography9
Diagnosis of diffuse ischemia with SPECT relative perfusion imaging: How to eat soup with a fork?9
Two autopsy cases of wild-type transthyretin cardiac amyloidosis who died 10 days after technetium-99m-pyrophosphate scintigraphy9
The journey to exceptional imaging: Three steps we all must take9
18F-FDG PET/CT identifying cardiac abscess formation prior to cardiac CT9
Investigating vascular diseases in people living with HIV by nuclear imaging9
External validation of the CRAX2MACE model9
Left ventricular strain analysis by positron emission tomography: Beyond myocardial perfusion9
Long-term intense FDG uptake in a non-infected prosthetic aortic heart valve implanted 18 years ago9
Focal reduction in left ventricular 123I-metaiodobenzylguanidine uptake and impairment in systolic function in patients with Anderson-Fabry disease9
Regional variation in technetium pyrophosphate (PYP) uptake in transthyretin cardiac amyloidosis (ATTR-CA) and concomitant myocardial infarction: A case series9
68Ga-FAPI PET/CT for molecular assessment of fibroblast activation in right heart in pulmonary arterial hypertension: a single-center, pilot study9
A preliminary study of relationship among the degree of internal carotid artery stenosis, wall shear stress on MR angiography and 18F-FDG uptake on PET/CT9
Acute intramural hematoma of the ascending aorta discovered on myocardial perfusion SPECT9
Coronary microvascular dysfunction post acute myocardial infarction9
Importance of individual patient characteristics when assessing the ability of cardiac adrenergic imaging to guide ICD use9
Quantitative clinical nuclear cardiology, part 2: Evolving/emerging applications9
Hybrid positron emission tomography and magnetic resonance imaging in carotid atherosclerosis: Not ready for prime time?9
A method using deep learning to discover new predictors from left-ventricular mechanical dyssynchrony for CRT response9
Time-related aortic inflammatory response, as assessed with 18F-FDG PET/CT, in patients hospitalized with severely or critical COVID-19: the COVAIR study9
Increasing angular sampling through deep learning for stationary cardiac SPECT image reconstruction9
CME INSTRUCTIONS: Splenic switch-off in [15O]H2O-positron emission tomography myocardial perfusion imaging using parametric blood flow images9
CME INSTRUCTIONS: The current status of CZT SPECT myocardial blood flow and reserve assessment: Tips and tricks9
Is dyspnea the new angina? The ever-changing profile of patients referred for CAD evaluation9
Tricked by transient ischemic dilation: A case of hypertrophic cardiomyopathy9
Hybrid Positron emission tomography/magnetic resonance imaging in viability assessment9
Proliferation PET tracer 11C-4DST PET/CT depicts hibernating myocardium9
Diagnostic accuracy of dynamic CZT-SPECT in coronary artery disease. A systematic review and meta-analysis9
The practicalities of COVID’s impact on nuclear cardiology8
The diagnostic value of FDG PET/CT in Takayasu arteritis8
Large-vessel vasculitis with persistent exertional dyspnea in a 75-year-old woman8
30 years of innovation: are you ready for a challenge?8
18F-FDG PET/CT detected mediastinal small-cell neuroendocrine carcinoma with all cardiac cavities metastases8
Hemiplegic migraine episode triggered by regadenoson8
The role of coronary angioscopy and FDG-PET/CTA in interventional therapy8
Potential of 18F-FDG PET to evaluate the cardiocerebral interaction8
Imaging artifact and PYP imaging8
Asystole following Regadenoson administration: Review of literature, risk factors and management8
The value of 18F-FDG PET/CT in two cases of Primary Pericardial Mesothelioma8
Non-invasive ischemic evaluation in an aging population of transposition of great arteries patients with atrial switch procedure8
Normal myocardial perfusion despite a very high coronary calcium score8
An editorial farewell: Ready to pass the baton8
Vascular/perivascular inflammation in IgG4-related disease8
The current status of CZT SPECT myocardial blood flow and reserve assessment: Tips and tricks8
13N-Ammonia myocardial blood flow quantitation in patient with aneurismal coronary artery disease8
Quantitative Assessment of Cardiac Hypermetabolism and Perfusion for Diagnosis of Cardiac Sarcoidosis8
Defining the role for PET myocardial blood flow early post cardiac transplant8
Meditation in cardiac rehabilitation: Should we be thinking about it?8
Combining myocardial perfusion imaging with coronary artery calcium scoring: The time is NOW!8
Quantification of intramyocardial blood volume using 99mTc-RBC SPECT/CT: a pilot human study8
What is This Image? 2023: Image 58
Aortic 18F-sodium fluoride imaging7
Use of positron emission tomography for the diagnosis of immune-checkpoint inhibitor| myocarditis7
Identifying the leukocyte uptake pattern of inflammation imaging agents: Current limitations and potential impact7
Assessment of therapeutic effects of statin on cardiac sympathetic nerve activity after reperfusion therapy in patients with first ST-segment elevation myocardial infarction and normal low-density lip7
A vessel of progress: Aortic microcalcification activity for the quantification of 18F-NaF uptake in the thoracic aorta7
Novel dietary protocol prior to 18F-fluorodeoxyglucose positron emission tomography to evaluate for cardiac sarcoidosis7
Evaluation of a Computational Strategy To Personalize Myocardial Perfusion SPECT Acquisition Protocols Using Clinical Data From Female Patients With Large Breasts7
Optimizing patient centered care in the cardiac intensive care unit: Harness the safety, effectiveness, and incremental value of radionuclide perfusion, function, and molecular imaging7
ASNC2024 Author Index7
Prognostic value of absent left ventricular ejection fraction reserve with regadenoson SPECT MPI7
Response to Letter to the Editor7
A window into the microvasculature: Retinal vascularity and myocardial blood flow7
Prevalence and clinical significance of incidental findings on CT attenuation correction for myocardial perfusion imaging7
Head-to-head comparison of a CZT-based all-purpose SPECT camera and a dedicated CZT cardiac device for myocardial perfusion and functional analysis7
18F-FDG PET/CT and radiolabeled leukocyte SPECT/CT imaging for the evaluation of cardiovascular infection in the multimodality context7
Myocardial salvage after ST-segment-elevation myocardial infarction: comparison between prasugrel and clopidogrel in the presence or absence of high-residual platelet reactivity7
Revisiting the relevance of the 3-month safety period in the evaluation of prosthetic valve endocarditis with FDG-PET/CT7
Regadenoson myocardial perfusion imaging predicts prognosis in patients with either left bundle branch block or a ventricular paced rhythm7
18F-sodium fluoride: An old tracer with a new promising clinical application7
[18F]FDG and [18F]NaF as PET markers of systemic atherosclerosis progression: A longitudinal descriptive imaging study in patients with type 2 diabetes mellitus7
Automated Segmentation of Cardiac Inflammatory FDG PET Using a 3D-UNET Deep Learning Model7
Cardiac PET/CT Assessment Results of Patients in End-Stage Renal Patients Are Associated With Renal Transplant and Subsequent Death7
Prognostic Value of PET-Based Measurements of LV Hypertrophy in Suspected CAD7
Role of 18F-FDG PET/CT imaging in cardiac and pericardial masses7
Early Evaluation of 99mTc-Labeled Peptide p5+14 for the Detection of Cardiac Amyloidosis Using SPECT/CT and Planar Gamma Scintigraphic Imaging7
Potential application of 68Ga-FAPI PET/CT for diagnosing cardiac sarcoidosis7
Molecular Imaging of Fibroblast Activation in Lower Extremity Skeletal Muscles Using a 99mTc-Labeled Inhibitor of Fibroblast Activation Protein in Porcine Model of Peripheral Artery Disease7
President’s message: Enhancing PatientFirst imaging through collaboration between nurses and physicians in nuclear cardiology7
Communication, it is all about improving patients’ care7
125I-labeled 2-[4-(2-iodophenyl)piperidino]cyclopentanol (125I-OI5V) imaging visualized augmented sigma-1 receptor expression according to the severity of myocardial ischemia7
Deep-learning-based methods of attenuation correction for SPECT and PET7
Mechanical dyssynchrony & CRT: Is it time for guideline updates?7
Added value of 18F-FDG-PET/CT and cardiac CTA in suspected transcatheter aortic valve endocarditis7
PET 18F-flurpridaz quantitative measurements of myocardial blood flow: Added value for diagnosis of coronary artery disease? Of course!7
CMR quantitative measurements of myocardial blood flow: Not ready for routine clinical application7
Promises and pitfalls of relying on angiography-derived indexes to identify myocardial ischemia: A tale of Romulus and Remus7
Comparison of 68Ga-FAPI imaging and cardiac magnetic resonance in detection of myocardial fibrosis in a patient with chronic thromboembolic pulmonary hypertension7
Enhanced Risk Prediction for Cardiac PET/CT Using Cardiac Chamber Volumes and Myocardial Mass Derived From CT Attenuation Maps Using Deep Learning7
Association of Perfusion Defect Size, Sex and Outcome in Suspected CAD Using [15-O]water PET7
Scan-rescan measurement repeatability of 18F-FDG PET/MR imaging of vascular inflammation7
Coronary microvascular disease in hypertrophic and infiltrative cardiomyopathies7
18F-fluorodeoxyglucose uptake patterns in positron emission tomography/computed tomography caused by inflammation and/or infection after graft surgery for thoracic aortic dissection7
In search of the answers to the viability questions7
Cardiac amyloidosis detection by early bisphosphonate (99mTc-HMDP) scintigraphy7
Infection vs inflammation in prosthetic heart valves by [18F]FDG-PET/CT: A practical tutorial for accurate interpretation7
The additional prognostic value of myocardial perfusion SPECT in patients with known coronary artery disease with high exercise capacity7
Complete resolution of focal-on-diffuse myocardial activity pattern on FDG PET-CT by prolonging the dietary preparation protocol in cardiac sarcoidosis7
Stress testing and myocardial perfusion imaging for patients after recovery from severe COVID-19 infection requiring hospitalization: A single-center experience6
Assessing if adequate hyperemic response to pharmacologic stress in Rb-82 PET myocardial perfusion imaging is achieved: are biomarkers helpful?6
The promise of hypericin: a tracer for acute myocardial infarction6
Radioiodinated hypericin as a tracer for detection of acute myocardial infarction: SPECT-CT imaging in a swine model6
What is this image? 2021 image 3 result6
CME INSTRUCTIONS: Coronary artery disease in patients with human immunodeficiency virus infection6
Coronary vasomotor dysfunction in cancer survivors treated with thoracic irradiation6
Quantification of myocardial flow reserve using a gamma camera with solid-state cadmium-zinc-telluride detectors: Relation to angiographic coronary artery disease6
Reproducible Quantification of Regional Sympathetic Denervation with [11C]meta-Hydroxyephedrine PET Imaging6
Optimizing 99mTc-DPD scintigraphy: Adding value to the diagnosis and treatment of cardiac transthyretin amyloidosis6
Hypermetabolism of the spleen or bone marrow is an additional albeit indirect sign of infective endocarditis at FDG-PET6
Elucidating the pathophysiology of left bundle branch block related perfusion defects6
Correction: Quantitation in ATTR cardiac amyloidosis: the next step is almost there!6
Phase analysis for ventricular arrhythmia prediction: A retrospective monocentric cohort study6
The neuro-hematopoietic-inflammatory arterial axis: The missing link between PTSD and cardiovascular disease?6
Transient ischemic dilation or transient RV visualization in patients with normal SPECT stress myocardial perfusion imaging: Correlation with CT coronary artery calcium scoring and coronary angiograph6
The “fixed” SPECT MPI defect: Where are we and where should we be going?6
Simultaneous assessment of myocardial perfusion and adrenergic innervation in patients with heart failure by low-dose dual-isotope CZT SPECT imaging6
Coronary artery calcium burden, carotid atherosclerotic plaque burden, and myocardial blood flow in patients with end-stage renal disease: A non-invasive imaging study combining PET/CT and 3D ultrasou6
Regional myocardial sympathetic denervation precedes the development of left ventricular systolic dysfunction in chronic Chagas’ cardiomyopathy6
Imaging inflammation in atherosclerosis: Exploring all avenues6
Spotlight on left ventricular dyssynchrony: Part 2—Prognostic value6
Comparison of planar with tomographic pyrophosphate scintigraphy for transthyretin cardiac amyloidosis: Perils and pitfalls6
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