Top papers

# File Name Number of Downloadssort descending
1 01201_5_Gemcitabine+BVDU_vs_BVDU.ods 1119
2 01201_3_Gemcitabine+BVDU_vs_control.ods 1127
3 01203_Thyroid_hormone_deiodinases.xls 1141
4 01205_TypeD_Lithuanian_patients_with_CAD.xls 1165
5 01201_4_Gemcitabine+BVDU_vs_Gemcitabine.ods 1170
6 01201_3_Gemcitabine+BVDU_vs_control.xls 1322
7 01203_Thyroid_hormone_deiodinases.ods 1353
8 01201_5_Gemcitabine+BVDU_vs_BVDU.xls 1415
9 01205_TypeD_Lithuanian_patients_with_CAD.ods 1512
10 01204_Stroke_Bunevicius.xlsx 1536
11 01201_4_Gemcitabine+BVDU_vs_Gemcitabine.xls 1580
12 01304_Vassalle_Anaemia_Predictor.xls 1637
13 01305_Cardiac_Magnetic_Resonance_Imaging.xls 1716
14 01201_1_BVDU_vs_control.ods 1723
15 01204_Stroke_Bunevicius.ods 1820
16 01201_2_Gemcitabine_vs_control.xls 1864
17 01201_2_Gemcitabine_vs_control.ods 1902
18 01303_Cardiocirculatory_pathologies.ods 1907
19 01304_Vassalle_Anaemia_Predictor.ods 1924
20 01201_1_BVDU_vs_control.xls 2040
21 012012_Repositioned_Drugs_List.ods 2126
22 01303_Cardiocirculatory_pathologies.xlsx 2139
23 01301_Mice_Myocardial_Infarction.ods 2186
24 01302_Rat_AMI_Dataset.xlsx 2268
25 posture.01.pdf 2289
The regulation and measurement of plasma volume in heart failure. (14) P.R. Kalra; C. Anagnostopoulos; A.P. Bolger; A.J.S. Coats; S.D. Anker
The Need for Open-access Structured Data in Cardiology Research Free online availability substantially increases a paper's impact., Real-Life Observations of Clinical Outcomes With Rhythm- and Rate-Control Therapies for Atrial Fibrillation, GRACE score predicts heart failure admission following acute coronary syndrome, Standardized Cardiovascular Data for Clinical Research, Registries, and Patient Care, Long-term prognosis in stable angina; medical treatment or coronary revascularization in patients younger than 70years?, Prognostic value of pharmacological stress echocardiography in patients with known or suspected coronary artery disease: a prospective, large-scale, multicenter, head-to-head comparison between dipyridamole and dobutamine test. Echo-Persantine Internation, Triiodothyronine levels for risk stratification of patients with chronic heart failure (6) A. Pingitore; C. Carpeggiani
Translating thyroid hormone effects into clinical practice: the relevance of thyroid hormone receptor α1 in cardiac repair (9) C. Pantos; I. Mourouzis
Molecular Basis for Certain Neuroprotective Effects of Thyroid Hormone (12) H.Y. Lin; F.B. Davis; M.K. Luidens; S.A. Mousa; J.H. Cao; M. Zhou; P.J. Davis
Echocardiographic Datasets Showing Development of Cardiac Remodelling in Rats at Different Time-points after Acute Myocardial Infarction Return to the fetal gene program protects the stressed heart: a strong hypothesis, Molecular mechanisms of myocardial remodeling., Thyroid hormone and recovery of cardiac function in patients with acute myocardial infarction: a strong association?, Late Cardiac Remodeling After Primary Percutaneous Coronary Intervention, Left Ventricular Remodeling After Primary Coronary Angioplasty: Patterns of Left Ventricular Dilation and Long-Term Prognostic Implications, Heart failure post-myocardial infarction: a review of the issues, Cardiac models in drug discovery and development: a review., Models of cardiac excitation-contraction coupling in ventricular myocytes., Thyroid hormone improves the mechanical performance of the post-infarcted diabetic myocardium: A response associated with up-regulation of Akt/mTOR and AMPK activation, Translating thyroid hormone effects into clinical practice: the relevance of thyroid hormone receptor α1 in cardiac repair, The Beneficial Effects of Ranolazine on Cardiac Function After Myocardial Infarction Are Greater in Diabetic Than in Nondiabetic Rats, Inhibition of thyroid hormone receptor α1 impairs post-ischemic cardiac performance after myocardial infarction in mice, Artificial neural network modeling enhances risk stratification and can reduce downstream testing for patients with suspected acute coronary syndromes, negative cardiac biomarkers, and normal ECGs, Modeling the motor cortex: Optimality, recurrent neural networks, and spatial dynamics, Machine learning applications in cancer prognosis and prediction, A multiscale model for eccentric and concentric cardiac growth through sarcomerogenesis, Bioinjection treatment: Effects of post-injection residual stress on left ventricular wall stress, Computational modeling of acute myocardial infarction (6) I. Mourouzis; C. Pantos
Report of WHO/UNICEF/UNU consultation on indicators and strategies for iron deficiency and anemia programmes (4)
Cardiac models in drug discovery and development: a review. (6) R.K. Amanfu; J.J. Saucerman
Neuroprotective actions of thyroid hormones and low-T3 syndrome as a biomarker in acute cerebrovascular disorders (6) A. Bunevicius; G. Iervasi; R. Bunevicius
Classification of subtype of acute ischemic stroke. Definitions for use in a multicenter clinical trial. TOAST. Trial of Org 10172 in Acute Stroke Treatment. (26) H.P. Adams; B.H. Bendixen; L.J. Kappelle; J. Biller; B.B. Love; D.L. Gordon; E.E. Marsh
A Dataset from Echocardiographic Assessment of Cardiac Function in Mice after Myocardial Infarction Late Cardiac Remodeling After Primary Percutaneous Coronary Intervention, Heart failure post-myocardial infarction: a review of the issues, Cardiac models in drug discovery and development: a review., Thyroid hormone improves the mechanical performance of the post-infarcted diabetic myocardium: A response associated with up-regulation of Akt/mTOR and AMPK activation, Translating thyroid hormone effects into clinical practice: the relevance of thyroid hormone receptor α1 in cardiac repair, The Beneficial Effects of Ranolazine on Cardiac Function After Myocardial Infarction Are Greater in Diabetic Than in Nondiabetic Rats, Inhibition of thyroid hormone receptor α1 impairs post-ischemic cardiac performance after myocardial infarction in mice, Dose-dependent effects of thyroid hormone on post-ischemic cardiac performance: potential involvement of Akt and ERK signalings, The VPH-Physiome Project: Standards and Tools for Multiscale Modeling in Clinical Applications, Models of cardiac excitation–contraction coupling in ventricular myocytes, A model for human ventricular tissue, A Computational Model of the Human Left-Ventricular Epicardial Myocyte, A novel computational model of the human ventricular action potential and Ca transient (5) I. Mourouzis; P. Mantzouratou; C. Pantos

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