scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1031814475 |
P356 | DOI | 10.1007/S003950170010 |
P953 | full work available at URL | http://link.springer.com/article/10.1007/s003950170010/fulltext.html |
http://link.springer.com/content/pdf/10.1007/s003950170010 | ||
http://link.springer.com/content/pdf/10.1007/s003950170010.pdf | ||
https://europepmc.org/articles/PMC2878314 | ||
https://europepmc.org/articles/pmc2878314?pdf=render | ||
https://europepmc.org/articles/PMC2878314?pdf=render | ||
P932 | PMC publication ID | 2878314 |
P698 | PubMed publication ID | 11770077 |
P5875 | ResearchGate publication ID | 226743610 |
P50 | author | Daniel A Beard | Q90470507 |
P2093 | author name string | Z. Li | |
J. B. Bassingthwaighte | |||
P2860 | cites work | SUSPENSIONS OF RADIOALBUMIN AGGREGATES FOR PHOTOSCANNING THE LIVER, SPLEEN, LUNG AND OTHER ORGANS | Q76852662 |
DETERMINATION OF REGIONAL PULMONARY BLOOD FLOW IN VARIOUS CARDIOPULMONARY DISORDERS. STUDY AND APPLICATION OF MACROAGGREGATED ALBUMIN (MAA) LABELLED WITH I-131 (I) | Q76972952 | ||
Asynchronous Electrical Activation Induces Asymmetrical Hypertrophy of the Left Ventricular Wall | Q77133126 | ||
Unloaded heart in vivo replicates fetal gene expression of cardiac hypertrophy | Q77534957 | ||
Prolonged diastolic time fraction protects myocardial perfusion when coronary blood flow is reduced | Q77960614 | ||
Influence of the rate of coronary plasma flow on the extraction of Rb86 from coronary blood | Q78509327 | ||
Regional tissue uptake of deuterium oxide in perfused organs: rat liver, dog heart and gastrocnemius | Q79288382 | ||
Quantification of Myocardial Blood Flow With Ultrasound-Induced Destruction of Microbubbles Administered as a Constant Venous Infusion | Q28263850 | ||
Temporal fluctuations in regional myocardial flows | Q30454579 | ||
Stability of heterogeneity of myocardial blood flow in normal awake baboons | Q30464500 | ||
Potassium and thallium uptake in dog myocardium | Q33651226 | ||
Applications of fractal analysis to physiology | Q33777693 | ||
Blood flow distributions by microsphere deposition methods | Q33869875 | ||
Plasma-soluble marker for intraorgan regional flows | Q33890668 | ||
Regional myocardial flow heterogeneity explained with fractal networks | Q34034480 | ||
Heterogeneities in regional volumes of distribution and flows in rabbit heart | Q34066789 | ||
Density and Water Content of Dog Ventricular Myocardium | Q34142031 | ||
Albumin macroaggregates and measurements of regional blood flow: validity and application of particle sizing by Coulter counter | Q34143843 | ||
Estimation of Coronary Blood Flow by Washout of Diffusible Indicators | Q34182076 | ||
Myocardial sodium extraction at varied coronary flows in the dog. Estimation of capillary permeability of residue and outflow detection | Q34315670 | ||
Regional Distribution of Diffusible Tracers and Carbonized Microspheres in the Left Ventricle of Isolated Dog Hearts | Q34434059 | ||
Modeling regional myocardial flows from residue functions of an intravascular indicator | Q34440461 | ||
Relaxation and diastole of the heart | Q34509626 | ||
Circulatory transport of iodoantipyrine and water in the isolated dog heart | Q34712261 | ||
Modeling [15O]oxygen tracer data for estimating oxygen consumption | Q35099289 | ||
Macroaggregated albumin studies of the coronary circulation in the dog. | Q35108436 | ||
Fractal nature of regional myocardial blood flow heterogeneity | Q35993621 | ||
Fractal 15 O-Labeled Water Washout From the Heart | Q35994214 | ||
Multiple tracer dilution estimates of D- and 2-deoxy-D-glucose uptake by the heart | Q36394924 | ||
Autoradiographic assessment of blood flow heterogeneity in the hamster heart | Q36395002 | ||
Molecular and particulate depositions for regional myocardial flows in sheep | Q36487023 | ||
Nonlinear model for capillary-tissue oxygen transport and metabolism | Q36660256 | ||
Concepts of myocardial perfusion imaging in magnetic resonance imaging | Q36717722 | ||
Lightning and the heart: fractal behavior in cardiac function | Q38511673 | ||
Microvasculature of the dog left ventricular myocardium | Q38511730 | ||
The endocardium | Q38624007 | ||
Modeling blood flow heterogeneity | Q39022320 | ||
Cross-sectional area and volume compliance of porcine left coronary arteries | Q39573652 | ||
Spontaneous termination and initiation of ventricular fibrillation as a function of heart size, age, autonomic autoregulation, and drugs: a comparative study on different species of different age. | Q39699399 | ||
The cellular basis of the length-tension relation in cardiac muscle | Q39830305 | ||
Regional left ventricular epicardial deformation in the passive dog heart | Q39878571 | ||
Physiology and theory of tracer washout techniques for the estimation of myocardial blood flow: Flow estimation from tracer washout | Q40823141 | ||
Dilatory capacity of the coronary circulation and its correlation to the arterial vasculature in the canine left ventricle | Q41037205 | ||
Coronary arterial tree remodeling in right ventricular hypertrophy | Q41074776 | ||
Branching patterns in the porcine coronary arterial tree. Estimation of flow heterogeneity. | Q41104788 | ||
The microsphere method facilitates statistical assessment of regional blood flow | Q41505144 | ||
Angina-like cardiac disturbances of hypothalamic etiology in cat, monkey, and man. | Q41620496 | ||
Advection and diffusion of substances in biological tissues with complex vascular networks | Q41666836 | ||
On the design of the coronary arterial tree: a generalization of Murray's law. | Q41711332 | ||
Effect of velocity of distribution on red cell distribution in capillary blood vessels | Q42019029 | ||
Spatial heterogeneity of energy turnover in the heart | Q42647061 | ||
Spatial heterogeneity of local blood flow and metabolite content in dog hearts | Q42657547 | ||
Regional fibre stress-fibre strain area as an estimate of regional blood flow and oxygen demand in the canine heart | Q42694072 | ||
THE PHYSIOLOGICAL PRINCIPLE OF MINIMUM WORK APPLIED TO THE ANGLE OF BRANCHING OF ARTERIES. | Q42839226 | ||
Power-law kinetics of tracer washout from physiological systems | Q42850701 | ||
Gradients in fiber shortening and metabolism across ischemic left ventricular wall | Q43912130 | ||
Measurement of regional myocardial blood flow with multiple colored microspheres | Q44322962 | ||
Computationally efficient algorithms for convection-permeation-diffusion models for blood-tissue exchange | Q44342686 | ||
Quantitative determination of regional oxygen consumption in the dog heart | Q45204279 | ||
Effects of coronary flow reduction on capillary-myocardial exchange in dogs | Q46291733 | ||
Influence of cardiac contraction and coronary vasomotor tone on regional myocardial blood flow | Q46373038 | ||
Profound spatial heterogeneity of coronary reserve. Discordance between patterns of resting and maximal myocardial blood flow | Q46646575 | ||
Regional changes in hemodynamics and cardiac myocyte size in rats with aortocaval fistulas. 1. Developing and established hypertrophy | Q47428287 | ||
Fluorescent microspheres are superior to radioactive microspheres in chronic blood flow measurements | Q48419493 | ||
Persistent electrocardiographic abnormalities experimentally induced by stimulation of the brain | Q51291283 | ||
The fractal nature of myocardial blood flow emerges from a whole-organ model of arterial network | Q52074735 | ||
Myogenic reactivity and resistance distribution in the coronary arterial tree: a model study | Q52079565 | ||
Laminar structure of the heart: a mathematical model | Q52265658 | ||
Mechanical regulation of cardiac muscle by coupling calcium kinetics with cross-bridge cycling: a dynamic model | Q52372953 | ||
Morphometry of pig coronary arterial trees | Q52394314 | ||
Relation between regional electrical activation time and subepicardial fiber strain in the canine left ventricle | Q52397895 | ||
Relationship between local myocardial adenylyl cyclase activity and local coronary blood flow in the dog heart | Q52397912 | ||
Small artery occlusion: a theoretical approach to the definition of coronary architecture and resistance by a branching tree model | Q52585963 | ||
The capillary and sarcolemmal barriers in the heart. An exploration of labeled water permeability | Q52807360 | ||
Vasomotor control of capillary transit time heterogeneity in the canine coronary circulation | Q54608346 | ||
Effect of increased myocardial cyclic GMP induced by cyclic GMP-phosphodiesterase inhibition on oxygen consumption and supply of rabbit hearts. | Q54674021 | ||
Temporal heterogeneity of myocardial blood flow in anesthetized dogs | Q67314143 | ||
Role of autoregulation in spatial and temporal perfusion heterogeneity of canine myocardium | Q67363927 | ||
Blood flow measurements with radionuclide-labeled particles | Q67590715 | ||
Noninvasive myocardial imaging with potassium-43 and rubidium-81 in patients with left bundle branch block | Q67823853 | ||
The time sequence of electrical and mechanical activation during spontaneous beating and ectopic stimulation | Q68147069 | ||
Beneficial effect of residual anterograde flow on tissue viability as assessed by positron emission tomography in patients with myocardial infarction | Q68830898 | ||
Redistribution of myocardial fiber strain and blood flow by asynchronous activation | Q68887133 | ||
Segment analysis of human coronary arteries | Q68984185 | ||
Capillary exchange modeling. Barrier-limited and flow-limited distribution | Q69922868 | ||
Regional coronary vasoconstriction in response to stimulation of stellate ganglia | Q70444054 | ||
The effects of muscle length on intracellular calcium transients in mammalian cardiac muscle | Q70456195 | ||
Some sources of error in measuring regional blood flow with radioactive microspheres | Q70578487 | ||
Spatial heterogeneity of blood flow in the dog heart. I. Glucose uptake, free adenosine and oxidative/glycolytic enzyme activity | Q71423969 | ||
Spatial heterogeneity of blood flow in the dog heart. II. Temporal stability in response to adrenergic stimulation | Q71423974 | ||
Asymmetric thickness of the left ventricular wall resulting from asynchronous electric activation: a study in dogs with ventricular pacing and in patients with left bundle branch block | Q71550557 | ||
Function and production of nitric oxide in the coronary circulation of the conscious dog during exercise | Q71591037 | ||
Effects of flow, perfusion pressure, and oxygen consumption on cardiac capillary exchange | Q71891604 | ||
Regional myocardial flow and capillary permeability-surface area products are nearly proportional | Q72144358 | ||
Fractal analysis of renal cortical perfusion | Q72331470 | ||
Coupling calcium binding to troponin C and cross-bridge cycling in skinned cardiac cells | Q72370040 | ||
Predicting recovery of severe regional ventricular dysfunction. Comparison of resting scintigraphy with 201Tl and 99mTc-sestamibi | Q72523279 | ||
Triple control of relaxation: implications in cardiac disease | Q72799486 | ||
Microsphere and dilution measurements of flow and interstitial space in dog heart | Q72807297 | ||
Validation of fluorescent-labeled microspheres for measurement of regional organ perfusion | Q72841939 | ||
A (13)C NMR double-labeling method to quantitate local myocardial O(2) consumption using frozen tissue samples | Q73071080 | ||
Remodeling by ventricular pacing in hypertrophying dog hearts | Q73568661 | ||
Insulin inhibition of 5′ adenosine monophosphate—activated protein kinase in the heart results in activation of acetyl coenzyme A carboxylase and inhibition of fatty acid oxidation | Q73855110 | ||
LBBB: challenging our concept of metabolic heart imaging with fluorine-18-FDG and PET? | Q74225682 | ||
P433 | issue | 6 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 582-594 | |
P577 | publication date | 2001-11-01 | |
P13046 | publication type of scholarly work | review article | Q7318358 |
P1433 | published in | Basic Research in Cardiology | Q2453360 |
P1476 | title | The mechanical and metabolic basis of myocardial blood flow heterogeneity | |
P478 | volume | 96 |
Q34212184 | A full 3-D reconstruction of the entire porcine coronary vasculature |
Q37265564 | Biophysical model of the spatial heterogeneity of myocardial flow |
Q33836353 | Computational biology of cardiac myocytes: proposed standards for the physiome. |
Q36610470 | Cross-talk between cardiac muscle and coronary vasculature |
Q41486965 | Dependence of intramyocardial pressure and coronary flow on ventricular loading and contractility: a model study. |
Q43565295 | Flow heterogeneity following global no-flow ischemia in isolated rabbit heart |
Q52849674 | Fractal analysis of the ischemic transition region in chronic ischemic heart disease using magnetic resonance imaging |
Q41953849 | Fractal properties of perfusion heterogeneity in optimized arterial trees: a model study |
Q30820729 | In vivo study of microcirculation in canine myocardium using the IVIM method |
Q51528919 | Left-ventricular shape determines intramyocardial mechanical heterogeneity |
Q41201201 | MRI manifestations of persistent microvascular obstruction and acute left ventricular remodeling in an experimental reperfused myocardial infarction |
Q33257708 | Modeling of oxygen transport and cellular energetics explains observations on in vivo cardiac energy metabolism |
Q28752359 | Multiscale modeling of cardiac cellular energetics |
Q46208090 | Myocardial Po2 does not limit aerobic metabolism in the postischemic heart |
Q50735799 | Nitric oxide and prostaglandins influence local skeletal muscle blood flow during exercise in humans: coupling between local substrate uptake and blood flow |
Q38438523 | Normal range and regional heterogeneity of myocardial perfusion in healthy human myocardium: assessment on dynamic perfusion CT using 128-slice dual-source CT. |
Q37090541 | Origins of heterogeneity in tissue perfusion and metabolism |
Q48621221 | Regional sympathetic denervation affects the relation between canine local myocardial blood flow and oxygen consumption. |
Q34512618 | Simultaneous blood-tissue exchange of oxygen, carbon dioxide, bicarbonate, and hydrogen ion. |
Q26995434 | The role of capillary transit time heterogeneity in myocardial oxygenation and ischemic heart disease |
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