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Titlebook: Current Topics in Coronary Research; Colin M. Bloor,Ray A. Olsson Book 1973 The Editor(s) (if applicable) and The Author(s), under exclusi

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Role of O2 in Control of the Coronary Capillary Reservellary, flow and diffusion are interrelated. If diffusion distance is sufficiently long, tissue anoxia can occur at an infinitely large flow rate, whereas if flow is sufficiently low, anoxia can occur at minimum diffusion distance.
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Coronary and Systemic Hemodynamics in Chemically Sympathectomized Dogsxons remain intact, regeneration of sympathetic nerve endings takes place within a few weeks (4). This technique allows one to obtain data before and after sympathectomy in the same animal within a short period of time and without the additional trauma and complications due to surgical denervation.
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Regional Changes in Intramyocardial Pressure Following Myocardial Ischemiae. The present study was undertaken to determine whether delayed relaxation might also occur following myocardial ischemia and thereby further compromise the effect of diastolic coronary perfusion gradient.
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Challenges to the Adenosine Hypothesis for the Regulation of Coronary Blood Flowof coronary blood flow to myocardial needs. In some cases (1, 2, 3) the reports have essentially repudiated the hypothesis whereas in others (4, 5) the hypothesis has been modified. Furthermore, there is lack of agreement of experimental results bearing on certain aspects of the hypothesis. It is th
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Observations on the Effect of Changes in Arterial Oxygenation on Adenosine Induced Coronary Vasodilalow. One holds that an increased concentration of vasoactive tissue metabolites which accumulate as a result of myocardial hypoxia, most notable among which is the nucleoside adenosine, directly causes vasodilation in the coronary resistance vessels (1, 2, 3, 4). The other states that the low pO. in
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Adenosine Metabolism: Properties of Dog Heart Microsomal 5′-Nucleotidasedemand (1). The experimental proof of this hypothesis requires a definition of: 1. the factors regulating adenosine production, 2. the processes regulating the concentration of this nucleoside in the cardiac interstitial space, i.e., the concentration to which the coronary arteries are exposed, and
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