
Cerebral Vascular Smooth Muscle and its Control
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Persons
Katherine Elliott is the editor of Cerebral Vascular Smooth Muscle and its Control, published by Wiley.
Maeve O'Connor is the editor of Cerebral Vascular Smooth Muscle and its Control, published by Wiley.
Content
1.1 - Contents [Seite 7]
1.1.1 - Participants [Seite 9]
1.1.2 - Chairman's opening remarks [Seite 11]
1.1.3 - Introduction: a multiple factor theory for control of cerebral vascular smooth muscle? [Seite 13]
1.1.4 - How vascular smooth muscle works [Seite 19]
1.1.4.1 - Discussion [Seite 25]
1.1.5 - Capillary flow in the brain cortex during changes in oxygen supply and state of activation [Seite 31]
1.1.5.1 - Discussion [Seite 53]
1.1.6 - Cellular microenvironment in relation to local bIood flow [Seite 59]
1.1.6.1 - Discussion [Seite 71]
1.1.7 - Influence of the cerebrovascular sympathetic innervation on regional flow, autoregulation, and blood-brain barrier function [Seite 79]
1.1.7.1 - Discussion [Seite 96]
1.1.8 - Experimental attempts to unmask effects of neural stimuli on cerebral blood flow [Seite 107]
1.1.8.1 - Discussion [Seite 121]
1.1.9 - General Discussion [Seite 129]
1.1.10 - Cerebral energy consumption and provision: the predominance of neuronal oxidative metabolic processes [Seite 139]
1.1.10.1 - Discussion [Seite 154]
1.1.11 - Behaviour of the mitochondria1 respiratory chain in vivo [Seite 159]
1.1.11.1 - Discussion [Seite 177]
1.1.12 - Local cerebral energy metabolism: its relationships to local functional activity and blood flow [Seite 181]
1.1.12.1 - Discussion [Seite 201]
1.1.13 - Coupling of cerebral metabolism and blood flow in epileptic seizures, hypoxia and hypoglycaemia [Seite 209]
1.1.13.1 - Discussion [Seite 224]
1.1.14 - Central neuroendocrine regulation of brain water permeability [Seite 229]
1.1.14.1 - Discussion [Seite 236]
1.1.15 - Osmotic opening of the blood-brain barrier [Seite 247]
1.1.15.1 - Discussion [Seite 261]
1.1.16 - Control of cerebral vascular smooth muscle during general anaesthesia [Seite 267]
1.1.16.1 - Discussion [Seite 277]
1.1.17 - Histochemical and pharmacological approach to the investigation of neurotransmitters, with particular regard to the cerebrovascular bed [Seite 285]
1.1.17.1 - Discussion [Seite 314]
1.1.18 - Evidence against H+ and K+ as main factors for the control of cerebral blood flow: a microelectrode study [Seite 323]
1.1.18.1 - Discussion [Seite 342]
1.1.19 - The significance of cortical extracellular H+, K+ and Ca2+ activities for regulation of local cerebral blood flow under conditions of enhanced neuronal activity [Seite 349]
1.1.19.1 - Discussion [Seite 359]
1.1.20 - Production, metabolism and possible functions of adenosine in brain tissue in situ [Seite 365]
1.1.20.1 - Discussion [Seite 383]
1.1.21 - Final General Discussion [Seite 389]
1.1.22 - Closing remarks [Seite 397]
1.1.23 - Index of contributors [Seite 401]
1.1.24 - Subject index [Seite 403]
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