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Sympathetic control of the cerebral vasculature in humansDoes respiratory sinus arrhythmia serve a buffering role for diastolic pressure fluctuations?Relative contributions of sympathetic, cholinergic, and myogenic mechanisms to cerebral autoregulation.Spinal Cord Injury and Osteoporosis: Causes, Mechanisms, and Rehabilitation StrategiesCharacterizing sympathetic neurovascular transduction in humans.Fractal properties of human heart period variability: physiological and methodological implications.Assessing cerebral autoregulation via oscillatory lower body negative pressure and projection pursuit regression.Impaired cerebral autoregulation is associated with vasospasm and delayed cerebral ischemia in subarachnoid hemorrhage.Deferoxamine, Cerebrovascular Hemodynamics, and Vascular Aging: Potential Role for Hypoxia-Inducible Transcription Factor-1-Regulated Pathways.Defining the characteristic relationship between arterial pressure and cerebral flowTemporal evolution of vasospasm and clinical outcome after intra-arterial vasodilator therapy in patients with aneurysmal subarachnoid hemorrhage.Blood Pressure Increases in OSA due to Maintained Neurovascular Sympathetic Transduction: Impact of CPAP.Adiponectin is associated with bone strength and fracture history in paralyzed men with spinal cord injury.Detection of multifiber neuronal firings: a mixture separation model applied to sympathetic recordings.Integrative physiological and computational approaches to understand autonomic control of cerebral autoregulationPhysical Activity Level and Symptom Duration Are Not Associated After Concussion.BP regulation VI: elevated sympathetic outflow with human aging: hypertensive or homeostatic?Cerebrovascular regulation, exercise, and mild traumatic brain injury.Cerebrovascular reactivity assessed by transcranial Doppler ultrasound in sport-related concussion: a systematic review.Alterations in autonomic cerebrovascular control after spinal cord injury.The Relationship Between Cerebral Vasoreactivity and Post-Concussive Symptom Severity.Pathophysiologic differences in cerebral autoregulation after subarachnoid hemorrhage.On the judicious use of metrics for cerebral autoregulation.Can the apparent adaptation of dopamine neurons' mismatch sensitivities be reconciled with their computation of reward prediction errors?A local circuit model of learned striatal and dopamine cell responses under probabilistic schedules of reward.Neuropeptide co-release with GABA may explain functional non-monotonic uncertainty responses in dopamine neurons.Heart rate variability: are there complex patterns?Incongruous changes in heart period and heart rate variability with vagotonic atropine: implications for rehabilitation medicine.The role of myogenic mechanisms in human cerebrovascular regulation.A dopamine-acetylcholine cascade: simulating learned and lesion-induced behavior of striatal cholinergic interneurons.Alterations in sympathetic neurovascular transduction during acute hypoxia in humans.Human cerebrovascular function in health and disease: insights from integrative approaches.Relative contributions of systemic hemodynamic variables to cerebral autoregulation during orthostatic stress.The Link between Cerebrovascular Hemodynamics and Rehabilitation Outcomes after Aneurysmal Subarachnoid Hemorrhage.The Role of Aerobic Exercise in Reducing Persistent Sport-related Concussion SymptomsComments on Point:Counterpoint: Respiratory sinus arrhythmia is due to a central mechanism vs. respiratory sinus arrhythmia is due to the baroreflex mechanismResponse to Letter Regarding Article, “Relative Contributions of Sympathetic, Cholinergic, and Myogenic Mechanisms to Cerebral Autoregulation”Cocoa, neurovascular coupling, and neurodegeneration: The good, the bad, and the uglyCholinergic control of the cerebral vasculature in humansAcupuncture and Heart Rate Variability
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