Cerebral Haemodynamics following Acute Ischaemic Stroke: Effects of Stroke Severity and Stroke Subtype
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R. Panerai | T. Robinson | F. Brodie | E. Bor-Seng-Shu | R. Nogueira | N. Saeed | Angela S. M. Salinet | O. Llwyd | M. Lam
[1] Jia Liu,et al. Is Dynamic Cerebral Autoregulation Bilaterally Impaired after Unilateral Acute Ischemic Stroke? , 2017, Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association.
[2] Farzaneh A. Sorond,et al. Efficacy of Cerebral Autoregulation in Early Ischemic Stroke Predicts Smaller Infarcts and Better Outcome , 2017, Front. Neurol..
[3] J. Serrador,et al. Hemorrhagic transformation and cerebral edema in acute ischemic stroke: Link to cerebral autoregulation , 2017, Journal of the Neurological Sciences.
[4] R. Panerai,et al. Cerebral blood flow autoregulation in ischemic heart failure. , 2017, American journal of physiology. Regulatory, integrative and comparative physiology.
[5] M. Horsfield,et al. Dynamic cerebral autoregulation following acute ischaemic stroke: Comparison of transcranial Doppler and magnetic resonance imaging techniques , 2016, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[6] R. Panerai,et al. The Leicester cerebral haemodynamics database: normative values and the influence of age and sex , 2016, Physiological measurement.
[7] Farzaneh A. Sorond,et al. Pathophysiologic differences in cerebral autoregulation after subarachnoid hemorrhage , 2016, Neurology.
[8] T G Robinson,et al. Statistical criteria for estimation of the cerebral autoregulation index (ARI) at rest , 2016, Physiological measurement.
[9] Eric E. Smith,et al. Scientific Rationale for the Inclusion and Exclusion Criteria for Intravenous Alteplase in Acute Ischemic Stroke: A Statement for Healthcare Professionals From the American Heart Association/American Stroke Association , 2016, Stroke.
[10] Jia Liu,et al. Characteristics of dynamic cerebral autoregulation in cerebral small vessel disease: Diffuse and sustained , 2015, Scientific Reports.
[11] Thalia Shoshana Field,et al. Tenecteplase–Tissue-Type Plasminogen Activator Evaluation for Minor Ischemic Stroke With Proven Occlusion , 2015, Stroke.
[12] Ronney B. Panerai,et al. The Longitudinal Evolution of Cerebral Blood Flow Regulation after Acute Ischaemic Stroke , 2014, Cerebrovascular Diseases Extra.
[13] Dae C. Shin,et al. Between-centre variability in transfer function analysis, a widely used method for linear quantification of the dynamic pressure-flow relation: the CARNet study. , 2014, Medical engineering & physics.
[14] Ronney B Panerai,et al. Nonstationarity of dynamic cerebral autoregulation. , 2014, Medical engineering & physics.
[15] Jia Liu,et al. Dynamic Cerebral Autoregulation Is Heterogeneous in Different Subtypes of Acute Ischemic Stroke , 2014, PloS one.
[16] Jie Chen,et al. Impaired Dynamic Cerebral Autoregulation and Cerebrovascular Reactivity in Middle Cerebral Artery Stenosis , 2014, PloS one.
[17] R. Panerai,et al. Cerebral blood flow response to neural activation after acute ischemic stroke: a failure of myogenic regulation? , 2013, Journal of Neurology.
[18] R. Panerai,et al. Detection of Impaired Cerebral Autoregulation Improves by Increasing Arterial Blood Pressure Variability , 2013, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[19] M. Horsfield,et al. Does Stroke Subtype and Measurement Technique Influence Estimation of Cerebral Autoregulation in Acute Ischaemic Stroke? , 2013, Cerebrovascular Diseases.
[20] C. Weiller,et al. Dynamic cerebral autoregulation associates with infarct size and outcome after ischemic stroke , 2012, Acta neurologica Scandinavica.
[21] Thomas Jeerakathil,et al. Oxfordshire Community Stroke Project Classification Poorly Differentiates Small Cortical and Subcortical Infarcts , 2011, Stroke.
[22] S. Schwab,et al. High NIHSS Values Predict Impairment of Cardiovascular Autonomic Control , 2011, Stroke.
[23] Y. Tzeng,et al. Fundamental relationships between arterial baroreflex sensitivity and dynamic cerebral autoregulation in humans. , 2010, Journal of applied physiology.
[24] Y. Tzeng,et al. Influence of baroreflex‐mediated tachycardia on the regulation of dynamic cerebral perfusion during acute hypotension in humans , 2010, The Journal of physiology.
[25] R. Panerai,et al. Dynamic Cerebral Autoregulation Is Compromised Acutely following Mild Ischaemic Stroke but Not Transient Ischaemic Attack , 2009, Cerebrovascular Diseases.
[26] Georgios Tsivgoulis,et al. Cerebral hemodynamics in acute stroke: pathophysiology and clinical implications. , 2008, Journal of vascular and interventional neurology.
[27] C. Weiller,et al. Cerebral Autoregulation Dynamics in Acute Ischemic Stroke after rtPA Thrombolysis , 2008, Cerebrovascular Diseases.
[28] Ronney B Panerai,et al. Cerebral Autoregulation: From Models to Clinical Applications , 2008, Cardiovascular engineering.
[29] Jan Stam,et al. Dynamic Cerebral Autoregulation in Acute Lacunar and Middle Cerebral Artery Territory Ischemic Stroke , 2005, Stroke.
[30] Ronney B Panerai,et al. Cardiac Baroreceptor Sensitivity Predicts Long-Term Outcome After Acute Ischemic Stroke , 2003, Stroke.
[31] D. Newell,et al. Comparison of static and dynamic cerebral autoregulation measurements. , 1995, Stroke.