This method can help answer key questions in the field of cerebral vascular physiology as it relates to cerebral blood flow regulation during aging and development of chronic diseases. The primary advantage of this technique is that it allows simu
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Demonstrated here are protocols for (1) freshly isolating intact cerebral endothelial "tubes" and (2) simultaneous measurements of endothelial calcium and membrane potential during endothelium-derived hyperpolarization. Further, these methods allow for pharmacological tuning of endothelial cell calcium and electrical signaling as individual or interactive experimental variables.