α-Chloralose-HBC complex has been used for anesthetizing rats for various in vivo studies.[1][2][3]
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α-Chloralose-HBC complex is a preferred anesthetic over isoflurane as it displays no intrusion retinal spreading depolarization (rSD) generation and propagation.[1]
Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism, 36(9), 1579-1591 (2016-07-09)
Cortical spreading depolarization is a metabolically costly phenomenon that affects the brain in both health and disease. Following severe stroke, subarachnoid hemorrhage, or traumatic brain injury, cortical spreading depolarization exacerbates tissue damage and enlarges infarct volumes. It is not known
Blood flow is a useful indicator of the metabolic state of the retina. However, accurate measurement of retinal blood flow is difficult to achieve in practice. Most existing optical techniques used for measuring blood flow require complex assumptions and calculations.
The Journal of neuroscience : the official journal of the Society for Neuroscience, 36(36), 9435-9445 (2016-09-09)
The brain is critically dependent on the regulation of blood flow to nourish active neurons. One widely held hypothesis of blood flow regulation holds that active neurons stimulate Ca(2+) increases in glial cells, triggering glial release of vasodilating agents. This
Chloral hydrate (CH) and alpha-chloralose (CS) are often used to anesthetize laboratory animals although, to our knowledge, there have been no controlled studies of their anesthetic or analgesic effects. Induction of and recovery from anesthesia can be stressful, and anesthesia
The Journal of neuroscience : the official journal of the Society for Neuroscience, 34(34), 11504-11513 (2014-08-22)
Light stimulation evokes neuronal activity in the retina, resulting in the dilation of retinal blood vessels and increased blood flow. This response, named functional hyperemia, brings oxygen and nutrients to active neurons. However, it remains unclear which vessels mediate functional
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