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[Experimental cerebral vasospasm induced by oxyhemoglobin and the sympathetic nervous system (Part 1): Effect of alpha-adrenergic receptor blockers].

This study was performed as part of a series of investigations into the relation between cerebral vasospasm following subarachnoid hemorrhage and the sympathetic nervous system. We studied the effect of phenoxybenzamine chloride (POB) and prazosin hydrochloride (Prazosin) on the cerebral vasoconstriction in the basilar arteries of cats induced by application of oxyhemoglobin (Oxy-Hb), noradrenaline (Nor) and prostaglandin F2 alpha (PGF2 alpha). Adult cats were anesthetized with intramuscular pentobarbital and maintained on a respirator through a tracheostomy. By the transclival approach, a bone window was formed in the clivus, and the dura was opened, exposing the basilar artery. A cannule was inserted into the subarachnoid space, and through it, Oxy-Hb, Nor and PGF2 alpha were injected. The sequential changes in caliber of the basilar artery were measured using photography. First, we determined the doses of POB and Prazosin necessary for decreasing the vasoconstriction induced by Nor, and 20 mg/kg of POB and 10 mg/kg of Prazosin were found to decrease the vasoconstriction induced by 10(-3) M Nor, statistically. Second, we investigated the effect of 20 mg/kg of POB and 0.5 mg/kg and 10 mg/kg of Prazosin on the cerebral vasoconstriction induced by Oxy-Hb or PGF2 alpha. POB (20 mg/kg) was infused for 2 hours before the application of Oxy-Hb or PGF2 alpha. Prazosin was given intravenously. In the first group, 0.02% Prazosin (0.5 mg/kg) was administered intravenously for 1.5 hours before the application of Oxy-Hb or PGF2 alpha. In the second group, 1.5 hours elapsed between the beginning of Prazosin (10mg/kg) infusion and the application of Oxy-Hb or PGF2 alpha.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists↗

[Hypothermia and paradoxical sleep. I. Pontile cats without hypothalamo-hypophysis].

Chronic pontile cats (without hypothalamo-hypophysis) were kept during 4 days at central T (TC) between 37.5 and 30.8 degrees C at stable ambiant T (TA) between 28.5 and 23 degrees C. The vasomotor index of the forepaw was chosen for studying change in vasomotricity. Small and slow variations of TA (+1.5 degrees C) around 27 degrees C were followed by thermoregulatory response since a progressive decrease of TA under 27 degrees C led to vasoconstriction and increase of TC while progressive increase of TA above 27 degrees C led to vasodilatation and decrease of TC. However rapid and large decrease of TA under 27 degrees C (24-23 degrees C) led to the expected hypothermia with decrease of TC but without vasoconstriction. Paradoxical sleep (PS) amounts were strongly correlated with TC. At TC above 35.5 degrees C PS was almost totally suppressed while it increased significantly under 35 degrees C (Q10 = 0.10). Under 35 degrees C at stable TC and TA, PS occurred with an endogenous circahoral rhythm which did not vary significantly between 35 and 32 degrees C. These results strongly suggest that in pontile cats, PS is both gated and regulated by TC, while TC is regulated by pontobulbar vasomotor systems in response to TA. The putative role of the ventro-lateral medulla, in controlling both vasomotricity, TC and the excitability of the locus coeruleus is discussed in relation with PS.

Animals↗

Acute orthostatic hypotension.

Acute orthostatic hypotension is a common occurrence during a patient's first experiences out of bed after surgery or a period of immobility. It is imperative that acute care nurses understand the dynamics of this phenomenon to provide effective preventive and supportive care for these patients. In this article are outlined recommendations for this care. Preventing acute orthostatic hypotension entails careful assessment of the status of the patient's sympathetic reflexes and assisting these reflexes to gain maximal control over peripheral vasoconstriction before the patient leaves bed. Supportive care during the patient's early experiences out of bed involves measures to reduce the likelihood of acute orthostatic hypotension, careful assessment of parameters that signal impending syncope, and immediate assistance for the patient who does experience it. On the patient's return to bed, evaluation of the patient's tolerance level assists in planning the patient's next venture out of bed.

Acute Disease↗