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Biomedical subjects

E Koushanpour

Publications and source records attributed to E Koushanpour.

15 recordsLinked to original sources

Blockade of contralateral carotid sinus nerve enhances ipsilateral nerve action potentials under halothane anaesthesia.

In 10 dogs, one carotid sinus was isolated from the systemic circulation without disturbing its sympathetic innervation. The isolated sinus was connected to a servo-controlled pressure generator which kept mean intrasinus pressure, pulse pressure, and frequency of pulsation constant. The carotid sinus baroreceptor nerve action potentials (NAP) were measured, together with the intransinus and systemic pressures. Following control measurements, the end-tidal concentrations of halothane in oxygen were varied between 0.0 and 2%, in random increments of 0.5%, each with 30 min of stabilization. The carotid sinus NAP response to halothane was biphasic in a dose-dependent manner. The series was repeated after neural blockade of the contralateral sinus with 1% lignocaine 2-3 ml. This blockade enhanced all NAP responses (P less than 0.001), suggesting that a central inhibitory effect, initiated by the contralateral sinus, had been removed.

Action Potentials

Partition of carotid baroreceptor response in two-kidney renal hypertensive dogs.

This study evaluated the mechanism of carotid sinus baroreceptor resetting in two-kidney one-clip Goldblatt hypertension in dogs by partitioning the resetting between carotid sinus wall compliance and receptor neural elements. With dogs under halothane anesthesia, the left renal artery was constricted 70-80% with a Goldblatt clamp without disturbing the contralateral kidney. Ten weeks later, when mean blood pressure had risen to 151 +/- 6 mmHg (means +/- SE) compared with 105 +/- 5 mmHg in controls, we measured simultaneously whole nerve action potentials (N) and carotid sinus volume (V) during step changes in intrasinus pressure (P). Hypertensive N vs. P relationship was sigmoid shaped and shifted toward the P-axis compared with controls. Hypertensive V vs. P relationship was not significantly different from controls. The hypertensive N vs. V relationship derived from the composite plots of N vs. P and V vs. P was sigmoid shaped and shifted toward the V-axis compared with controls. These results suggest that the resetting of baroreceptors is due to changes in receptor properties rather than carotid sinus wall compliance.

Action Potentials

Renal tissue oxygenation following induced hypotension in dogs.

Renal oxygenation was studied during induced hypotension in mongrel dogs, anaesthetized with 1-1.5% halothane in oxygen. Hypotension was induced with an infusion i.v. of sodium nitroprusside (SNP) 70 +/- 17 micrograms kg-1 min-1 (mean +/- SEM) or trimetaphan (TMP) 36 +/- 16 micrograms kg-1 min-1, or by controlled arterial haemorrhage (45 +/- 6 ml/kg of body weight). Mean arterial pressure (MAP), cortical (Pcto2) and medullary (Pmto2) tissue oxygen tensions, arterial (Pao2), renal venous (Prvo2), and urine (Puo2) oxygen tensions were measured during the 40-min control, hypotension, and recovery periods. MAP was decreased to approximately 60% of the control value. Pcto2 decreased significantly (P less than 0.05) in all three groups while Pmto2 decreased significantly only in the haemorrhage group. Upon restoration of MAP to normal values, renal tissue oxygen tensions recovered in all groups, somewhat more rapidly in the SNP group. There were no significant differences in Pao2, Prvo2, and Puo2 during control, hypotension and recovery periods in the three groups. Tissue oxygen tension values followed the changes in MAP, but were not hypoxic, leading us to believe that both SNP and TMP are hypotensive agents safe for the kidney.

Animals

Local versus central effect of halothane on carotid sinus baroreceptor function.

Depressive effect of halothane on carotid sinus baroreceptor function may be due to direct local action, in the CNS, or both. Paris of dogs were anesthetized with pentobarbital and ventilated with oxygen. The carotid sinus of the recipient dog was isolated and perfused with blood from the common carotid artery of the donor dog. Blood from the recipient sinus was returned through its external carotid to the donor common carotid. Thus, both carotid sinuses of the donor and the contralateral carotid sinus of the recipient dog received uninterrupted circulation. Carotid sinus nerve action potentials and lingual artery pressure of the isolated recipient sinus were recorded before and during steady state end-tidal halothane concentrations of 0, 0.5, 1.0, 1.5, 2.0, and 2.5% in oxygen, given randomly first to the donor dog (to evaluate direct local effect) and then to the recipient dog (to determine central effect). The dog not given halothane received pentobarbital. Plots of normalized nerve activity versus halothane concentrations showed approximately zero slope when the donor was given halothane but showed significant decrease in nerve activity when the recipient was given halothane. Halothane appears to have no direct local effect but causes depression of baroreceptor nerve activity, possibly via CNS inhibition of sympathetic efferents to the carotid sinus.

Action Potentials