Biomedical subjects
C Ogilvy
Publications and source records attributed to C Ogilvy.
Postocclusive cerebral hyperemia is markedly attenuated by chronic trigeminal ganglionectomy.
Marked hyperemia may develop in brain following temporary cessation of blood flow and is associated with the morbidity following cardiac arrest, stroke, and head injury. Regional cerebral blood flow was measured using radiolabeled microspheres and compared in 10 symmetrical regions after chronic unilateral trigeminal ganglionectomy (n = 8), trigeminal rhizotomy (n = 4), or sham operation (n = 4) following 10 min of combined brachiocephalic-left subclavian occlusion and hypotension (mean arterial blood pressure less than 50 mmHg) in cats. Blood flow was symmetrical at rest in the three groups and was undetectable during the ischemic period. Within 30 min after re-establishing flow, values in cortical gray matter increased symmetrically to approximately 250 ml.100 g-1.min-1 in the rhizotomy and the sham groups. Increases of similar magnitude were measured on the intact side following trigeminal ganglionectomy but flow was attenuated by greater than 50% ipsilateral to the ganglionectomy. Marked hyperemia developed during reperfusion in thalamus, caudate, deep cortical white matter, midbrain, and pons, but no asymmetries were present in the three groups. These data suggest that cortical hyperemia is mediated by trigeminal neurogenic mechanisms via axonal reflexlike mechanisms and suggest the importance of therapeutic strategies based on blockade of this nerve or its constituent neuropeptides.
Acute effects of isovolemic hemodilution with crystalloids in a canine model of focal cerebral ischemia.
We used 44 splenectomized dogs to study the effects of isovolemic hemodilution with a crystalloid solution. The dogs were randomly divided into a hemodilution and a control group. In each group, 17 dogs were subjected to 6 hours of internal carotid and middle cerebral artery occlusion, and five dogs received sham operations. Isovolemic hemodilution by phlebotomy and Ringer's lactate infusion was performed 30 minutes after arterial occlusion and resulted in an average hematocrit of 32-33%. Hemodilution significantly reduced viscosity, fibrinogen and total protein concentrations, and plasma oncotic pressure. Systemic arterial blood pressure and pulmonary wedge pressure decreased slightly with hemodilution, but central venous pressure and pulmonary arterial pressure did not change significantly. There was a similar decrease in cardiac index in both hemodiluted and control dogs, which may have been due to the effects of barbiturate anesthesia. Intracranial pressure increased significantly with time in all dogs subjected to arterial occlusion, but this increase was significantly more severe in the hemodiluted dogs. Specific gravity, measured just after the dogs were killed, 6 hours after hemodilution, was significantly lower in the white matter and basal ganglia of the left (ischemic) hemisphere in hemodiluted dogs than in controls. Regional cerebral blood flow decreased significantly in the left hemisphere after arterial occlusion. This decrease was almost completely reversed by hemodilution except in the basal ganglia, where the increase in edema caused by hemodilution was the greatest.