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Biomedical subjects

M I Reynolds

Publications and source records attributed to M I Reynolds.

5 recordsLinked to original sources

Effect of changes in baroreceptor input on the intensity of shivering in the anaesthetised cat.

1. Shivering in the barbitone-anaesthetised cat exposed to a lowered ambient temperature was reduced by transient haemorrhagic or drug induced hypotension such that there was a positive correlation between mean arterial blood pressure and the intensity of shivering. 2. Shivering which had been reduced by haemorrhage could be restored by the reinfusion of blood, centripetal stimulation of a buffer nerve or by the intravenous administration of methoxamine. 3. The intensity of shivering was increased by the intravenous injection of methoxamine and by stimulation of a buffer nerve, although the latter response was attenuated by intact buffer nerves. 4. There was a marked variation in the importance of the different buffer nerves in maintaining shivering. 5. Shivering was abolished by deafferentation of the baroreceptors and although it could be restored by electrical stimulation of a buffer nerve methoxamine was then without effect. 6. A prolonged period (90-120 min) of hypotension (50-60 mm Hg) impaired the ability to shiver even after the hypovolaemia and hypotension had been corrected.

Animals↗

Changes in cardiac output and its distribution after non-haemorrhagic injury in the rat.

In the unanaesthetized rat cardiac output, measured by a thermodilution technique, fell rapidly following a 4h period of bilateral hind-limb ischaemia. There was a significant positive correlation between body temperature and total cardiac output after injury. There were also striking changes in the distribution of cardiac output; for example, hepatic artery flow was markedly increased, whereas splanchnic flow fell passively with the reduction in cardiac output. There were suggestions of regional differences in the reduction of blood flow within the brain.

Animals↗

Role of tissue fluid hyperosmolality in the pathogenesis of post-traumatic fluid loss.

The changes in interstitial fluid osmolality in the injured tissues during and after bilateral hind-limb ischaemia have been studied in young rabbits. There was a marked tissue fluid hyperosmolality which was directly related to the period of ischaemia. The increase in osmolality could be attributed to increases in lactate and potassium concentration. The interstitial fluid hyperosmolality disappeared rapidly after restoration of the circulation to the hind-limbs and would therefore only be of importance in the earliest stages of the pathogenesis of post-ischaemic fluid loss. Although the tissue fluid hyperosmolality is so short-lasting 56% of the fluid loss, measured 1 h after a 4-h period of ischaemia, occurs during the first 10 min following removal of the tourniquets. The lactate concentration in ischaemic skeletal muscle of the newborn rabbit was higher than that in the older animal and if this is reflected in an increased tissue fluid hyperosmolality it may be a factor in the greater post-ischaemic fluid loss characteristic of the neonate.

Age Factors↗