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Biomedical subjects

J Audet

Publications and source records attributed to J Audet.

27 records · Page 2Linked to original sources

Dynamic studies of growth hormone and prolactin secretion in the female rat.

Blood samples were removed via chronic intra-atrial cannulae every 15 min in female rats during the estrous cycle, the last week of pregnancy, parturition and suckling. Growth hormone (GH) secretion during the estrous cycle is characterized by episodic release, occurring approximately once hourly. The surges in GH increase during the last 3-4 days of gestation, and rise to high levels during delivery and with suckling. Prolactin (PRL) shows minimal fluctuations during the estrous cycle, except for a prominent pulsatile surge during proestrus. PRL rises 4-6 h prior to parturition and declines during delivery. These studies provide a basis for further studies on the dynamics of GH and PRL secretion in the female rat.

Animals↗

Physiological changes associated with unilateral pulmonary ventilation during operations on the lung.

No important changes in the respiratory parameters were observed during one-lung anaesthesia. However, this kind of thoracic intervention can be accompanied by a dramatic fall in arterial oxygen tension. Methods to avoid tissue hypoxia have been described. In our series no complications whatever occurred in the operative and post-operative periods which could be related to the oxygenation of the patient.

Adult↗

Effects of somatostatin and hypothalamic ventromedial lesions on GH release induced by morphine.

Morphine in intravenous doses ranging from 10 mug/kg to 8 mg/kg was shown to be effective in stimulating GH release in the unanesthetized rat. The response to the log of the dose was linear over a range of 10 to 1000 mug/kg. Somatostatin (GH-release inhibiting factor) administered SC in a dose of 200 mug/kg 5 min before morphine prevented the GH rise. Neither inhibitors of catecholamine or serotonin synthesis nor blockage of alpha and beta-adrenergic receptors had any effect on the response. The response was partially blocked in animals with large hypothalamic ventromedial (VMN) lesions. Such lesions completely abolished the GH response to pentobarbital. These results indicate that morphine is a remarkably potent agent for stimulation of GH release but the precise mechanism and site of action of the drug remain to be determined.

Animals↗

Structural and in vivo mechanical characterization of canine patellar cartilage: a closed chondromalacia patellae model.

The purpose of this project was to study the relationship between the structure of the patellar cartilage and its response to static compressive loading with a closed chondromalacia patellae model. An animal model was used to induce degeneration of the patella that was monitored quantitatively and qualitatively as a function of time. Ten adult mongrel dogs had their left patellofemoral groove replaced by a customized metallic implant covered with a thin film of polyethylene for periods of 3 months (five dogs) and 6 months (five dogs). An indenter was designed to perform mechanical indentation testing on the patellar cartilage in situ. The animals were anesthetized and the response of patellar cartilage to a static compressive load of 4.5 MPa was monitored for 20 min and its relaxation after load removal for 20 min. Indentation tests were performed every 3 months of the implantation period. At the end of the implantation period, the patellae were processed for histology, and sections were stained with Safranin-O indicative of the proteoglycans content. Macroscopically, no apparent degeneration or fibrillation of the patellar surfaces was observed after 3 or 6 months of implantation. However, the patellar surface showed a change in coloration after 6 months. A 17 +/- 3% and 37 +/- 8% deformation of the cartilage were calculated for the 3-month and 6-month specimens, respectively. Histologically, a progressive loss of proteoglycans was observed in the matrix as a function of implantation time. These results indicated that an increase in cartilage compliance is associated with an intrinsic remodeling of the cartilage matrix and that these changes might occur without external signs of degeneration and can be quantified.

Animals↗