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Biomedical subjects

L Perret

Publications and source records attributed to L Perret.

At least 37 records · Page 2Linked to original sources

Occlusion pressure and breathing pattern in healthy children.

The breathing pattern was investigated in 62 children aged 4 to 16 years together with the mouth pressure generated 0.1 s after an occlusion at the endexpiratory level (P0.1). A group of 20 adults (18 to 32 years old) were tested in a similar way. The values of P0.1 obtained during room air breathing at rest in the children decreased with age as a power function P0.1 = 8.51 A-0.62 (where A is age in years), r = -0.74. Adult values of P0.1 were achieved at about 13 years. After O2 inhalation P0.1 decreased in children, but the changes in P0.1 were independent of age. Respiratory frequency decreased with age while inspiratory time (TI) increased, both reaching adult values at about 13 years. The ratio of TI over the total respiratory cycle duration did not change significantly with age in the entire population. The absolute value of tidal volume (VT) increased with age, but not when normalized for body weight (BW). The mean inspiratory flow (VT/TI) normalized for BW decreased with age in children as did P0.1. There was a significant relationship between P0.1 and VT/TI normalized for body weight (r = 0.63).

Adolescent↗

[Tianeptine, an uncommon psychotropic drug].

The pharmacological studies show that tianeptine (Stablon) is an original psychotropic drug. In classical and behavioural pharmacology, tianeptine has a novel antidepressant profile, different from other molecules and an anxiolytic effect but different from the benzodiazepines. Tianeptine does not cause sedation and sleeping troubles. In mice, tianeptine does not impair spatial memory but have facilitating effects on both working and reference memory. Tianeptine also increased the focalization of attention in cat and is active on comportmental adaptation models in stress. The electrophysiological data showed that tianeptine increases activity of the hippocampus pyramidal cells and decreases the recovery time after inhibitory substances application. Neurobiochemical studies showed that tianeptine increases serotonin uptake, in rat brain and in rat and human platelets, after acute and chronic treatment. Neuroendocrinology data showed that tianeptine decreases CRF and ACTH levels. Current research on the effect of tianeptine on acetylcholine could explain its anti-stress and memory facilitation activity.

Animals↗