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B Normand

Publications and source records attributed to B Normand.

22 records · Page 2Linked to original sources

Analysis of tooth movement into an extraction space in the rat.

The purpose of this study was to evaluate the amplitude, direction and nature (translation or rotation) of the movements of teeth bordering an extraction site. Two experimental approaches were used. In one series of experiments, second maxillary molars were removed in 10 anaesthetized rats. To allow precise measurements of tooth movement into the extraction space, small cavities were drilled in the proximal surfaces of the first and third molars facing the gap. An elastomer impression was taken and the distance between the two cavities was recorded. This measurement was repeated 1, 2 and 3 months later. After killing the rats, the skulls were dried. The direction of movement was observed on occlusal photographs, and lateral X-rays were used to evaluate the nature of the drift (translation or rotation) observed. To evaluate the impact of occlusal forces on the tooth movements, a second experimental system was used in which the antagonistic occlusal contacts on the test side were removed (12 rats). In the first experiments, the average reduction of the extraction gap was 40.7 +/- 1.8% of the initial value, and in the second experiment, 44.7 +/- 3.3%. In both experimental systems the movement was derived largely from a mesial drift of the third molar, and its rate decreased with time. Furthermore, the drift of the third molar comprised one-third rotation and two-thirds translation. Student's t-test showed no influence of occlusal forces on the tooth movements.

Analysis of Variance↗

[In vitro study of fibroblasts from patients with Duchenne muscular dystrophy. Evaluation of capping and ultrastructural aspect].

There have been conflicting studies of lymphocyte capping from patients with Duchenne Muscular Dystrophy. We have evaluated the proportion of capped fibroblasts of 10 patients with Duchenne Muscular Dystrophy. The results, compared with 15 normal controls, showed that the reduction of fibroblast capping is correlated to age patients. Additional studies, decreased number of retracted fibroblasts after colchicine incubation and ultrastructural observations, suggest that capping deficit would be the consequence of microtubular system alteration. This late phenomenon may be secondary to the primary membrane defect.

Adolescent↗

Induction of a catabolic state in rats by dexamethasone: dose or time dependency?

BACKGROUND: Daily injections of dexamethasone (DEX) given to adult rats are a recognized but nonstandardized model of stress. The aim of this work was to establish a reproducible and accurate model of stress in adult rats by chronic injection of DEX in order to standardize it. For this purpose, the effect of the duration of treatment and the effect of DEX dose were tested. To help understand the mechanisms of the catabolic effect of DEX, the study was extended to the metabolism of glutamine (GLN). In experiment 1, 60 male Sprague-Dawley rats (3 months old) were divided into 8 groups of 6 rats: groups G3, G5, G7, and G9 received 1.50 mg/kg/d of DEX by intraperitoneal (i.p.) injection for 3, 5, 7, or 9 days, respectively. Groups G3PF, G5PF, G7PF, or G9PF were pair-fed to groups G3, G5, G7, or G9, respectively. Group AL (n = 12) was healthy rats fed ad libitum. RESULTS: In treated rats, nitrogen balance reached its lowest value at day 5. After 9 days treatment by DEX, the catabolic state was reduced. An increase in GLN-synthetase activity and a decrease in muscle GLN content were related to DEX per se not to DEX-induced anorexia. In experiment 2, 25 rats were divided into 5 groups of 5 animals. Groups G0.75, G1.50, and G2.50 received 0.75, 1.50, and 2.50 mg/kg/d, respectively, of DEX by i.p. injection for 5 days. Group PF was pair-fed to group G2.50 and group AL was control rats. RESULTS: DEX induced a decrease in nitrogen balance that was dose-independent. GLN-synthetase activity was increased maximally in gastrocnemius by 0.75 mg/kg. CONCLUSIONS: Five days of treatment by DEX and a dose of 0.75 mg/kg/d induced a marked catabolic state.

Animals↗