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P DeKoninck

Publications and source records attributed to P DeKoninck.

2 recordsLinked to original sources

Vascular distribution patterns in monochorionic twin placentas.

Several recent publications have focused on the association between the occurrence of twin-to-twin transfusion syndrome (TTTS) in diamniotic-monochorionic twins and the presence of a number of selected anatomic placental characteristics (distribution of vascular territory, cord insertion, type and number of inter-twin anastomoses). In contrast, the potential importance of the vascular distribution patterns of the individual twins remains to be elucidated. Based on its gross architectural distribution pattern, chorionic vasculature is traditionally described as disperse, magistral or mixed. The aim of this study was (1) to determine the relative prevalence of these vascular distribution patterns in monochorionic twin placentas, and (2) to correlate these patterns with the presence of TTTS and known anatomic placental features linked to TTTS. The placentas of 89 consecutive diamniotic-monochorionic twins (15 with TTTS, 74 without TTTS), examined at Women and Infants Hospital, were studied. Disperse vascular patterns were seen in 53% of twins, and magistral or mixed patterns in 47%. The prevalence of magistral/mixed vascular patterns was significantly higher in TTTS gestations than in non-TTTS gestations (60% versus 44%, P<0.05) and, in TTTS gestations, much higher in donor twins than in recipient twins (87% versus 33%, P<0.005). A strong association was found between the presence of magistral/mixed patterns and marginal/velamentous cord insertion, low number of inter-twin anastomoses, and uneven distribution of the vascular territories. These findings suggest that the magistral/mixed vascular distribution pattern may represent an important placental architectural feature contributing to the complex pathophysiology of TTTS.

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Reversible increase in energy deposition following castration induced by a gonadotropin releasing hormone agonist.

The effects on energy balance of a potent gonadotropin releasing hormone (GnRH) agonist, have been investigated in rats. Female rats initially weighing 180 g were divided into three groups. One group of rats underwent a bilateral ovariectomy whereas the two remaining groups were sham-operated. Rats in one of the two sham-operated groups were treated with Buserelin which was administrated by means of miniosmotic pumps. The remaining rats were implanted with minipumps that delivered saline. After 28 days of treatment, half of the rats in each group were killed by decapitation whereas the remaining animals had their pumps removed so that the Buserelin treatment stopped. The post-treatment lasted 28 days after which period, rats were killed. Body weight and food intake were measured over every 2 or 3 day periods. Carcasses were analyzed for their contents in protein, fat and energy. During the treatment period, rats that were ovariectomized and those treated with Buserelin increased their food intakes and energy depositions. The increase in energy deposition reflected an increase not only in fat but also in protein deposition. During the post-treatment period, metabolizable energy intake of rats that were administered Buserelin returned to the levels of placebo-treated rats. Twenty-eight days post-treatment, the carcass energy contents of the Buserelin-treated rats were no longer different from those of placebo-treated rats. In conclusion, Buserelin induces an increase in energy deposition that is readily reversed upon cessation of the treatment.

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