Q.From where the parturition signals arise-mother or foetus? Mention the main hormone involved in parturition.
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Start your 14-day free trial to unlock the full solution →The signals for parturition originate from the fully developed foetus and the placenta, leading to the 'foetal ejection reflex', which then triggers the release of oxytocin, the main hormone involved.
Parturition, the process of childbirth, is a complex neuroendocrine mechanism that culminates in the expulsion of the fully developed foetus from the uterus. This remarkable event is precisely timed and orchestrated by a series of hormonal changes and reflexes, ensuring the safe delivery of the baby. Understanding its initiation is key to appreciating the intricate coordination between mother and foetus.
The initial signals that set the process of parturition in motion arise from a combined effort of the fully developed foetus and the placenta. As the foetus reaches full term, it begins to release certain hormones, particularly corticosteroids, which signal its readiness for birth. These foetal signals, along with contributions from the placenta, induce mild uterine contractions.
These mild uterine contractions are collectively termed the foetal ejection reflex. This reflex is a crucial trigger, as it initiates a positive feedback loop that intensifies the contractions and ultimately leads to labour. It's a testament to the foetus's active role in its own birth process, rather than being a passive participant.
The signals for parturition originate from both the fully developed foetus and the placenta, leading to the 'foetal ejection reflex'.
Once the foetal ejection reflex is established, it stimulates the maternal pituitary gland to release a powerful hormone. The main hormone involved in parturition, responsible for the strong uterine contractions necessary for childbirth, is oxytocin.
Here's how oxytocin plays its central role:
- Source: Oxytocin is secreted from the posterior pituitary gland of the mother.
- Action: It acts directly on the smooth muscles of the uterus, causing them to contract more forcefully. These contractions are essential for dilating the cervix and pushing the baby through the birth canal. …
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