Ovulation Regulation

Ovulation regulation is the neuroendocrine control of follicle maturation and egg release through coordinated signaling between the brain, pituitary gland, and ovaries. Pulsatile gonadotropin-releasing hormone from the hypothalamus stimulates pituitary secretion of follicle-stimulating hormone and luteinizing hormone; sustained high estradiol from the developing follicle then switches to positive feedback, producing the mid-cycle LH surge that triggers ovulation. Understanding this process connects reproductive physiology with neuroscience and supports research into fertility, menstrual disorders, and hormonal contraception. Disruptions in hypothalamic or pituitary signaling can impair ovulation, making these pathways important targets for diagnosis and treatment.

Ovulation Regulation - Related Videos

Research

JoVE Journal - Neuroscience

Unraveling the Role of Discrete Areas of the Rat Brain in the Regulation of Ovulation through Reversible Inactivation by Tetrodotoxin Microinjections

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2020

This protocol describes the construction of a low-cost microinjection system, its stereotaxic implantation into deep-brain structures and the procedure for timed microinjections of tetrodotoxin in awake and unrestrained rats. The goal is to reveal the participation of hypothalamic structures in the regulation of ovulation by inhibiting their neural activity.

In Vitro Ovule Cultivation for Live-cell Imaging of Zygote Polarization and Embryo Patterning in Arabidopsis thaliana

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Cited by 27 •

2017

This manuscript describes an in vitro ovule cultivation method that enables live-cell imaging of Arabidopsis zygotes and embryos. This method is utilized to visualize the intracellular dynamics during zygote polarization and the cell fate specification in developing embryos.

Microinjection of Tetrodotoxin into the Brain of an Awake Female Rat to Inhibit Ovulation

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2025

Source: Silva, C. et al. Unraveling the Role of Discrete Areas of the Rat Brain in the Regulation of Ovulation through Reversible Inactivation by Tetrodotoxin Microinjections. J. Vis. Exp. (2020)This video demonstrates the protocol for microinjection of tetrodotoxin (TTX) into the hypothalamus of a freely moving rat to transiently inhibit neuronal activity, suppress gonadotropin-releasing hormone secretion, and prevent ovulation.

Embryo Transfer Into Rabbit: A Procedure for Laparoscopy-Guided Transfer of Embryos Into Oviduct of Ovulating Recipient Female Rabbit Model

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2025

This video describes the technique of transferring embryos into the oviduct of a recipient female rabbit via Laparoscopy. It allows embryo remodeling in rabbits during its migration through the oviduct, eventually helping in successful implantation. This technique can also be used for stored embryos with good efficiency.

Education

JoVE Core - Biology

Epigenetic Regulation

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2019

Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer. In most mammals, females have two X chromosomes (XX) while males have an X and a Y chromosome (XY). The X chromosome contains significantly more genes than the Y chromosome. Therefore, to prevent an excess of X chromosome-linked gene expression in females, one of the two X chromosomes is randomly silenced during early development.

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