Infundibulum

Infundibulum is a funnel-shaped anatomical structure or passage that narrows from a broad opening to a smaller connection, helping direct fluids, tissues, or physiological signals between body regions. Its function depends on location: the hypothalamic infundibulum, or pituitary stalk, connects the hypothalamus to the pituitary gland and provides a route for releasing hormones and neural signals, while other infundibula guide material through structures such as the kidney or uterine tube. Understanding the infundibulum is important in anatomy, developmental biology, and clinical research because its shape and connections can influence transport, endocrine regulation, reproduction, and the interpretation of anatomical abnormalities.

Infundibulum - Related Videos

Research

JoVE EoE - Large Animal Models

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.

Retrieval of Mouse Oocytes

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Cited by 13 •

2007

This protocol illustrates the technique for extracting oocytes or early-stage fertilized embryos from the oviduct of mice. The ability to identify the infindibulum and insert a blunt end needle into it is essential to correctly performing the procedure.

Tubal Cytology of the Fallopian Tube as a Promising Tool for Ovarian Cancer Early Detection

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Cited by 11 •

2017

We explored a tubal cytologic method by sampling the fallopian tube directly post-surgical excision as a tool of ovarian cancer early detection. Here, we present a protocol to collect fallopian tube cells from freshly received surgical specimens.

Development of Mouse-Derived Organoid Lines from Fallopian Tube Epithelial Cells for High Grade Serous Ovarian Carcinoma Modeling

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2025

This protocol details the development of high-grade serous ovarian carcinoma (HGSOC) mouse models in vitro and in vivo. From the derivation of murine fallopian tube organoids, their genetic modification to recapitulate human HGSOC genetics, and their introduction in the ovarian bursa of syngeneic mice for in vivo development of tumors.

Research

JoVE Journal - Developmental Biology
Free Sample

Laparoscopic Ovum Pick-up For In Vivo Oocyte Retrieval In Alpacas

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2026

This protocol describes a reproducible method for in vivo oocyte recovery in alpacas using hormonal synchronization, FSH superstimulation, and laparoscopic ovum pick-up (LOPU). The procedure yields consistent follicular responses and efficient oocyte recovery, supporting applications for in vitro embryo production and advanced reproductive biotechnologies.

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