Septum Pellucidum

The septum pellucidum is a thin, translucent, midline membrane in the brain that separates the anterior horns of the lateral ventricles and helps define the ventricular system. It consists of two closely spaced laminae, often enclosing a small fluid-filled space called the cavum septi pellucidi, and develops in close relationship with the corpus callosum during brain formation. In biology and neuroscience, its anatomy and appearance on ultrasound, MRI, and other imaging methods help assess fetal and postnatal brain development. Absent, displaced, or altered formation can provide a clinical clue to broader structural or neurodevelopmental abnormalities and support diagnosis and research.

Septum Pellucidum - Related Videos

Research

JoVE Journal - Biology

Live Imaging of Arabidopsis Pollen Tube Reception and Double Fertilization Using the Semi-In Vitro Cum Septum Method

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Cited by 4 •

2023

Here, we describe an improvement of the semi-in vitro (SIV) method for observing pollen tube guidance and reception in Arabidopsis thaliana, which increases the receptivity of ovules. The high-throughput SIV cum septum method may be coupled with gametophyte marker lines and genetically encoded biosensors to monitor the dynamic process of fertilization.

Exploring Deep Space - Uncovering the Anatomy of Periventricular Structures to Reveal the Lateral Ventricles of the Human Brain

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Cited by 2 •

2017

This paper demonstrates the effective use of a fiber dissection method to reveal the superficial white matter tracts and periventricular structures of the human brain, in three-dimensional space, to aid student comprehension of ventricular morphology.

Whole Mount Labeling of Cilia in the Main Olfactory System of Mice

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Cited by 13 •

2014

Cilia of olfactory sensory neurons contain proteins of the signal transduction cascade, but a detailed spatial analysis of their distribution is difficult in cryosections. We describe here an optimized approach for whole mount labeling and en face visualization of ciliary proteins.

Perforated Patch-Clamp Recording of Olfactory Sensory Neurons in Mice

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2025

This video demonstrates electrophysiological recording of olfactory sensory neurons (OSNs) in mice using a perforated patch-clamp technique. The olfactory epithelium, containing OSNs with fluorophore-tagged odor receptors, is isolated from a mouse and secured in a recording chamber. A recording pipette is clamped to the dendritic knob of an OSN, and nystatin within the pipette perforates the membrane to form electrical connectivity with the cell. Finally, another pipette is used to deliver an...

Controlled Infusion of Radiopharmaceutical Agent Using a Peristaltic Pump

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2025

Source: Léa Rubira1, Hélène Sturer1, Louise Combette1, Sandra Santini1, Stéphane Renaud1, Cyril Fersing1,21Nuclear medicine department, Institut régional du Cancer de Montpellier (ICM), Univ Montpellier, 2IBMM, Univ Montpellier, CNRS, ENSCMThis video demonstrates the safe, controlled infusion of a radiopharmaceutical using a peristaltic pump with a dual-line cassette system. The setup includes connecting saline and infusion lines, positioning the shielded vial, and initiating simultaneous...

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