Acetabular Labrum

The acetabular labrum is a ring of fibrocartilage surrounding the hip socket, where it helps stabilize the joint and protect its articular surfaces. By deepening the acetabulum and forming a seal around the femoral head, the labrum helps maintain joint congruence, distribute loads, and support fluid pressure during movement. Injury or degeneration can disrupt these functions and contribute to hip pain, clicking, instability, or cartilage damage. Understanding acetabular labrum anatomy and biomechanics supports clinical assessment, interpretation of imaging, and treatments such as hip arthroscopy, labral repair, or reconstruction.

Acetabular Labrum - Related Videos

Education

JoVE Science Education - Clinical Skills

Shoulder Exam I

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2023

Source: Robert E. Sallis, MD. Kaiser Permanente, Fontana, California, USA Examination of the shoulder can be complex, because it actually consists of four separate joints: are the glenohumeral (GH) joint, the acromioclavicular (AC) joint, the sternoclavicular joint, and the scapulothoracic joint. The GH joint is primarily responsible for shoulder motion and is the most mobile joint in the body. It has been likened to a golf ball sitting on a tee and is prone to instability. It is held in place...

Research

JoVE Journal - Biology

Cancer Borealis Stomatogastric Nervous System Dissection

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Cited by 103 •

2009

The stomatogastric nervous system (STNS) of the Jonah crab (C. borealis) can be used for electrophysiology, immunohistochemistry, and cell culture studies. The STNS extraction is done in two parts: the gross and fine dissection.

Non-invasive 3D-Visualization with Sub-micron Resolution Using Synchrotron-X-ray-tomography

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Cited by 9 •

2008

We used synchrotron X-ray tomography at the European Synchrotron Radiation Facility (ESRF) to non-invasively produce 3D tomographic datasets with a pixel-resolution of 0.7µm. Using volume rendering software, this allows the reconstruction of internal structures in their natural state without the artefacts produced by histological sectioning.

In vivo Ca2+- Imaging of Mushroom Body Neurons During Olfactory Learning in the Honey Bee

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Cited by 13 •

2009

Bees can be conditioned in an appetitive olfactory learning paradigm (PER-conditioning). Using odors as stimuli, we established a method in which behavior is recorded while simultaneously Calcium Imaging is used to measure odor evoked activity in mushroom body neurons in vivo.

In vitro Functional Characterization of Mouse Colorectal Afferent Endings

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Cited by 21 •

2015

This video demonstrates a protocol for conducting single-fiber electrophysiological recordings on an in vitro mouse colorectum-nerve preparation.

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