Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Peripheral Nervous System: Ganglia and Nerves01:24

Peripheral Nervous System: Ganglia and Nerves

7.8K
The Peripheral Nervous System (PNS) is a crucial component of the body's neural network, extending beyond the central nervous system (CNS) to bridge the gap between the CNS and the external environment. It encompasses nerves, ganglia, and sensory receptors.
Nerves
The nerve is a bundle of axons that serves as the communication highway in the PNS. Each nerve is ensheathed in a protective layer of connective tissue called the epineurium. This outermost layer safeguards the nerve and supports the...
7.8K
Sympathetic Pathways: Sympathetic Chain Ganglia01:20

Sympathetic Pathways: Sympathetic Chain Ganglia

7.2K
The sympathetic chain ganglia, also known as the sympathetic trunk ganglia or paravertebral ganglia, are a series of ganglia located bilaterally on either side of the spinal column. These ganglia serve as relay stations for the sympathetic nervous system. Preganglionic neurons originating in the spinal cord project their axons to the sympathetic chain ganglia. Within the ganglia, these preganglionic fibers synapse with postganglionic neurons.The postganglionic neurons of the sympathetic trunk...
7.2K
Sympathetic Pathways: Collateral Ganglia and Adrenal Medulla01:27

Sympathetic Pathways: Collateral Ganglia and Adrenal Medulla

3.2K
The sympathetic pathways of the collateral ganglia and adrenal medulla serve unique but interconnected roles in the sympathetic response.
Collateral Ganglia
Sympathetic preganglionic axons reach the collateral ganglia along the route of splanchnic nerves. These nerves bypass the sympathetic trunk and communicate with sympathetic postganglionic neurons housed in the prevertebral ganglia. These ganglia supply the organs of the abdominopelvic cavity.
The greater splanchnic nerve, formed by the...
3.2K
Cranial Part of Parasympathetic Division01:18

Cranial Part of Parasympathetic Division

2.6K
The cranial part of the parasympathetic division plays a crucial role in regulating the visceral functions of the head and specific structures in the neck, thoracic, and abdominopelvic cavities. Preganglionic fibers of the parasympathetic division exit the brain through cranial nerves III (oculomotor), VII (facial), IX (glossopharyngeal), and X (vagus), delivering parasympathetic output to the respective visceral structures.
The vagus nerve (cranial nerve X) alone accounts for approximately 75...
2.6K
Autonomic Nervous System: Overview01:26

Autonomic Nervous System: Overview

6.4K
The human nervous system is divided into two main parts: the central nervous system (CNS) and the peripheral nervous system (PNS). The CNS is composed of the brain and spinal cord, while the PNS contains nerve cells, clusters of nerve cells, and the sensory receptors that are outside the CNS. The PNS has two types of nerve cells: sensory (afferent) and motor (efferent). Sensory cells send signals to the CNS from receptors, and motor cells carry signals from the CNS to organs, muscles, and...
6.4K
Spinal Nerves: Plexus II01:21

Spinal Nerves: Plexus II

3.1K
The plexuses of the lower body include the lumbar, sacral, and coccygeal plexuses, which innervate the abdomen, pelvis, legs, and coccygeal region. These plexuses control the transmission of sensory information and coordinate motor functions of the lower body.
The Lumbar Plexus
The lumbar plexus is situated within the lumbar region of the back and is primarily formed by the first four lumbar spinal nerves (L1 to L4). This plexus extends its branches into several nerves, including the...
3.1K

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Breakage of the metal tray in total knee replacement.

Orthopedics·2014
Same author

High-throughput gene expression analysis at the level of single proteins using a microfluidic turbidostat and automated cell tracking.

Philosophical transactions of the Royal Society of London. Series B, Biological sciences·2012
Same author

Robotic assisted spinal surgery--from concept to clinical practice.

Computer aided surgery : official journal of the International Society for Computer Aided Surgery·2007
Same author

Breast dosimetry using high-resolution voxel phantoms.

Radiation protection dosimetry·2005
Same author

Calculation of the properties of digital mammograms using a computer simulation.

Radiation protection dosimetry·2005
Same author

Monte Carlo simulation of a mammographic test phantom.

Radiation protection dosimetry·2005

Related Experiment Video

Updated: Apr 29, 2026

Fabrication of the Composite Regenerative Peripheral Nerve Interface C-RPNI in the Adult Rat
10:35

Fabrication of the Composite Regenerative Peripheral Nerve Interface C-RPNI in the Adult Rat

Published on: February 25, 2020

7.7K

Peroneal intraneural ganglion.

M Roffman, D G Mendes, G Ullman

    Orthopedics
    |May 15, 2014
    PubMed
    Summary

    This report details a rare case of an intraneural cyst, exploring its clinical presentation, potential causes, and available treatment options for this uncommon nerve condition.

    Area of Science:

    • Neurology
    • Neurosurgery
    • Pathology

    Background:

    • Intraneural cysts are exceptionally rare, often presenting diagnostic challenges.
    • This study focuses on a specific case to illuminate the condition's characteristics.

    Discussion:

    • The paper examines the clinical manifestations associated with intraneural cysts.
    • Etiological factors contributing to the development of intraneural cysts are explored.
    • Review of current literature on treatment modalities for intraneural cysts is provided.

    Key Insights:

    • Highlights the rarity and diagnostic complexity of intraneural cysts.
    • Connects clinical presentation with potential underlying causes.
    • Summarizes therapeutic strategies documented in medical literature.

    More Related Videos

    The Muscle Cuff Regenerative Peripheral Nerve Interface for the Amplification of Intact Peripheral Nerve Signals
    07:30

    The Muscle Cuff Regenerative Peripheral Nerve Interface for the Amplification of Intact Peripheral Nerve Signals

    Published on: January 13, 2022

    2.2K
    The Fibular Nerve Injury Method: A Reliable Assay to Identify and Test Factors That Repair Neuromuscular Junctions
    06:01

    The Fibular Nerve Injury Method: A Reliable Assay to Identify and Test Factors That Repair Neuromuscular Junctions

    Published on: August 11, 2016

    15.8K

    Related Experiment Videos

    Last Updated: Apr 29, 2026

    Fabrication of the Composite Regenerative Peripheral Nerve Interface C-RPNI in the Adult Rat
    10:35

    Fabrication of the Composite Regenerative Peripheral Nerve Interface C-RPNI in the Adult Rat

    Published on: February 25, 2020

    7.7K
    The Muscle Cuff Regenerative Peripheral Nerve Interface for the Amplification of Intact Peripheral Nerve Signals
    07:30

    The Muscle Cuff Regenerative Peripheral Nerve Interface for the Amplification of Intact Peripheral Nerve Signals

    Published on: January 13, 2022

    2.2K
    The Fibular Nerve Injury Method: A Reliable Assay to Identify and Test Factors That Repair Neuromuscular Junctions
    06:01

    The Fibular Nerve Injury Method: A Reliable Assay to Identify and Test Factors That Repair Neuromuscular Junctions

    Published on: August 11, 2016

    15.8K

    Outlook:

    • Further research into the pathogenesis of intraneural cysts is warranted.
    • Improved diagnostic techniques may aid in earlier detection.
    • Comparative studies on treatment efficacy could refine clinical management.