"Neurogliocyte" Pronounce,Meaning And Examples

"Neurogliocyte" Natural Recordings by Native Speakers

Neurogliocyte
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"Neurogliocyte" Meaning

A neurogliocyte is a type of glial cell found in the central nervous system, including the brain and spinal cord. Glial cells are non-neuronal cells that provide support and maintenance functions for neurons, the primary cells responsible for transmitting information through the nervous system. Neurogliocytes are a specific type of glial cell that play a crucial role in forming myelin, the fatty insulating substance that surrounds and protects nerve fibers, allowing them to transmit electrical signals more efficiently.

"Neurogliocyte" Examples

Example Sentences for "Neurogliocyte"


Neurogliocytes are found in the central nervous system and play a crucial role in maintaining the health of neurons. Here are five usage examples:
The neurogliocyte surrounding the axon of the neuron provided essential support and insulation.
Researchers have been studying the behavior of neurogliocytes in order to better understand their role in neurodegenerative diseases.
In the healthy brain, neurogliocytes are responsible for clearing away toxic waste products that can damage nearby neurons.
Damage to neurogliocytes has been linked to various neurological disorders, including Alzheimer's and Parkinson's disease.
The neurogliocyte's ability to detect and respond to changes in its surroundings makes it a potential target for the development of new therapies.

"Neurogliocyte" Similar Words

Neurofilament

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Neurofilament refers to a type of protein found in the outermost layer of neurons, the plasma membrane. Specifically, neurofilaments are a type of intermediate filament protein that provides structural support and stability to the neurons, particularly in the axons, which are the long, slender parts of neurons responsible for transmitting signals.

Neuroforaminal

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Neuroforaminal refers to a structure in the spine, particularly in the lumbar or thoracic vertebrae, where a spinal nerve exits the spinal cord. It is a canal-like space through which the nerve roots pass through to connect the spinal cord to the muscles and organs of the body. The neuroforamen is a narrow opening that allows the nerve roots to exit the spinal canal and travel out of the spine to reach their respective destinations.

Neurogenesis

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Neurogenesis is the process by which new neurons are generated from neural stem cells or precursors. It is a complex biological process that involves the differentiation of stem cells into neurons, the migration of these neurons to their correct locations, and the establishment of connections with other neurons. Neurogenesis is an ongoing process in the brain, with new neurons generated throughout life.

Neurogenetic

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Neurogenetic refers to the study of the relationship between genetic and environmental factors in the development and function of the nervous system, including the brain and nervous tissues. It is an interdisciplinary field that combines genetics, neuroscience, and psychology to understand the complex interactions between genes, environment, and neural development.

Neurogenetics

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Neurogenetics is the study of the relationship between genetics and neuroscience. It involves the examination of how genetic variations influence the development, structure, and function of the nervous system, as well as the prevention, diagnosis, and treatment of neurological and psychiatric disorders.

Neurogenic

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Neurogenic refers to something that originated or developed from the brain or nervous system. It can describe a condition or disorder that is caused by damage or malfunction of the brain or nervous system.

Neuroglia

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Neuroglia refers to the supportive cells in the central nervous system, including the brain and spinal cord. They outnumber neurons by a ratio of about 10:1 and have various functions, such as providing structural support, forming the blood-brain barrier, and participating in the removal of waste products.

Neuroglial

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Neuroglial refers to cells that provide structural and functional support to neurons in the central nervous system. Neuroglia, also known as glial cells, outnumber neurons and play crucial roles in maintaining the health and function of the nervous system. Their functions include providing nutrients and oxygen to neurons, removing waste products, and providing mechanical support. Examples of neuroglial cells include astrocytes, oligodendrocytes, and microglia.

Neuroglycopenia

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Neuroglycopenic

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Neuroglycopenic refers to a condition or state characterized by reduced levels of glucose in the nervous system.

Neurography

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Neurography is a non-invasive neurophysiological diagnostic test that uses electromyography (EMG) and electroencephalography (EEG) to record the electrical activity of the brain, nervous system, and muscles. It is used to evaluate the function and integrity of the nervous system, particularly in cases of neurological disorders, injuries, and diseases.

Neurohormonal

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Neurohormonal refers to the interactions between the nervous system and the endocrine system, which work together to control various bodily functions such as behavior, mood, appetite, growth, and metabolism. Neurohormonal responses involve the release of hormones by nerve cells (neurons) in response to changes in the nervous system, and these hormones can then affect other parts of the body. This concept is used in fields such as neuroscience, psychology, and medicine to understand various physiological and psychological processes and disorders.

Neurohormone

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A neurohormone is a type of hormone that is produced by the nervous system, particularly by the brain and spinal cord. Neurohormones are released into the bloodstream and then carried to specific parts of the body, where they can regulate various physiological functions, such as growth and development, metabolism, and emotional responses. Examples of neurohormones include serotonin, dopamine, and insulin-like growth factor 1 (IGF-1).

Neurohormones

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Neurohormones are chemical messengers that are produced by the nervous system and released into the blood, where they can bind to receptors and influence other cells or tissues. They play a crucial role in regulating various physiological processes, including:<br><br> Mood and emotional states<br> Appetite and metabolism<br> Sleep and wakefulness<br> Stress response<br> Growth and development<br> Circadian rhythms<br><br>Examples of neurohormones include:<br><br> Serotonin<br> Dopamine<br> Melatonin<br> Adrenaline<br> Insulin<br> Glucagon<br><br>Neurohormones can have both excitatory and inhibitory effects on the body, and their balance is essential for maintaining homeostasis and overall health. Imbalances or abnormalities in neurohormonal production or signaling have been implicated in various diseases and disorders, including depression, anxiety, diabetes, and obesity.

Neurohypophysis

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Neuroid

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