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Neurons

171 Sentences | 10 Meanings

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The enteric nervous system is sometimes called the "second brain" because it contains so many neurons.
Some medications can affect the activity of neurons in the enteric nervous system, leading to digestive side effects.
The enteric nervous system contains a complex network of neurons that can function independently of the brain and spinal cord.
Neurons are among the most complex cells in the human body.
The discovery of neurons and their function revolutionized the field of neuroscience.
Research on neurons has advanced our understanding of brain function.
The communication between neurons is crucial for our ability to think and feel.
Multiple sclerosis is a disease that affects the myelin surrounding neurons.
Neurons help to transmit signals in the nervous system.
Damage to neurons in the spinal cord can lead to paralysis.
The response of the neurons in the retina to light is called a visual sensation.
The retina contains millions of neurons that work together to form images.
Damage to the neurons in the retina can cause vision problems.
The activity of neurons in the retina is affected by different colors of light.
The sensitivity of neurons in the retina determines our ability to see in low light.
The optic nerve is made up of neurons that originate in the retina.
The neurons in the retina convert light into electrical signals.
Rods and cones are the two types of neurons found in the retina.
The neurons in the retina send signals to the brain.
Neurons in the retina are responsible for transmitting visual information to the brain.
The neurons in the retina are located at the back of the eye.
Retinal neurons are essential for your ability to see in low light.
The neurons in the retina are highly specialized cells that allow us to see.
Some studies have suggested that video game addiction may be related to the release of dopamine from neurons in the brain.
Dopamine neurons in the striatum are involved in motor control and coordination.
Dopamine neurons in the hypothalamus are involved in regulating appetite and food intake.
Dopamine neurons play a key role in addiction and substance abuse.
Research has suggested that abnormalities in dopamine neurons may contribute to bipolar disorder.
Exercise has been shown to increase the activity of dopamine neurons in the brain, which may contribute to the "runner's high."
Dopamine neurons in the brain's reward system can become dysregulated in conditions such as depression and anxiety.
Cocaine and other drugs can stimulate the release of dopamine from neurons in the brain.
Dopamine neurons in the ventral striatum are activated by anticipation of reward.
Some medications used to treat mental health disorders target dopamine neurons in the brain.
Parkinson's disease is caused by the degeneration of dopamine neurons.
The degeneration of dopamine neurons in the substantia nigra is a hallmark of Parkinson's disease.
Dopamine neurons are associated with feelings of pleasure and motivation.
Some research suggests that abnormalities in dopamine neurons may contribute to schizophrenia.
The function of respiratory neurons can be disrupted by genetic mutations or other abnormalities.
Certain drugs and chemicals can affect the activity of respiratory neurons and interfere with breathing.
In mammals, respiratory neurons play a critical role in maintaining the body's oxygen and carbon dioxide balance.
Damage or dysfunction of breathing neurons can result in respiratory disorders such as sleep apnea or central hypoventilation syndrome.
Respiratory neurons are part of a complex network of cells and structures that work together to regulate breathing.
Some neurons in the medulla oblongata are involved in the regulation of breathing.
Respiratory neurons receive input from sensory receptors in the lungs and airways, as well as higher brain centers involved in the conscious control of breathing.
The activity of respiratory neurons is modulated by a variety of factors, including blood pH, oxygen levels, and carbon dioxide levels.
Research on respiratory neurons has important implications for the development of treatments for respiratory disorders, as well as for understanding the basic mechanisms of breathing.
The activity of neurons in the brainstem can be affected by factors such as carbon dioxide levels in the blood.
The properties and connectivity of respiratory neurons can vary depending on their location within the brainstem and other factors.
Certain neurons in the brainstem are specialized for controlling the rhythm and depth of breathing.
Studies have shown that respiratory neurons can adapt to changes in respiratory demand, such as during exercise or exposure to high altitudes.
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Word Of The Day September 20, 2024
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