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Usage Examples
Filter by Meaning The sensory pathways of the midbrain are crucial for perception.
Lesions in the midbrain can cause a range of neurological symptoms.
The neurons in the midbrain are responsible for coordinating movement and sensory information.
The midbrain contains the tectum and tegmentum, which play important roles in vision, hearing, and movement.
The midbrain is an important part of the brain.
The midbrain controls many basic functions of the body.
The midbrain is a crucial region for processing auditory information.
The midbrain plays a role in the regulation of body temperature.
The midbrain contains the substantia nigra, which is involved in the control of movement.
Damage to the midbrain can result in loss of motor function.
The tectum is a region of the midbrain responsible for visual and auditory processing.
Damage to the midbrain can cause significant neurological problems.
The dopaminergic neurons in the midbrain play a crucial role in reward processing.
The ability to recognize and respond to danger is a crucial aspect of midbrain processing.
The use of midbrain transcranial magnetic stimulation in stroke rehabilitation is a promising new approach.
The results of midbrain stimulation experiments have contributed significantly to our understanding of brain function.
Researchers use midbrain stimulation to investigate the neural mechanisms underlying behavior.
Midbrain stimulation has shown promising results in treating certain neurological disorders.
The effects of midbrain stimulation can be measured using various imaging techniques.
Scientists use midbrain stimulation to study how the brain responds to sensory stimuli.
Researchers are studying the effects of midbrain deep brain stimulation on Parkinson's disease.
Midbrain stimulation is a promising treatment for depression that does not respond to medication.
The effects of midbrain stimulation on memory consolidation are currently being studied.
Midbrain stimulation has been used to investigate the effects of drugs on the brain.
The use of midbrain electrical stimulation in fMRI studies has improved our understanding of brain function.
Midbrain stimulation is a non-invasive technique that is increasingly being used to study brain function.
Midbrain stimulation has been shown to enhance cognitive function in rats.
A recent study investigated the effects of midbrain optogenetic stimulation on social behavior in mice.
Studies have linked midbrain dysfunction to mood disorders such as depression and anxiety, suggesting that it plays a role in emotional regulation.
The midbrain is involved in the production of dopamine, a neurotransmitter that regulates mood and motivation.
The midbrain is composed of two main parts: the tectum and the tegmentum.
The midbrain is connected to the spinal cord and the cerebral cortex.
Damage to the midbrain can result in eye movement disorders such as nystagmus and strabismus.
The midbrain is responsible for relaying information from the spinal cord to the brain, making it a vital part of the nervous system.
The midbrain plays a vital role in regulating sleep and wakefulness.
The midbrain is responsible for transmitting visual and auditory information to the brain.
Damage to the midbrain can lead to sleep disorders.
The midbrain is the smallest region of the brainstem.
The midbrain controls the movements of the eyes and the eyelids.
Midbrain stimulation is a non-invasive way to modulate brain activity.
High-frequency midbrain stimulation has been found to reduce symptoms of chronic pain in some patients.
Midbrain stimulation is a commonly used technique in neuroscience research.
The midbrain stimulation method can help scientists understand how the brain processes information.
Midbrain stimulation is a relatively simple technique that can be used in both animals and humans.
Midbrain stimulation has been shown to reduce symptoms of anxiety in some patients.
The midbrain structures play a critical role in regulating movement and coordination throughout the body.
The midbrain plays a crucial role in the regulation of body temperature.
The athlete was able to maintain a midbrain state of consciousness during the competition.
The midbrain condition left him feeling groggy and disoriented.
The medication caused him to experience a midbrain state.
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