Interneuronorigin example sentences

"Interneuronorigin" Example Sentences

1. The interneuronorigin of the spinal cord has a crucial role in processing sensory information.
2. Intense study has been done on the interneuronorigin of the human brain.
3. Interneuronorigin cells have a vital role in inhibiting unnecessary neural impulses in the body.
4. The interneuronorigin of the peripheral nervous system, such as the enteric nervous system, is less well understood.
5. There is still much research to be done on the development and functions of interneuronorigin cells.
6. An imbalance in interneuronorigin activity can lead to various neurological disorders.
7. The interneuronorigin of the cerebellum is highly complex and plays a crucial role in motor control.
8. The interneuronorigin of the retina has been extensively studied in recent years.
9. Interneuronorigin neurotransmitters such as dopamine have a significant impact on the brain's reward and reinforcement mechanisms.
10. The interneuronorigin cells in the spinal cord are critical in mediating pain signals.
11. Excitatory and inhibitory interneuronorigin cells work together to regulate the firing of neurons in brain circuits.
12. The interneuronorigin population in the hippocampus is essential for learning and memory processes.
13. New studies have revealed a potential link between interneuronorigin cell dysfunction and schizophrenia.
14. Interneuronorigin cells in the dorsal horn of the spinal cord play a crucial role in regulating sensory input from the body.
15. Some interneuronorigin cells are known to release histamine, which can lead to inflammation and allergic reactions.
16. The interneuronorigin cells that produce serotonin are involved in regulating mood and sleep.
17. Abnormal levels of GABA-producing interneuronorigin cells have been associated with epilepsy and seizure disorders.
18. The interneuronorigin cells in the basal ganglia are essential for coordinating movement and motor control.
19. Interneuronorigin cells in the amygdala are involved in processing emotional stimuli and responses.
20. Some interneuronorigin cells are known to release neuropeptides such as substance P, which is involved in pain perception.
21. The interneuronorigin cells in the spinal cord are also responsible for reflexive movements and responses.
22. Interneuronorigin cells in the striatum are involved in mediating reward-based learning and behavior.
23. Abnormalities in interneuronorigin cell signaling have been implicated in the development of Huntington's disease.
24. The interneuronorigin population in the neocortex is critical for information processing and integration.
25. Some interneuronorigin cells are known to release endorphins, which can act as natural painkillers.
26. Interneuronorigin cells in the thalamus are involved in relaying sensory information to the cortex.
27. The interneuronorigin cells in the spinal cord are responsible for coordinating respiratory and gastrointestinal functions.
28. Abnormalities in the interneuronorigin population in the prefrontal cortex have been linked to cognitive dysfunction and psychiatric disorders.
29. Interneuronorigin cells in the retina play a critical role in processing visual information and signaling to the brain.
30. The interneuronorigin cells in the hypothalamus are involved in regulating hunger, thirst, and other essential homeostatic functions.

Common Phases

1. Interneuronorigin is essential for maintaining neural communication.
2. The interneuronorigin plays a crucial role in processing information in the brain.
3. Researchers are studying the interneuronorigin to better understand neural disorders.
4. The development of the interneuronorigin is a complex process.
5. Damage to the interneuronorigin can disrupt neural pathways.
6. Interneuronorigin connections are important for coordinated movements.
7. Excitatory and inhibitory signals are processed by interneuronorigin.
8. The interneuronorigin can modulate pain signals in the spinal cord.
9. Interneuronorigin dysfunction has been implicated in certain psychiatric disorders.
10. Interneuronorigin networks are involved in learning and memory.

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