Your brain has a special part. 
Your brain has a special group of parts. 

Deep inside your brain, there is a group of parts. We call these the basal ganglia. 

The basal ganglia have many different parts. One large part is the striatum. The striatum gets signals from many brain areas. Another part is the globus pallidus. This part helps control how you move. A smaller part is the substantia nigra. This part makes dopamine. Dopamine is a chemical that helps the brain work well. 
If these parts do not work right, it can cause problems. Some people may have trouble moving. This can lead to Parkinson's disease. This happens when the cells that make dopamine break down. Other problems can affect how people act or think. These parts are very important for a healthy brain.
The basal ganglia are a group of clusters found deep inside the brain. 

This system works through a series of steps and connections. The largest part is the striatum, which receives signals from many different brain areas. The striatum then sends information to other parts of the basal ganglia. One part, the globus pallidus, receives these signals and sends inhibitory signals back. Inhibitory means it acts like a brake to stop certain actions. The subthalamic nucleus helps by sending excitatory signals to the globus pallidus. This process helps the brain select the right movement at the right time.
Scientists have learned much about how these parts are built. During the development of a human embryo, the nervous system forms from three main parts. These are called the prosencephalon, mesencephalon, and rhombencephalon. The cells that form the basal ganglia move to their spots during this time. They are guided by structures called the lateral and medial ganglionic eminences. This careful journey ensures the brain is organized correctly from the start.
There are many specific parts within the basal ganglia to know. The striatum is divided into the dorsal striatum and the ventral striatum. The dorsal part includes the caudate nucleus and the putamen. The ventral part includes the nucleus accumbens and the olfactory tubercle. 
When these parts do not work correctly, it can change how a person feels or moves. For example, Parkinson's disease happens when dopamine-producing cells in the substantia nigra break down. 
The basal ganglia, also known as basal nuclei, are a group of subcortical nuclei found in the brains of vertebrates. These nuclei are clusters of neurons located deep within the brain. They sit at the base of the forebrain and the top of the midbrain. 

This system works through a complex process of action selection. The basal ganglia help the brain choose which specific behaviors to execute. They do this by regulating motor and premotor cortical areas. This regulation allows for smooth, voluntary movements. 
The basal ganglia consist of several distinct functional components. The largest component is the striatum. The striatum is divided into the dorsal striatum and the ventral striatum. The dorsal striatum contains the caudate nucleus and the putamen. The ventral striatum includes the nucleus accumbens and the olfactory tubercle. 
These components interact through specific pathways to control movement. The striatum receives input from many brain areas. However, it only sends its output to other parts of the basal ganglia. The globus pallidus receives input from the striatum. It then sends inhibitory output to various motor-related areas. 
The development of these structures begins in the early embryo. The central nervous system forms from three primitive brain vesicles. These are the prosencephalon, the mesencephalon, and the rhombencephalon. As the embryo grows, these vesicles divide into smaller, more specialized segments. During this time, cells migrate to form the basal ganglia. This migration is directed by the lateral and medial ganglionic eminences. This organized journey ensures the nuclei reach their correct positions in the adult brain.
Dysfunction in the basal ganglia can lead to serious neurological conditions. When these structures do not work correctly, it affects movement and behavior. Movement disorders are very common results of this dysfunction. Parkinson's disease is a major example. It involves the degeneration of dopamine-producing cells in the substantia nigra. 
The limbic sector of the basal ganglia is specifically tied to reward and emotion. This sector includes the nucleus accumbens, the ventral pallidum, and the ventral tegmental area (VTA). The VTA uses a mesolimbic pathway to send dopamine to the nucleus accumbens. This pathway is central to reward learning and cognition. 
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