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The medical research focused on investigating the subcerebral effects of Parkinson's disease on neural pathways.

The patient suffered from a subcerebral lesion that affected his motor coordination.

Subcerebral regions play a critical role in the autonomic nervous system, regulating various involuntary functions.

The neurosurgeon used advanced imaging techniques to navigate the subcerebral area and avoid critical brain regions.

Subcerebral development is essential for the formation of synapses and the establishment of neural networks.

Experiments in animal models have elucidated the subcerebral mechanisms involved in memory consolidation.

The subcerebral region is particularly important for emotional processing and has been linked to mental health disorders.

Subcerebral injuries can lead to changes in personality and behavior, highlighting the complexity of brain function.

Scientists are exploring the subcerebral interactions between different brain regions to understand complex behaviors.

In neurology, identifying subcerebral lesions is crucial for diagnosing and treating various neurological disorders.

Research into subcerebral structures is vital for understanding the basic mechanisms of brain function and pathology.

Subcerebral studies often involve functional MRI and other advanced imaging technologies to visualize deep brain structures.

The subcerebral area includes structures like the thalamus, hypothalamus, and brainstem, which are integral to brain function.

Understanding subcerebral pathways is essential for developing effective treatments for neurological conditions.

Subcerebral regions are particularly vulnerable to damage from strokes, leading to a range of cognitive and physical impairments.

The subcerebral system plays a key role in the regulation of stress responses and the HPA axis.

Subcerebral areas such as the amygdala and hippocampus are important for the formation and recall of memories.

Subcerebral mechanisms are involved in the integration of sensory information and the coordination of motor responses.

Researchers are using subcerebral models to study the genetic bases of neurological disorders.