Neurology Center

Integrative Neurological Care for Brain and Nerve Health

The Neurology Center at Alternative Medical Care of Arizona provides evaluation and integrative treatment options for patients with memory loss, white matter disease, neuropathy, Parkinson’s disease, stroke recovery concerns, and other neurological conditions.

Featured Neurological Conditions


  • White Matter Disease and Memory Loss
  • Peripheral Neuropathy
  • Small Fiber Neuropathy
  • Parkinson’s Disease
  • Cognitive Decline and Dementia
  • Stroke Recovery
  • Brain Health Optimization

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White Matter Disease and Memory Loss


White matter disease is commonly identified on MRI scans and may be associated with memory loss, cognitive decline, impaired balance, gait disturbances, and vascular risk factors.

Peripheral Neuropathy


Peripheral neuropathy can cause numbness, burning, tingling, weakness, and reduced quality of life. We provide comprehensive evaluations and discuss available treatment options, including regenerative medicine strategies when appropriate.

Stem Cells and Neuropathy


Mesenchymal stem cells are being investigated for their potential role in supporting nerve repair, reducing inflammation, and improving the environment surrounding damaged nerves. Patients with peripheral neuropathy often seek information regarding regenerative medicine options when conventional treatments have provided limited relief. Current research continues to evaluate the role of stem cells in neurological conditions, including neuropathy and other disorders affecting the peripheral nervous system.

Dementia


Mesenchymal stem cells (MSCs) are being studied as a potential treatment for dementia and age-related cognitive decline. These cells may help reduce inflammation, support repair mechanisms within the brain, improve communication between nerve cells, and enhance the environment surrounding damaged neurons.

Parkinson’s Disease


Mesenchymal stem cells (MSCs) are being studied as a potential treatment for dementia and age-related cognitive decline. These cells may help reduce inflammation, support repair mechanisms within the brain, improve communication between nerve cells, and enhance the environment surrounding damaged neurons..