Conservative Neurorehabilitation of Higher-Order Cognitive Networks
Evidence-based assessment and rehabilitation of higher-order cognitive networks for clinicians in functional neurology
Master evidence-based cognitive neurorehabilitation. Assess and treat higher-order networks using vision, vestibular, and sensorimotor strategies.
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Course Description
Cognitive deficits following neurological injury or dysfunction are among the most complex clinical presentations clinicians encounter, yet conventional rehabilitation frameworks often address these networks in isolation rather than as integrated systems. The clinical gap is real: patients plateau, outcomes stall, and the underlying network dysfunction remains unaddressed.
This course equips clinicians with a functional neuroanatomy-grounded framework for assessing and rehabilitating higher-order cognitive networks. Dr. Ryan Harvey DC DACNB CFMP integrates vision, vestibular, sensorimotor, autonomic, and exercise-based strategies into a cohesive, individualized model of care. Clinicians gain practical tools for objective outcome measurement and targeted intervention, enabling more precise clinical decision-making and meaningfully better patient outcomes.
What you’ll learn:
- Apply functional neuroanatomy to map higher-order cognitive network dysfunction
- Conduct evidence-based clinical evaluations of cognitive and neurological deficits
- Integrate vision and vestibular rehabilitation into cognitive recovery protocols
- Design individualized treatment plans using sensorimotor and autonomic strategies
- Measure rehabilitation outcomes objectively to guide clinical decision-making
More About This Course
Higher-order cognitive dysfunction is one of the most clinically demanding presentations in contemporary neurological practice. Conditions ranging from traumatic brain injury and concussion to neurodegenerative and chronic neurological disorders produce deficits that extend across attention, executive function, memory, and sensory integration, yet standard rehabilitation frameworks rarely address these systems as the interconnected networks they actually are. Conservative neurorehabilitation of cognitive networks, guided by functional neuroanatomy and multimodal clinical reasoning, represents the evolving standard for clinicians prepared to deliver precise, individualized neurological care.
This course positions clinicians to operate at that level. Grounded in the functional neuroanatomy of cognitive systems and structured around evidence-based clinical evaluation, the training builds practical competency across the full rehabilitation spectrum. Participants gain a working framework for integrating vision, vestibular, sensorimotor, autonomic, and exercise-based rehabilitation into unified, patient-specific treatment plans. Objective outcome measures are addressed throughout, equipping clinicians to track functional change, refine intervention, and demonstrate the clinical impact of their care.
This course is designed for licensed clinicians in functional neurology, chiropractic neurology, and integrative neurological rehabilitation who are already engaged with complex neurological cases and ready to sharpen their rehabilitation framework. It is particularly relevant for practitioners working with post-concussion, acquired brain injury, or chronic neurological populations where cognitive network involvement is a defining feature of the clinical picture.
Components
Educational Syllabus
- Mapping the Brain's Cognitive Architecture
- Explore the functional neuroanatomy underpinning higher-order cognitive networks. Gain a systems-level framework that transforms how you conceptualize network dysfunction and sets the foundation for targeted clinical intervention.
- Precision Assessment of Cognitive and Neurological Deficits
- Develop command of evidence-based evaluation tools for cognitive and neurological deficits. Learn to identify network-specific impairments with clinical precision, moving beyond generalized screening toward meaningful diagnostic clarity.
- Integrated Rehabilitation Across Sensory and Autonomic Systems
- Discover how vision, vestibular, sensorimotor, autonomic, and exercise-based inputs interact within cognitive recovery. Build the clinical fluency to deploy multimodal rehabilitation strategies that address the whole network, not just the symptom.
- Building Individualized Plans and Measuring Real Outcomes
- Learn to synthesize assessment findings into individualized, goal-directed treatment plans. Apply objective outcome measures that track progress, validate your clinical decisions, and demonstrate the impact of your care.
Venue, Hotels & Schedule
Also includes


Conservative Neurorehabilitation of Higher-Order Cognitive Networks
Master evidence-based cognitive neurorehabilitation. Assess and treat higher-order networks using vision, vestibular, and sensorimotor strategies.
$
$
(
$
The Carrick Institute team is ready to assist with enrollment, CE approval, or program planning. Email visit our CE Portal or Contact Us directly.
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