September 17-18, 2026

8:00AM - 6:00PM

Proposed-Hotel Faber Park, Singapore

Autonomic Nervous System Disorders

Understanding Autonomic Nervous System Disorders

Autonomic Nervous System (ANS) disorders occur when the system responsible for regulating involuntary bodily functions—such as heart rate, blood pressure, digestion, and temperature control—does not function properly. Conditions such as dysautonomia and postural orthostatic tachycardia syndrome (POTS) can significantly impact quality of life and often overlap with neurological and mental health conditions.

Neuroimaging Advances in Autonomic Dysfunction

Neuroimaging Advances provide critical insights into brain regions that regulate autonomic control. Advanced imaging techniques help identify structural and functional abnormalities affecting autonomic regulation, supporting more accurate diagnosis and disease monitoring.

Precision Medicine for Autonomic Disorders

Precision Medicine enables personalized treatment strategies for ANS disorders by considering genetic, physiological, and environmental factors. Tailored approaches improve symptom management, particularly in patients with overlapping Mood Disorders.

The Role of Neuroinflammation in Autonomic Dysfunction

Neuroinflammation is increasingly recognized as a contributor to autonomic nervous system disorders. Chronic inflammation can disrupt autonomic signaling pathways, worsening cardiovascular, gastrointestinal, and cognitive symptoms.

Neurogenetics and Autonomic Regulation

Neurogenetics helps identify inherited factors that influence autonomic control. Genetic research supports early diagnosis and risk stratification for autonomic disorders, enabling proactive and individualized care.

MS Therapy Innovations and Autonomic Symptoms

MS Therapy Innovations address autonomic symptoms commonly experienced by individuals with multiple sclerosis. Targeted therapies aim to improve cardiovascular regulation, fatigue, and cognitive function.

Stroke Rehabilitation and Autonomic Recovery

Autonomic dysfunction is common following stroke and can affect recovery outcomes. Rehabilitation strategies that address autonomic regulation support cardiovascular stability, improve endurance, and enhance overall neurological recovery.

Autonomic Dysfunction in Treatment-Resistant Depression

Treatment-Resistant Depression is often associated with autonomic imbalance. Understanding ANS involvement helps guide integrative treatment approaches that address both mental health and physiological regulation.

Early Neurodevelopmental Detection of Autonomic Disorders

Early Neurodevelopmental Detection allows clinicians to identify autonomic dysfunction in children and adolescents. Early intervention improves long-term health outcomes and supports adaptive coping strategies.

Sleep & Brain Health in Autonomic Disorders

Sleep & Brain Health are closely linked to autonomic regulation. Sleep disturbances can worsen autonomic symptoms, while improving sleep quality supports nervous system balance and overall well-being.

Epilepsy and Autonomic Nervous System Dysfunction

Epilepsy Breakthroughs reveal important connections between seizure activity and autonomic regulation. Understanding these interactions helps reduce risks associated with cardiac and respiratory instability.

AI in Neurology and Autonomic Disorder Management

AI in Neurology enhances the diagnosis and monitoring of autonomic disorders by analyzing complex physiological and neurological data. AI-driven tools support early detection and personalized treatment planning.

Neuroplasticity & Recovery in Autonomic Disorders

Neuroplasticity & Recovery plays a vital role in restoring autonomic balance. Rehabilitation and lifestyle interventions leverage neuroplasticity to improve autonomic control and functional outcomes.

Stress & Brain Function in Autonomic Imbalance

Stress & Brain Function significantly influence autonomic activity. Chronic stress can exacerbate autonomic dysfunction, while stress management strategies support nervous system regulation and symptom relief.