Type 2 Diabetes Mellitus (T2DM) is associated with chronic hyperglycemia and metabolic disturbances that affect not only glucose metabolism but also the central nervous system, autonomic nervous system, and cardiovascular function. Growing evidence suggests that individuals with T2DM are at increased risk of cognitive impairment, autonomic dysfunction, reduced functional capacity, and psychological distress. However, the interactions among metabolic status, brain activity, cardiac autonomic regulation, functional performance, and mental health have not been comprehensively investigated within a single study. This cross-sectional study aims to investigate the relationships between metabolic abnormalities and brain-heart axis function in adults with T2DM. Approximately 50 participants aged 40-65 years with a confirmed diagnosis of T2DM will undergo comprehensive assessments, including resting electroencephalography (EEG), heart rate variability (HRV), functional capacity tests (1-Minute Sit-to-Stand Test and 6-Minute Walk Test), cognitive function using the Montreal Cognitive Assessment (MoCA), physical activity using the International Physical Activity Questionnaire-Short Form (IPAQ-SF), and psychological status using the Depression Anxiety Stress Scale (DASS-21). Clinical and metabolic variables, including HbA1c, fasting blood glucose, lipid profile, and inflammatory markers, will also be collected from medical records. The primary objective is to determine whether metabolic disturbances are associated with alterations in EEG-derived brain activity and HRV-derived autonomic function and whether these changes are related to cognitive performance, functional capacity, physical activity, and psychological well-being. Correlation analyses, path analysis, and structural equation modeling will be used to explore direct and indirect relationships among these variables. The findings are expected to improve understanding of the brain-heart axis in T2DM and provide evidence for multidimensional assessment strategies to support early detection of neurocardiac dysfunction and optimize rehabilitation approaches.
Age range
40 Years – 75 Years
Sex
ALL
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Heart Rate Variability
Timeframe: Baseline (single assessment visit)
Delta Band Power
Timeframe: Baseline
Theta Band Power
Timeframe: Baseline
Alpha Band Power
Timeframe: Baseline
Beta Band Power
Timeframe: Baseline
Frontal Alpha Asymmetry
Timeframe: Baseline
Functional Connectivity
Timeframe: Baseline