The SIC-HR framework proposes a theoretical model for migraine that integrates cardiovascular rhythms, cerebrospinal fluid dynamics, and predictive brain mechanisms as a dynamic regulatory process.
This preprint presents the SIC-HR (Systemic Incoherence of Cardiac–Hydrodynamic Rhythms) framework, a theoretical model for migraine that reframes the disorder as a dynamic regulatory process rather than a discrete pathological event. The model integrates cardiovascular rhythms, cerebrospinal fluid dynamics, and predictive brain mechanisms to explain the temporal accumulation of unresolved activation states preceding migraine attacks. SIC-HR does not aim to replace existing vascular, neurogenic, or CGRP-based models, but to provide a unifying perspective that accounts for timing-dependent symptom emergence, variability in pharmacological response, and the presence of systemic manifestations beyond pain. Testable predictions and clinical implications are discussed, positioning the framework as a complementary hypothesis for future experimental and translational research.
Melina Soledad Amestoy (2026) studied Migraine. SIC-HR (Systemic Incoherence of Cardiac-Hydrodynamic Rhythms) framework was evaluated. The SIC-HR framework proposes a theoretical model for migraine that integrates cardiovascular rhythms, cerebrospinal fluid dynamics, and predictive brain mechanisms as a dynamic regulatory process.