The Leicester cerebral haemodynamics database: normative values and the influence of age and sex

Nikil Patel1,2, Ronney B Panerai1,2, Victoria Haunton1

  • 1Department of Cardiovascular Sciences, Cerebral Haemodynamics in Ageing and Stroke Medicine Research Group, University of Leicester, Leicester, LE2 7LX, UK.

Insights

Establishing normative values for cerebral hemodynamic parameters in healthy adults is crucial for clinical practice. This study defined age- and sex-specific normal ranges using transcranial Doppler, aiding research and disease identification.

Area of Science:

  • Neuroscience
  • Physiology
  • Medical Imaging

Background:

  • Normative physiological values are essential for clinical decision-making.
  • A lack of such data hinders research translation into clinical practice.
  • Age and sex influence physiological parameters, necessitating stratified analysis.

Purpose of the Study:

  • To establish robust normative ranges for cerebral hemodynamic parameters.
  • To assess the influence of age and sex on these parameters.
  • To create a valuable database for future clinical and research applications.

Main Methods:

  • Utilized transcranial Doppler (TCD) to record middle cerebral artery (MCA) blood flow velocity in healthy volunteers.
  • Continuously measured beat-to-beat blood pressure, heart rate, electrocardiogram, and end-tidal CO2.
  • Collected data from 129 participants (57 female, median age 57) under standardized conditions.

Main Results:

  • Defined normative values for cerebral hemodynamic parameters in a large, healthy cohort.
  • Identified age as a significant influencer of baseline hemodynamic and transfer function parameters.
  • Found significantly higher cerebral blood flow velocity and critical closing pressure in females compared to males.

Conclusions:

  • Presented age- and sex-defined normative values for cerebral hemodynamic parameters.
  • These values can reduce the need for control data in future studies.
  • Facilitates the identification of disease-associated changes in cerebral hemodynamics.