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April 29, 2005Journal of Applied Physiology248 citationsOpen Access

Blood pressure and blood flow variation during postural change from sitting to standing: model development and validation

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MOMette S. OlufsenNorth Carolina State UniversityJOJohnny T. OttesenRoskilde UniversityHTHien TranBrown University

Key Result

A mathematical model incorporating autonomic regulation and cerebral autoregulation successfully predicted dynamic changes in blood pressure and blood flow during postural change in a young subject.

Structured PICO

P
Population
A mathematical model validated using physiological data from a single young subject during postural change from sitting to standing.
E
Exposure
Postural change from sitting to standing (modeled)
O
Outcome
Dynamic changes in beat-to-beat arterial blood pressure and middle cerebral artery blood flow velocitysurrogate

This mathematical model successfully predicts complex hemodynamic responses, including blood pressure and cerebral blood flow changes, during postural shifts.

Abstract

Short-term cardiovascular responses to postural change from sitting to standing involve complex interactions between the autonomic nervous system, which regulates blood pressure, and cerebral autoregulation, which maintains cerebral perfusion. We present a mathematical model that can predict dynamic changes in beat-to-beat arterial blood pressure and middle cerebral artery blood flow velocity during postural change from sitting to standing. Our cardiovascular model utilizes 11 compartments to describe blood pressure, blood flow, compliance, and resistance in the heart and systemic circulation. To include dynamics due to the pulsatile nature of blood pressure and blood flow, resistances in the large systemic arteries are modeled using nonlinear functions of pressure. A physiologically based submodel is used to describe effects of gravity on venous blood pooling during postural change. Two types of control mechanisms are included: 1) autonomic regulation mediated by sympathetic and parasympathetic responses, which affect heart rate, cardiac contractility, resistance, and compliance, and 2) autoregulation mediated by responses to local changes in myogenic tone, metabolic demand, and CO(2) concentration, which affect cerebrovascular resistance. Finally, we formulate an inverse least-squares problem to estimate parameters and demonstrate that our mathematical model is in agreement with physiological data from a young subject during postural change from sitting to standing.

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Cite This Study

Olufsen et al. (2005) studied this question. Postural change from sitting to standing was evaluated on Dynamic changes in beat-to-beat arterial blood pressure and middle cerebral artery blood flow velocity. A mathematical model incorporating autonomic regulation and cerebral autoregulation successfully predicted dynamic changes in blood pressure and blood flow during postural change in a young subject.

synapsesocial.com/papers/6a62f031cd7899abd6b6ddc4https://doi.org/10.1152/japplphysiol.00177.2005
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