Influence of head-up tile and lower body negative pressure on the internal jugular vein.

Physiol Rep

Department of Physical Therapy, Faculty of Health Science, Kyorin University, Tokyo, Japan.

Published: May 2022

AI Article Synopsis

  • Head-up tilt (HUT) and lower body negative pressure (LBNP) are experimental methods used to study how the body responds to gravity-induced stress, specifically focusing on the internal jugular vein (IJV).
  • The study found that HUT caused a significantly greater decrease in the cross-sectional area of the IJV compared to LBNP, suggesting that HUT exerts more gravitational stress on the body.
  • These findings indicate that the method used to induce orthostatic stress can influence how cerebral blood flow is regulated, particularly through effects on venous outflow.

Article Abstract

Head-up tilt (HUT)-induced gravitational stress causes collapse of the internal jugular vein (IJV) by decreasing central blood volume and through mass-effect from the surrounding tissues. Besides HUT, lower body negative pressure (LBNP) is used to stimulate orthostatic stress as an experimental model. Compared to HUT, LBNP has less of a gravitational effect because of the supine position; therefore, we hypothesized that LBNP causes less of a decrease in the cross-sectional area of the IJV compared to HUT. We tested the hypothesis by measuring the cross-sectional area of the IJV using B-mode ultrasonography while inducing orthostatic stress at levels of -40 mmHg LBNP and 60° HUT. The cross-sectional area of IJV decreased from the resting baseline during both LBNP and HUT trials, but the LBNP-induced decrease in the cross-sectional area of IJV was smaller than that of HUT (right, -45% ± 49% vs. -78% ± 27%, p = 0.008; left, -49% ± 27% vs. -78% ± 20%, p = 0.004). Since changes in venous outflow may affect cerebral arterial circulation, the findings of the present study suggest that orthostatic stress induced by different techniques modulates cerebral blood flow regulation through its effect on venous outflow.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9114655PMC
http://dx.doi.org/10.14814/phy2.15248DOI Listing

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