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The Elusive Path of Brain Tissue Oxygenation and Cerebral Perfusion in Harness Hang Syncope in Mountain Climbers.

作者信息

Lanfranconi Francesca, Pollastri Luca, Corna Giovanni, Bartesaghi Manuela, Novarina Massimiliano, Ferri Alessandra, Miserocchi Giuseppe Andrea

机构信息

1 Laboratory of Clinical Physiology and Sport Medicine, School of Medicine and Surgery, University of Milano-Bicocca , Monza, Italy .

2 PENTAVIS , Laboratory of Sport Sciences, Lecco, Italy .

出版信息

High Alt Med Biol. 2017 Dec;18(4):363-371. doi: 10.1089/ham.2017.0028. Epub 2017 Oct 5.

DOI:10.1089/ham.2017.0028
PMID:28981369
Abstract

UNLABELLED

Lanfranconi, Francesca, Luca Pollastri, Giovanni Corna, Manuela Bartesaghi, Massimiliano Novarina, Alessandra Ferri, and Giuseppe Andrea Miserocchi. The elusive path of brain tissue oxygenation and cerebral perfusion in harness hang syncope in mountain climbers. High Alt Med Biol. 18:363-371, 2017.

AIM

Harness hang syncope (HHS) is a risk that specifically affects wide ranges of situations requiring safety harnesses in mountains. An irreversible orthostatic stasis could lead to death if a prompt rescue is not performed. We aimed at evaluating the risk of developing HHS and at identifying the characteristics related to the pathogenesis of HHS.

RESULTS

Forty adults (aged 39.1 [8.2] years) were enrolled in a suspension test lasting about 28.7 (11.4) minutes. We measured cardiovascular parameters, and near infrared spectroscopy (NIRS) was used to assess cerebral hypoxia by changes in the concentration of oxyhemoglobin (Δ[HbO]) and de-oxyhemoglobin (Δ[HHb]). In the four participants who developed HHS: (1) systolic and diastolic blood pressure showed ample oscillations with a final abrupt drop (∼30 mmHg); (2) Δ[HbO] increased after 8-12 minutes of suspension and reached a plateau before HHS; and (3) Δ[HHb] decreased with a final abrupt increase before syncope.

CONCLUSIONS

Participants who developed HHS failed to activate cardiovascular reflexes that usually safeguard O availability to match the metabolic needs of the brain tissue. Since cerebral hypoxia was detected as an early phenomenon by Δ[HbO] and Δ[HHb] changes, NIRS measurement appears to be the most important parameter to monitor the onset of HHS.

摘要

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