Oxyhemoglobin desaturation and aberrant carbon dioxide homeostasis during electrically stimulated exercise in a ventilator-dependent tetraplegic patient

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Deutscher übersetzter Titel:Abfall der Haemoglobinsauerstoffsaettigung und abweichende Kohlendioxydhomoeostase unter elektrostimulierter Muskelarbeit bei einem von einem Atemgeraet abhaengigen Tetraplegiker
Autor:Nash, M.S.; Jacobs, P.L.; Klerk, K.M.; Green, B.A.
Erschienen in:Archives of physical medicine and rehabilitation
Veröffentlicht:79 (1998), 7, S. 873-876, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Gedruckte Ressource
Sprache:Englisch
ISSN:0003-9993, 1532-821X
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Erfassungsnummer:PU199810304801
Quelle:BISp

Abstract des Autors

This single-subject case examined oxyhemoglobin saturation and alveolar end-tidal carbon dioxide levels in a ventilator-dependent tetraplegic patient undergoing electrical stimulation cycle ergometry. When exercising with a closed tracheostomy cuff under resting ventilator settings (resting intermittent mandatory ventilation; frequency = 6 breaths/min, tidal volume = 83.3 mL, minute ventilation = 5 L/min), his oxyhemoglobin saturation decreased from 100% to 92%, while alveolar end-tidal carbon dioxide increased linearly to 47 mmHg. These undesirable changes were corrected under adjusted intermittent mandatory ventilation conditions (frequency = 12 breaths/min, tidal volume = 83.3 mL, minute ventilation = 10 L/min), during which oxyhemoglobin saturation remained above 98% and the alveolar end-tidal carbon dioxide trend resembled that of ventilator-independent tetraplegic individuals undergoing the same exercise. Because the subject's heart rate was higher under adjusted ventilation conditions, these responses may have been caused by augmented venous return resulting from greater abdominothoracic pumping at the higher breathing frequency. These findings support the need to modify ventilator settings in ventilator-dependent tetraplegic persons while undergoing exercise to maintain oxyhemoglobin saturation and carbon dioxide homeostasis. Verf.-Referat