Vagal feedback in the entrainment of respiration to mechanical ventilation in sleeping humans
Autor: | P M Simon, A M Habel, James C. Leiter, J. A. Daubenspeck |
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Rok vydání: | 2000 |
Předmět: |
Adult
Male genetic structures Heart-Lung Transplantation Physiology medicine.medical_treatment Respiratory physiology Non-rapid eye movement sleep Feedback Physiology (medical) Reflex Humans Medicine Wakefulness Slow-wave sleep Mechanical ventilation Hering–Breuer reflex Electromyography business.industry musculoskeletal neural and ocular physiology digestive oral and skin physiology Vagus Nerve Middle Aged Denervation Respiration Artificial Respiratory Function Tests Transplantation Anesthesia Respiratory Mechanics Female sense organs Sleep business Entrainment (chronobiology) Lung Transplantation |
Zdroj: | Journal of Applied Physiology. 89:760-769 |
ISSN: | 1522-1601 8750-7587 |
DOI: | 10.1152/jappl.2000.89.2.760 |
Popis: | We studied the capacity of four “normal” and six lung transplant subjects to entrain neural respiratory activity to mechanical ventilation. Two transplant subjects were studied during wakefulness and demonstrated entrainment indistinguishable from that of normal awake subjects. We studied four normal subjects and four lung transplant subjects during non-rapid eye movement (NREM) sleep. Normal subjects entrained to mechanical ventilation over a range of ventilator frequencies that were within ±3–5 breaths of the spontaneous respiratory rate of each subject. After lung transplantation, during which the vagi were cut, subjects did demonstrate entrainment during NREM sleep; however, entrainment only occurred at ventilator frequencies at or above each subject's spontaneous respiratory rate, and entrainment was less effective. We conclude that there is no absolute requirement for vagal feedback to induce entrainment in subjects, which is in striking contrast to anesthetized animals in which vagotomy uniformly abolishes entrainment. On the other hand, vagal feedback clearly enhances the fidelity of entrainment and extends the range of mechanical frequencies over which entrainment can occur. |
Databáze: | OpenAIRE |
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