Literature DB >> 8727545

Inspiratory coactivation of the genioglossus enlarges retroglossal space in laryngectomized humans.

I Kobayashi1, A Perry, J Rhymer, B Wuyam, P Hughes, K Murphy, J A Innes, J McIvor, A D Cheesman, A Guz.   

Abstract

To investigate the relationship between the electrical activity of the genioglossus (GG-EMG) and associated tongue movement, seven laryngectomized subjects breathing through a tracheal stoma (without pressure or flow change in the upper airway) were studied in the supine position. Tongue movement, with the use of lateral fluoroscopy, and GG-EMG expressed as a percentage of maximum voluntary genioglossal activation were monitored simultaneously during 1) spontaneous inspiration (SI), 2) resistive loaded inspiration (LI), and 3) rapid inspiration (RI). Tongue position during each maneuver was compared with its position during spontaneous expiration. Peak GG-EMG during the three maneuvers was significantly different from each other (SI: 5.4 +/- 1.6, LI: 11.9 +/- 1.8, and RI: 51.6 +/- 9.4 (SE) %, respectively). Associated forward movement of the posterior aspect of the tongue was minimum during SI; however, significant movement was observed during LI, and this was increased during RI. Significant covariance existed between peak GG-EMG and this movement. Genioglossal coactivation with inspiration enlarges the glossopharyngeal airway, particularly in its caudal part. In subjects with intact upper airways, this activation may protect or enhance upper airway patency in an effort-dependent manner.

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Year:  1996        PMID: 8727545     DOI: 10.1152/jappl.1996.80.5.1595

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  24 in total

1.  Genioglossal inspiratory activation: central respiratory vs mechanoreceptive influences.

Authors:  G Pillar; R B Fogel; A Malhotra; J Beauregard; J K Edwards; S A Shea; D P White
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2.  The effect of increased genioglossus activity and end-expiratory lung volume on pharyngeal collapse.

Authors:  Amy S Jordan; David P White; Robert L Owens; Danny J Eckert; Shilpa Rahangdale; Susie Yim-Yeh; Atul Malhotra
Journal:  J Appl Physiol (1985)       Date:  2010-05-27

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Journal:  J Thorac Dis       Date:  2015-08       Impact factor: 2.895

4.  Computational simulation of human upper airway collapse using a pressure-/state-dependent model of genioglossal muscle contraction under laminar flow conditions.

Authors:  Yaqi Huang; Atul Malhotra; David P White
Journal:  J Appl Physiol (1985)       Date:  2005-04-14

5.  Influence of airway pressure on genioglossus activity during sleep in normal children.

Authors:  Eliot S Katz; Carole L Marcus; David P White
Journal:  Am J Respir Crit Care Med       Date:  2006-01-26       Impact factor: 21.405

6.  Abraham Guz (1929-2014).

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7.  A texture analysis method for MR images of airway dilator muscles: a feasibility study.

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Review 8.  Obstructive Sleep Apnea-a Perioperative Risk Factor.

Authors:  Philipp Fassbender; Frank Herbstreit; Matthias Eikermann; Helmut Teschler; Jürgen Peters
Journal:  Dtsch Arztebl Int       Date:  2016-07-11       Impact factor: 5.594

9.  Ketamine activates breathing and abolishes the coupling between loss of consciousness and upper airway dilator muscle dysfunction.

Authors:  Matthias Eikermann; Martina Grosse-Sundrup; Sebastian Zaremba; Mark E Henry; Edward A Bittner; Ulrike Hoffmann; Nancy L Chamberlin
Journal:  Anesthesiology       Date:  2012-01       Impact factor: 7.892

10.  Airway dilator muscle activity and lung volume during stable breathing in obstructive sleep apnea.

Authors:  Amy S Jordan; David P White; Yu-Lun Lo; Andrew Wellman; Danny J Eckert; Susie Yim-Yeh; Matthias Eikermann; Scott A Smith; Karen E Stevenson; Atul Malhotra
Journal:  Sleep       Date:  2009-03       Impact factor: 5.849

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