Cite

1. Amin MR, Belafsky PC. Cough and Swallowing Dysfunction. Otolaryngol Clin N Am 2010; 43: 35–42.10.1016/j.otc.2009.12.001Search in Google Scholar

2. Bailey EF, Fregosi RF. Modulation of upper airway muscle activities by bronchopulmonary afferents. J Appl Physiol 2006; 101: 609–17.10.1152/japplphysiol.00204.2006Search in Google Scholar

3. Baekey DM, Morris KF, Gestreau C, Li Z, Lindsey BG, Shannon R: Medullary respiratory neuronesand control of laryngeal motoneurones during fictive eupnoea and cough in the cat. J Physiol Lond 2001; 534: 565-81.10.1111/j.1469-7793.2001.t01-1-00565.xSearch in Google Scholar

4. Barker JR, Thomas CF, Behan M. Serotonergic projections from the caudal raphe nuclei to the hypoglossal nucleus in male and female rats. Respir Physiol Neurobiol 2009; 165(2-3): 175-84.10.1016/j.resp.2008.11.008Search in Google Scholar

5. Batsel HL, Lines AJ Jr. Bulbar respiratory neurons participating in the sniff reflex in the cat. Exp Neurol 1973; 39(3): 469-81.10.1016/0014-4886(73)90031-9Search in Google Scholar

6. Bautista TG, Burke PGR, Sun QJ, Berkowitz RG, Pilowsky PM. The Generation of Post-Inspiratory Activity inLaryngeal Motoneurons: a Review. In: Homma I et al., editors. New Frontiers in Respiratory Control, Advances in Experimental Medicine and Biology 669, Springer; 2010. p. 143-49.10.1007/978-1-4419-5692-7_29Search in Google Scholar

7. Bautista TG, Dutschmann M. Ponto-medullary nuclei involved in the generation of sequential pharyngeal swallowing and concomitant protective laryngeal adduction in situ. J Physiol 2014; 592(12): 2605–23.10.1113/jphysiol.2014.272468Search in Google Scholar

8. Boers J, Hulshoff AC, DeWeerd H, Mouton LJ, Kuipers R, Holstege G. Afferent Projections to Pharynx and Soft Palate Motoneurons: A Light and Electron Microscopical Tracing Study in the Cat. J Comp Neurol 2005; 486: 18–38.10.1002/cne.20530Search in Google Scholar

9. Bouryi VA, Lewis DI. Enkephalinergic inhibition of raphe pallidus inputs to rat hypoglossal motoneurones in vitro. Neuroscience 2004; 129(1): 55-64.10.1016/j.neuroscience.2004.07.023Search in Google Scholar

10. Brancatisano TP, Dodd DS, Engel LA. Responses of the posterior cricoarytenoid and alae nasi muscles to indreased chemical drive in man. Respir Physiol 1986; 64(2): 177-89.10.1016/0034-5687(86)90040-XSearch in Google Scholar

11. Brandes IF, Zuperku EJ, Dean C, Hopp FA, Jakovcevic D, Stuth EA. Retrograde labeling reveals extensive distribution of genioglossal motoneurons possessing 5-HT2A receptors throughout the hypoglossal nucleus of adult dogs. Brain Res 2007; 1132(1): 110-9.10.1016/j.brainres.2006.10.099Search in Google Scholar

12. Chamberlin NL, Bocchiaro CM, Greene RW, Feldman JL. Nicotinic excitation of rat hypoglossal motoneurons. Neuroscience 2002; 115(3): 861-70.10.1016/S0306-4522(02)00454-2Search in Google Scholar

13. Chen Z, Travers SP, Travers JB. Inhibition of licking and the oral phase of rejection by microinjection of lidocaine in the medullary reticular formation. Appetite 1999; 33: 259.Search in Google Scholar

14. Chen Z, Travers JB. Inactivation of amino acid receptors in medullary reticular formation modulates and suppresses ingestion and rejection responses in the awake rat. Am J Physiol Regul Integr Comp Physiol 2003; 285: 68–83.10.1152/ajpregu.00054.2003Search in Google Scholar

15. Chuang CW, Cheng MT, Yang SJ, Hwang JC. Activation of ventrolateral medulla neurons by argi-nine vasopressin via V1A receptors produces inhibition on respiratory-related hypoglossal nerve discharge in the rat. Chin J Physiol 2005; 48(3): 144-54.Search in Google Scholar

16. Dehkordi O, Millis RM, Dennis GC, Coleman BR, Johnson SM, Changizi L, Ovid Trouth C. Alpha-7 and alpha-4 nicotinic receptor subunit immunoreactivity in genioglossus muscle motoneurons. Respir Physiol Neurobiol 2005; 145(2-3): 153-61.10.1016/j.resp.2004.09.003Search in Google Scholar

17. Doty RW, Bosma JF. An Electromyographic Deglutition Analysis of Reflex deglutition. J Neurophysiol 1956; 19: 44-60.10.1152/jn.1956.19.1.44Search in Google Scholar

18. Ertekin C, Aydogdu I. Neurophysiology of swallowing. Clin Neurophysiol 2003; 114(12): 2226-44.10.1016/S1388-2457(03)00237-2Search in Google Scholar

19. Ezure K, Oku Y, Tanaka I. Location and axonal projection of one type of swallowing interneurons in cat medulla. Brainn Res 1993; 632: 216-24.10.1016/0006-8993(93)91156-MSearch in Google Scholar

20. Fay RA, Norgren R. Identification of rat brainstem multisynaptic connections to the oral motor nuclei using pseudorabiesvirus. III. Lingual muscle motor systems. Brain Res Rev 1997; 25: 291–311.Search in Google Scholar

21. Gestreau C, Grélot L, Bianchi AL. Activity of respiratory laryngeal motoneurons during fictive coughing and swallowing. Exp Brain Res 2000; 130: 27–34.10.1007/s00221005000310638438Search in Google Scholar

22. Gestreau C, Dutschmann M, Obled S, Bianchi AL. Activation of XII motoneurons and premotor neurons duringvarious oropharyngeal behaviors. Respir Physiol Neurobiol 2005; 147: 159–76.10.1016/j.resp.2005.03.01515919245Search in Google Scholar

23. Hairston LE, Sauerland EK. Electromyography of the human palate: discharge patterns of the levator and tensor veli palatini. Electromyogr Clin Neurophysiol 1981; 21(2-3): 287-97.Search in Google Scholar

24. Hajiha M, DuBord MA, Liu H, Horner RL. Opioid receptor mechanisms at the hypoglossal motor pool and effects on tongue muscle activity in vivo. J Physiol 2009; 587(Pt 11): 2677-92.10.1113/jphysiol.2009.171678271403019403616Search in Google Scholar

25. Hammer MJ, Murphy CA, Abrams TM. Airway Somatosensory Deficits and Dysphagia in Parkinson’s Disease. J Parkinsons Dis 2013; 3(1): 39–44.10.3233/JPD-120161Search in Google Scholar

26. Harada H, Takakusaki K, Kita S, Matsuda M, Nonaka S, Sakamoto T. Effects of injecting GABAergic agents into the medullary reticular formation upon swallowing induced by the superior laryngeal nerve stimulation in decerebrate cats. Neurosci Res. 2005; 51(4): 395-404.10.1016/j.neures.2004.12.007Search in Google Scholar

27. Hayakawa T, Zheng JQ, Seki M. Direct parabrachial nuclear projections to the pharyngeal motoneurons in the rat: an anterograde and retrograde double-labeling study. Brain Res. 1999; 816(2):364-74.10.1016/S0006-8993(98)01127-5Search in Google Scholar

28. Iscoe SD. Central control of the upper airway. In: Mathew OP, Sant’Ambrogio G, editors. Respiratory Function of the Upper Airway, Lung Biology in Healthand Disease. New York: Marcel Dekker; 1988. p. 125-92.Search in Google Scholar

29. Jakus J, Tomori Z, Stransky. Neuronal determinants of breathing, coughing and related motor behaviours. Martin: Wist; 2004. 334 p.Search in Google Scholar

30. Jakus J, Poliacek I, Halasova E, Murin P, Knocikova J, Tomori Z, Bolser DC. Brainstem circuitry of tracheal-bronchial cough: c fos study in anesthetized cats. Respir Physiol Neurobiol 2008; 160: 289-300.10.1016/j.resp.2007.10.014227590918055277Search in Google Scholar

31. Jean A. Brain Stem Control of Swallowing: Neuronal Network and Cellular Mechanisms. Physiol Rev 2001; 81(2): 929-69.10.1152/physrev.2001.81.2.92911274347Search in Google Scholar

32. Korpáš J, Tomori Z. Cough and other respiratory reflexes. Basel: Karger S; 1979. 356 p.Search in Google Scholar

33. Kuna ST, Smickley JS. Superior pharyngeal constrictor activation in obstructive sleep apnea. Am J Respir Crit Care Med 1997; 156: 874–80.10.1164/ajrccm.156.3.97020539310007Search in Google Scholar

34. Mezzanotte WS, Tangel DJ, White DP. Mechanisms of control of alae nasi muscle activity. J Appl Physiol (1985) 1992; 72(3): 925-33.10.1152/jappl.1992.72.3.9251568988Search in Google Scholar

35. Miller AJ. The neurobiology of swallowing and dysphagia. Dev Disabil Res Rev 2008; 14:77–86.10.1002/ddrr.1218646019Search in Google Scholar

36. Neuzeret PC, Sakai K, Gormand F, Petitjean T, Buda C, Sastre JP, Parrot S, Guidon G, Lin JS. Application of histamine or serotonin to the hypoglossal nucleus increases genioglossus muscle activity across the wake-sleep cycle. J Sleep Res 2009; 18(1): 113-21.10.1111/j.1365-2869.2008.00708.x19250178Search in Google Scholar

37. Nishino T. The swallowing reflex and its significance as an airway defensive reflex. Front Physiol 2013; 3: 489: 1-6.10.3389/fphys.2012.00489353965723316169Search in Google Scholar

38. O’Connor R, Segers LS, Morris KF, Nuding SC, Pitts TE, Bolser DC, Davenport PW, Lindsey BG. A joint computational respiratory neural network-biomechanical model for breathing and airway defensive behaviors. Front Physiol 2012; 3(264): 1-28.10.3389/fphys.2012.00264Search in Google Scholar

39. Ono K, Shiba K, Nakazawa K, Shimoyama I. Synaptic Origin of the Respiratory-modulated Activity of Laryngeal Motoneurons. Neurosci 2006; 140: 1079–88.10.1016/j.neuroscience.2006.02.063Search in Google Scholar

40. Peever JH, Shen L, Duffin J. Respiratory pre-motor control of hypoglossal motoneurons in the rat. Neurosci 2002; 110: 711–22.10.1016/S0306-4522(01)00594-2Search in Google Scholar

41. Perlman AL. Electromyography in oral and pharyngeal motor disorders. GI Motility online 2006; doi:10.1038/gimo32.Search in Google Scholar

42. Pitts T, Rose MJ, Mortensen AN, Poliacek I, Sapienza CM, Lindsey BG, Morris KF, Davenport PW, Bolser DC. Coordination of cough and swallow: A meta-behavioral response to aspiration. Respir Physiol Neurobiol 2013; 189(3): 543-51.10.1016/j.resp.2013.08.009388290223998999Search in Google Scholar

43. Pitts T, Rose MJ, Poliacek I, Condrey J, Davenport PW, Bolser DC. Effect of laparotomy on the swallow-breathing relationship in the cat. Lung 2015; 193(1): 129-33.10.1007/s00408-014-9662-x432066225331536Search in Google Scholar

44. Poliaček I, Stránsky A, Jakuš J, Baráni H, Tomori Z, Halašová E. Activity of the Laryngeal Abductor and Adductor Muscles during Cough, Expiration and Aspiration Reflexes in Cats. Physiol Res 2003; 52(6): 749-62.Search in Google Scholar

45. Poliaček I, Stránsky A, Szereda-Przestaszewska M, Jakuš J, Baráni H, Tomori Z, Halašová E. Cough and laryngeal muscle discharges in brainstem lesioned anesthetized cats. Physiol Res 2005; 54(6): 645-54.10.33549/physiolres.930623Search in Google Scholar

46. Poliaček I, Corrie LW, Wang C, Rose MJ, Bolser DC. Microinjection of DLH into the region of the caudal ventral respiratory column in the cat: evidence for an endogenous cough-suppressant mechanism. J Appl Physiol 2007; 102(3): 1014-21.10.1152/japplphysiol.00616.2006181766117138836Search in Google Scholar

47. Poliacek I, Wang C, Corrie LW-C, Rose MJ, Bolser DC. Microinjection of Codeine into the Region of the Caudal Ventral Respiratory Column Suppresses Cough in Anesthetized Cats. J Appl Physiol 2010; 108: 858-65.10.1152/japplphysiol.00783.2009285320720093669Search in Google Scholar

48. Poliaček I, Jakuš J, Halašová E, Baráni H, Muríň P, Bolser DC. Defensive airways reflexes induce widely spreading Fos labeling in the cat brainstem. Acta Med Mart 2008; 8(2): 3-15.Search in Google Scholar

49. Poliacek I, Morris KF, Lindsey BG, Segers LS, Rose MJ, Corrie LW, Wang C, Pitts TE, Davenport PW, Bolser DC. Blood pressure changes alter tracheobronchial cough: computational model of the respiratory-cough network and in vivo experiments in anesthetized cats. J Appl Physiol 2011; 111: 861–73.10.1152/japplphysiol.00458.2011317478721719729Search in Google Scholar

50. Poliacek I, Rose MJ, Pitts TE, Mortensen A, Corrie LW, Davenport PW, Bolser DC. Central administration of nicotine suppresses tracheobronchial cough in anesthetized cats. J Appl Physiol (1985) 2015; 118(3): 265-72.10.1152/japplphysiol.00075.2014431284825477349Search in Google Scholar

51. Richardson KA, Gatti PJ. Genioglossal hypoglossal muscle motoneurons are contacted by nerve terminals containing delta opioid receptor but not mu opioid receptor-like immunoreactivity in the cat: a dual labeling electron microscopic study. Brain Res 2005; 1032(1-2): 23-9.10.1016/j.brainres.2004.10.04515680937Search in Google Scholar

52. Roda F, Gestreau C, Bianchi AL. Discharge patterns of hypoglossal motoneurons during fictive breathing, coughing, and swallowing. J Neurophysiol 2002; 87: 1703–11.10.1152/jn.00347.2001Search in Google Scholar

53. Roda F, Pio J, Bianchi AL, Gestreau C. Effects of anesthetics on hypoglossal nerve discharge and c-Fos expression inbrainstem hypoglossal premotor neurons. J Comp Neurol 2004; 468: 571–86.10.1002/cne.10974Search in Google Scholar

54. Rose M, Pitts T, Poliacek I, Mortensen A, Davenport P, Bolser D. Activity of the upper esophageal sphincter (UES) during eupnea, cough, and swallow. FASEB J 2011; 25(1 Suppl): 1111.21.10.1096/fasebj.25.1_supplement.1111.21Search in Google Scholar

55. Saboisky JP, Butler JE, McKenzie DK, Gorman RB, Trinder JA, White DP, Gandevia SC. Neural drive to human genioglossus in obstructive sleep apnoea. J Physiol 2007; 585(1): 135–46.10.1113/jphysiol.2007.139584Search in Google Scholar

56. Saito Y, Ezure K, Tanaka I, Osawa M. Activity of neurons in ventrolateral respiratory groups during swallowing in decerebrate rats. Brain Dev 2003; 25(5): 338-45.10.1016/S0387-7604(03)00008-1Search in Google Scholar

57. Sant’Ambrogio G, Kuna ST, Vanoye CR, Sant’Ambrogio FB. Activation of intrinsic laryngeal muscles during cough. Am J Respir Crit Care Med 1997; 155: 637-41.10.1164/ajrccm.155.2.9032206Search in Google Scholar

58. Satoh I, Shiba K, Kobayashi N, Nakajima Y, Konno A. Upper airway motoroutputs during sneezing and coughing in decerebrate cats. Neurosci Res 1998; 32(2): 131–5.10.1016/S0168-0102(98)00075-3Search in Google Scholar

59. Sawczuk A, Mosier KM. Neural control of tongue movement with respect to respiration and swallowing. Crit Rev Oral Biol Med 2001; 12(1): 18-37.10.1177/10454411010120010101Search in Google Scholar

60. Sherrey JH, Megirian D. Spontaneous and reflexly evoked laryngeal abductor and adductor muscle activity of cat. Exp Neurol 1974; 43: 487-98.10.1016/0014-4886(74)90189-7Search in Google Scholar

61. Shi YX, Seto-Poon M, Wheatley JR. Breathing route dependence of upper airway muscle activity during hyperpnea. J Appl Physiol 1998; 84(5): 1701–6.10.1152/jappl.1998.84.5.17019572820Search in Google Scholar

62. Shiba K, Satoh I, Kobayashi N, Hayashi F. Multifunctional Laryngeal Motoneurons: an Intracellular Study inthe Cat. J Neurosci 1999; 19(7): 2717–27.10.1523/JNEUROSCI.19-07-02717.1999Search in Google Scholar

63. Shiba K, Nakazawa K, Ono K, Umezaki T. Multifunctional Laryngeal Premotor Neurons: Their Activities during Breathing, Coughing, Sneezing, and Swallowing. J Neurosci 2007; 27(19): 5156–62.10.1523/JNEUROSCI.0001-07.2007Search in Google Scholar

64. Simera M, Poliacek I, Dobrolubov B, Veternik M, Plevkova J, Jakus J. Interactions of mechanically induced coughing and sneezing in cat. Respir Physiol Neurobiol 2015; 205: 21–7.10.1016/j.resp.2014.09.011Search in Google Scholar

65. Spearman DG, Poliacek I, Rose MJ, Bolser DC, Pitts T. Variability of the pharyngeal phase of swallow in the cat. PLoS One 2014; 9(8): e106121.10.1371/journal.pone.0106121Search in Google Scholar

66. Stránsky A., Szereda-Przestaszewska M., Widdicombe J.G., Tomori Z. The activity of laryngeal motoneurons and laryngeal resistance during defensive reflexes from the respiratory tract. Physiol Bohemoslov 1976; 25: 471.Search in Google Scholar

67. Sugiyama Y, Shiba K, Nakazawa K, Suzuki T, Umezaki T, Ezure K, Abo N, Yoshihara T, Hisa Y. Axonal projections of medullary swallowing neurons in guinea pigs. J Comp Neurol. 2011; 519(11): 2193-211.10.1002/cne.22624Search in Google Scholar

68. Sun Q, Berkowitz R, Goodchild A, Pilowsky P. Substance P inputs to laryngeal motoneurons in the rat. Respir Physiol Neurobiol 2003; 137(1): 11-8.10.1016/S1569-9048(03)00136-8Search in Google Scholar

69. Suzuki Takeshi, Nakazawa K, Shiba K. Swallow-related inhibition in laryngeal motoneurons. Neurosci Res 2010; 67: 327-33.10.1016/j.neures.2010.04.011Search in Google Scholar

70. Tomori Z, Donic V, Benacka R, Gresova S, Peregrim I, Kundrik M, Pallayova M, Jakus J. Reversal of functional disorders by aspiration, expiration, and cough reflexes and their voluntary counterparts. Front Physiol 2012; 3: 467.10.3389/fphys.2012.00467Search in Google Scholar

71. Tomori Z, Donic V, Benacka R, Jakus J, Gresova S. Resuscitation and auto resuscitation by airway reflexes in animals. Cough 2013; 9: 21.10.1186/1745-9974-9-21Search in Google Scholar

72. Travers JB, Rinaman L. Identification of lingual motor controlcircuits using two strains of pseudorabies virus. Neurosci 2002; 115: 1139–51.10.1016/S0306-4522(02)00489-XSearch in Google Scholar

73. Van Lunteren E, Strohl KP. The muscles of the upper airways. Clin Chest Med 1986; 7(2): 171-88.10.1016/S0272-5231(21)00414-7Search in Google Scholar

74. Waldbaum S, Hadziefendic S, Erokwu B, Zaidi SIA, Haxhiu MA. CNS innervation of posterior cricoarytenoid muscles: a transneuronal labeling study. Respir Physiol 2001; 126: 113–25.10.1016/S0034-5687(01)00200-6Search in Google Scholar

75. Volgin DV, Fenik VB, Fay R, Okabe S, Davies RO, Kubin L. Serotonergic Receptors and Effects in Hypoglossal and Laryngeal Motoneurons Semi-Quantitative Studies in Neonatal and Adult Rats. Adv Exp Med Biol 2003; 551: 183-8.10.1007/0-387-27023-X_2815602962Search in Google Scholar

76. Volgin DV, Rukhadze I, Kubin L. Hypoglossal premotor neurons of the intermediate medullary reticular region express cholinergic markers. J Appl Physiol 2008; 105(5): 1576-84.10.1152/japplphysiol.90670.2008258483818772326Search in Google Scholar

77. Yamazaki H, Ohi Y, Haji A. Mu-opioid and N-methyl-D-aspartate receptors are localized at laryngeal motoneurons of guinea pigs. Biol Pharm Bull 2009; 32(2): 293-6.10.1248/bpb.32.29319182392Search in Google Scholar

78. Zoungrana OR, Amri M, Car A, Roman C. Intracellular activity of motoneurons of the rostral nucleus ambiguus during swallowing in sheep. J Neurophysiol 1997; 77: 909–22.10.1152/jn.1997.77.2.9099065858Search in Google Scholar

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