. DowningSELeeJC.Laryngeal chemosensitivity: a possible mechanism for sudden infant death. Pediatrics1975; 55:640–9.
2.
. HardingRJohnsonPMcClellandME.Liquid-sensitive laryngeal receptors in the developing sheep, cat and monkey. J Physiol1978; 277:409–22.
3.
. SuttonDTaylorEMLindemanRC.Prolonged apnea in monkeys resulting from stimulation of superior laryngeal nerve. Pediatrics1978; 61:519–27.
4.
. DaviesAMKoenigJSThachBT.Characteristic of upper airway chemoreflex prolonged apnea in human infants. Am Rev Respir Dis1989; 139:668–73.
5.
. LeapeLL.Respiratory arrest in infants secondary to gastroesophageal reflux. Pediatrics1977; 60:924–8.
6.
. HerbstJJBookLSBrayPF.Gastroesophageal reflux in the “near miss” sudden infant death syndrome. J Pediatr1978; 92:73–5.
7.
. GodingGSRichardsonMATrachyRE.Laryngeal chemoreflex: anatomic and physiologic study by use of the superior laryngeal nerve in the piglet. Otolaryngol Head Neck Surg1987; 97:28–38.
8.
. RimellFGodingGSJrJohnsonK.Cholinergic agents in the laryngeal chemoreflex model of sudden infant death syndrome. Laryngoscope1993; 103:623–30.
9.
. MosimannBLWhiteMVHohmanRJSubstance P, calcitonin gene-related peptide, and vasoactive intestinal peptide increase in nasal secretions after allergen can challenge in atopic patients. J Allergy Clin Immunol1993; 92:95–104.
. HisaYTadakiNUnoTNeuropeptide participation in canine laryngeal sensory innervation. Immunohistochemistry and retrograde labeling. Ann Otol Rhinol Laryngol1994; 103: 767–70.
12.
. FodorMPammerCGörcsTNeuropeptides in the human dorsal vagal complex: an immunohistochemical study. J Chem Neuroanat1994; 7:141–57.
13.
. DomeijSDahlqvistAErikssonASimilar distribution of mast cells and substance P- and calcitonin gene-related peptideimmunoreactive nerve fibers in the adult human larynx. Ann Otol Rhinol Laryngol1996; 105:825–31.
14.
. GoodmanECIversenLL.Calcitonin gene-related peptide: novel neuropeptide. Life Sci1986; 38:2169–78.
15.
. DownsDHJohnsonKGodingGSJr.The effect of antihistamines on the laryngeal chemoreflex. Laryngoscope1995; 105:857–61.
16.
. ChibaTYamaguchiAYamataniTCalcitonin gene-related peptide receptor antagonist human αCGRP8-37. Am J Physiol1989; 256:E331–5.
17.
. BaumanNMWangDJaffeDAThe effect of Substance P on laryngeal adductor activity in young canines. Ann Otol Rhinol Laryngol. In press 1999.
18.
. WilliamsonDJHargreavesRJHillRGIntravital microscope studies on the effects of neurokinin agonists and calcitonin gene-related peptide on dural vessel diameter in the anaesthetized rat. Cephalagia1997; 17:518–24.
19.
. O'ShaughnessyCTConnorHE.Investigation of the role of tachykinin NK1, NK2 receptors and CGRP receptors in neurogenic plasma protein extravasation in dura mater. Eur J Pharmacol1994; 263:193–8.
20.
. HisaYUnoTTadakiNDistribution of calcitonin gene-related peptide nerve fibers in the canine larynx. Eur Arch Otorhinolaryngol1992; 249:52–5.
21.
. YuYCMiyazakiJShinT.Neuroendocrine cells in the cat laryngeal epithelium. Eur Arch Otorhinolaryngol1996; 253:287–93.
22.
. EsclamadoRMRichardsonMA.Laryngeal chemoreflex: an anatomic study of the peripheral receptor in the piglet. Trans Am Laryngol Assoc1988; 109:197–202.
23.
. SalehTMCechettoDF.Peptide changes in the parabrachial nucleus following cervical vagal stimulation. J Comp Neurol1996; 366:390–405.
24.
. LarsonCRYoshidaYSessleBJ.Higher level motor and sensory organization. In: TitzeIR, editor. Vocal fold physiology, frontiers in basic science. San Diego: Singular Publishing Group; 1993. p. 227–75.
25.
. IchikawaHRabchevskyAHelkeCJ.Presence and coexistence of putative neurotransmitters in carotid sinus baro- and chemoreceptor afferent neurons. Brain Res1993; 611:67–74.