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133. Darnall RA, Schneider RW, Tobia CM, Zemel BM. Arousal from sleep in response to
intermittent hypoxia in rat pups is modulated by medullary raphe GABAergic mech-
anisms. Am J Physiol Regul Integr Comp Physiol . 2012;302:R551-R560.
134. Medanic M, Gillette MU. Suprachiasmatic circadian pacemaker of rat shows two win-
dows of sensitivity to neuropeptide Y in vitro. Brain Res . 1993;620:281-286.
135. Chen D, Buchanan GF, Ding JM, Hannibal J, Gillette MU. Pituitary adenylyl cyclase-
activating peptide: a pivotal modulator of glutamatergic regulation of the sup-
rachiasmatic circadian clock. Proc Natl Acad Sci USA . 1999;96:13468-13473.
136. Piggins HD, Marchant EG, Goguen D, Rusak B. Phase-shifting effects of pituitary
adenylate cyclase activating polypeptide on hamster wheel-running rhythms. Neurosci
Lett . 2001;305:25-28.
137. Medanic M, Gillette MU. Serotonin regulates the phase of the rat suprachiasmatic cir-
cadian pacemaker in vitro only during the subjective day. J Physiol . 1992;450:629-642.
138. Mintz EM, Gillespie CF, Marvel CL, Huhman KL, Albers HE. Serotonergic regulation
of circadian rhythms in Syrian hamsters. Neuroscience . 1997;79:563-569.
139. Richerson GB, Wang W, Tiwari J, Bradley SR. Chemosensitivity of serotonergic
neurons in the rostral ventral medulla. Respir Physiol . 2001;129:175-189.
140. Severson CA, Wang W, Pieribone VA, Dohle CI, Richerson GB. Midbrain serotoner-
gic neurons are central pH chemoreceptors. Nat Neurosci . 2003;6:1139-1140.
141. Wang W, Richerson GB. Development of chemosensitivity of rat medullary raphe
neurons. Neuroscience . 1999;90:1001-1011.
142. Wu Y, Hodges MR, Richerson GB. Stimulation by hypercapnic acidosis in mouse
5-HT neurons is enhanced by age and increased temperature. Soc Neurosci Abstr .
2008;34:383-389.
143. Dias MB, Li A, Nattie E. Focal CO2 dialysis in raphe obscurus does not stimulate ven-
tilation but enhances the response to focal CO2 dialysis in the retrotrapezoid nucleus.
J Appl Physiol . 2008;105:83-90.
144. Penatti EM, Berniker AV, Kereshi B, et al. Ventilatory response to hypercapnia and
hypoxia after extensive lesion of medullary sertonergic neurons in newborn conscious
piglets. J Appl Physiol . 2006;101:1177-1188.
145. Veasey SC, Fornal CA, Metzler CW, Jacobs BL. Single-unit responses of serotonergic
dorsal raphe neurons to specific motor challenges in freely moving cats. Neuroscience .
1997;79:161-169.
146. Seifert EL, Mortola JP. Circadian pattern of ventilation during prolonged hypoxia in
conscious rats. Respir Physiol Neurobiol . 2002;133:23-34.
147. Fenelon K, Seifert EL, Mortola JP. Hypoxic depression of circadian oscillations in sino-
aortic denervated rats. Respir Physiol . 2000;122:61-69.
148. Nolan PC, Dillon GH, Waldrop TG. Central hypoxic chemoreceptors in the ventro-
lateral medulla and caudal hypothalamus. Adv Exp Med Biol . 1995;393:261-266.
149. Horn EM, Dillon GH, Fan YP, Waldrop TG. Developmental aspects and mechanisms
of rat caudal hypothalamic neuronal responses to hypoxia.
J Neurophysiol . 1999;81:
1949-1959.
150. Stephenson R, Liao KS, Hamrahi H, Horner RL. Circadian rhythms and sleep have
additive effects on respiration in the rat. J Physiol . 2001;536:225-235.
151. Snyder F, Hobson JA, Morrison DF, Goldfrank F. Changes in respiration, heart rate,
and systolic blood pressure in human sleep. J Appl Physiol . 1964;19:417-422.
152. Trinder J, Whitworth F, Kay A, Wilkin P. Respiratory instability at sleep onset. J Appl
Physiol . 1992;73:2462-2469.
153. Webb P. Periodic breathing during sleep. J Appl Physiol . 1974;37:899-903.
154. Nattie E. CO 2 , brainstem chemoreceptors and breathing.
Prog Neurobiol . 1999;
59:299-331.
 
 
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