Access the full text.
Sign up today, get DeepDyve free for 14 days.
D. Mulkey, R. Stornetta, Matthew Weston, Johnny Simmons, Anson Parker, D. Bayliss, P. Guyenet (2004)
Respiratory control by ventral surface chemoreceptor neurons in ratsNature Neuroscience, 7
N. Mellen, W. Janczewski, C. Bocchiaro, J. Feldman (2003)
Opioid-Induced Quantal Slowing Reveals Dual Networks for Respiratory Rhythm GenerationNeuron, 37
J. Rekling, J. Feldman (1998)
PreBötzinger complex and pacemaker neurons: hypothesized site and kernel for respiratory rhythm generation.Annual review of physiology, 60
J. Feldman, C. Negro (2006)
Looking for inspiration: new perspectives on respiratory rhythmNature Reviews Neuroscience, 7
J. Paton, A. Abdala, H. Koizumi, Jeffrey Smith, W. St.-John (2006)
Respiratory rhythm generation during gasping depends on persistent sodium currentNature Neuroscience, 9
R. Butera, J. Rinzel, J. Rinzel, Jeffrey Smith (1999)
Models of respiratory rhythm generation in the pre-Bötzinger complex. I. Bursting pacemaker neurons.Journal of neurophysiology, 82 1
G. Tian, J. Peever, James Duffin (1999)
Bötzinger-complex, bulbospinal expiratory neurones monosynaptically inhibit ventral-group respiratory neurones in the decerebrate ratExperimental Brain Research, 124
J. Dempsey, A. Pack (1994)
Regulation of breathing
I. Rybak, N. Shevtsova, N. Shevtsova, J. Paton, T. Dick, W. John, Michael Mörschel, M. Dutschmann (2004)
Modeling the ponto-medullary respiratory networkRespiratory Physiology & Neurobiology, 143
R. MacGregor (1987)
Neural and brain modeling
H. Onimaru, A. Arata, I. Homma (1988)
Primary respiratory rhythm generator in the medulla of brainstem-spinal cord preparation from newborn ratBrain Research, 445
G. Song, C. Poon (2004)
Functional and structural models of pontine modulation of mechanoreceptor and chemoreceptor reflexesRespiratory Physiology & Neurobiology, 143
M. Dutschmann, J. Paton (2002)
Glycinergic inhibition is essential for co‐ordinating cranial and spinal respiratory motor outputs in the neonatal ratThe Journal of Physiology, 543
I. Rybak, K. Ptak, N. Shevtsova, D. McCrimmon (2003)
Sodium currents in neurons from the rostroventrolateral medulla of the rat.Journal of neurophysiology, 90 3
F. Hayashi, Janusz Lipski (1992)
The role of inhibitory amino acids in control of respiratory motor output in an arterially perfused rat.Respiration physiology, 89 1
W. Janczewski, J. Feldman (2006)
Distinct rhythm generators for inspiration and expiration in the juvenile ratThe Journal of Physiology, 570
K. Ezure, I. Tanaka (2006)
Distribution and medullary projection of respiratory neurons in the dorsolateral pons of the ratNeuroscience, 141
M. Okazaki, R. Takeda, Hiromi Yamazaki, A. Haji (2002)
Synaptic mechanisms of inspiratory off-switching evoked by pontine pneumotaxic stimulation in catsNeuroscience Research, 44
Christopher Negro, Sheree Johnson, R. Butera, Jeffrey Smith (2001)
Models of respiratory rhythm generation in the pre-Bötzinger complex. III. Experimental tests of model predictions.Journal of neurophysiology, 86 1
K. Ezure, M. Manabe (1988)
Decrementing expiratory neurons of the Bötzinger complexExperimental Brain Research, 72
J. Ramirez, A. Tryba, F. Peña (2004)
Pacemaker neurons and neuronal networks: an integrative viewCurrent Opinion in Neurobiology, 14
K. Ezure (1990)
Synaptic connections between medullary respiratory neurons and considerations on the genesis of respiratory rhythmProgress in Neurobiology, 35
D. Richter, K. Spyer (2001)
Studying rhythmogenesis of breathing: comparison of in vivo and in vitro modelsTrends in Neurosciences, 24
N. Koshiya, Jeffrey Smith (1999)
Neuronal pacemaker for breathing visualized in vitroNature, 400
I. Rybak, J. Paton, J. Schwaber (1997)
Modeling neural mechanisms for genesis of respiratory rhythm and pattern. I. Models of respiratory neurons.Journal of neurophysiology, 77 4
K. Ezure (2004)
Respiration-related afferents to parabrachial pontine regionsRespiratory Physiology & Neurobiology, 143
A. Schreihofer, R. Stornetta, P. Guyenet (1999)
Evidence for glycinergic respiratory neurons: Bötzinger neurons express mRNA for glycinergic transporter 2Journal of Comparative Neurology, 407
M. Dutschmann, H. Herbert (2006)
The Kölliker‐Fuse nucleus gates the postinspiratory phase of the respiratory cycle to control inspiratory off‐switch and upper airway resistance in ratEuropean Journal of Neuroscience, 24
L. Segers, R. Shannon, S. Saporta, B. Lindsey (1987)
Functional associations among simultaneously monitored lateral medullary respiratory neurons in the cat. I. Evidence for excitatory and inhibitory actions of inspiratory neurons.Journal of neurophysiology, 57 4
S. Grillner (2006)
Biological Pattern Generation: The Cellular and Computational Logic of Networks in MotionNeuron, 52
E. Nattie (1999)
CO2, brainstem chemoreceptors and breathingProgress in Neurobiology, 59
A. Pickering, J. Paton (2006)
A decerebrate, artificially-perfused in situ preparation of rat: Utility for the study of autonomic and nociceptive processingJournal of Neuroscience Methods, 155
A. Selverston, J. Ayers (2006)
Oscillations and oscillatory behavior in small neural circuitsBiological Cybernetics, 95
I. Rybak, N. Shevtsova, K. Ptak, D. McCrimmon (2003)
Intrinsic bursting activity in the pre-Bötzinger Complex: Role of persistent sodium and potassium currentsBiological Cybernetics, 90
J. Smith, H. Ellenberger, K. Ballanyi, D. Richter, J. Feldman (1991)
Pre-Bötzinger complex: a brainstem region that may generate respiratory rhythm in mammals.Science, 254 5032
W. St.-John, J. Paton (2003)
Defining eupneaRespiratory Physiology & Neurobiology, 139
Detlev Frermann, B. Keller, D. Richter (1999)
Calcium oscillations in rhythmically active respiratory neurones in the brainstem of the mouseThe Journal of Physiology, 515
M. Cohen (1979)
Neurogenesis of respiratory rhythm in the mammal.Physiological reviews, 59 4
P. Guyenet, D. Mulkey, R. Stornetta, D. Bayliss (2005)
Regulation of Ventral Surface Chemoreceptors by the Central Respiratory Pattern GeneratorThe Journal of Neuroscience, 25
M. Cohen, C. Shaw (2004)
Role in the inspiratory off-switch of vagal inputs to rostral pontine inspiratory-modulated neuronsRespiratory Physiology & Neurobiology, 143
T. Lumsden (1923)
Observations on the respiratory centres in the catThe Journal of Physiology, 57
C. Negro, N. Koshiya, R. Butera, Jeffrey Smith (2002)
Persistent sodium current, membrane properties and bursting behavior of pre-bötzinger complex inspiratory neurons in vitro.Journal of neurophysiology, 88 5
E. Marder, R. Calabrese (1996)
Principles of rhythmic motor pattern generation.Physiological reviews, 76 3
R. Greger, U. Windhorst (1996)
Comprehensive Human Physiology
Dietrich Büsselberg, A. Bischoff, J. Paton, D. Richter (2000)
Reorganisation of respiratory network activity after loss of glycinergic inhibitionPflügers Archiv, 441
R. Butera, J. Rinzel, J. Rinzel, Jeffrey Smith (1999)
Models of respiratory rhythm generation in the pre-Bötzinger complex. II. Populations Of coupled pacemaker neurons.Journal of neurophysiology, 82 1
A. Bianchi, M. Denavit‐Saubié, J. Champagnat (1995)
Central control of breathing in mammals: neuronal circuitry, membrane properties, and neurotransmitters.Physiological reviews, 75 1
RTN/BötC) {0.13}; drive(pons) {0.55}; pre-I {0 Early-I(1) (pre-BötC) drive(RTN/BötC) {0.7}; drive(pons) {1.1}; pre-I {0.034}; aug-E {Ϫ0
Linlin Shen, Yan-Mei Li, J. Duffin (2003)
Inhibitory connections among rostral medullary expiratory neurones detected with cross-correlation in the decerebrate rat*Pflügers Archiv, 446
I.A Rybak, Julian Paton, J. Schwaber (1997)
Modeling neural mechanisms for genesis of respiratory rhythm and pattern. II. Network models of the central respiratory pattern generator.Journal of neurophysiology, 77 4
G. Alheid, W. Milsom, D. McCrimmon (2004)
Pontine influences on breathing: an overviewRespiratory Physiology & Neurobiology, 143
H. Onimaru, I. Homma (2003)
A Novel Functional Neuron Group for Respiratory Rhythm Generation in the Ventral MedullaThe Journal of Neuroscience, 23
A. Urbani, O. Belluzzi (2000)
Riluzole inhibits the persistent sodium current in mammalian CNS neuronsEuropean Journal of Neuroscience, 12
W. St.-John (1998)
Neurogenesis of patterns of automatic ventilatory activityProgress in Neurobiology, 56
Sheree Johnson, N. Koshiya, Jeffrey Smith (2001)
Isolation of the kernel for respiratory rhythm generation in a novel preparation: the pre-Bötzinger complex "island".Journal of neurophysiology, 85 4
J. Paton (1996)
A working heart-brainstem preparation of the mouseJournal of Neuroscience Methods, 65
D. Richter (1996)
Neural Regulation of Respiration: Rhythmogenesis and Afferent Control, 2
I. Rybak, N. Shevtsova, W. St.-John, J. Paton, O. Pierrefiche (2003)
Endogenous rhythm generation in the pre‐Bötzinger complex and ionic currents: modelling and in vitro studiesEuropean Journal of Neuroscience, 18
L. Fedorko, E. Merrill (1984)
Axonal projections from the rostral expiratory neurones of the Bötzinger complex to medulla and spinal cord in the cat.The Journal of Physiology, 350
J. Feldman, J. Smith (1995)
Neural control of respiratory pattern in mammals: an overviewLung biology in health and disease, 79
Ryland Pace, D. Mackay, J. Feldman, C. Negro (2007)
Role of persistent sodium current in mouse preBötzinger Complex neurons and respiratory rhythm generationThe Journal of Physiology, 580
C. Negro, C. Morgado-Valle, John Hayes, Devin Mackay, Ryland Pace, Erin Crowder, J. Feldman (2005)
Sodium and Calcium Current-Mediated Pacemaker Neurons and Respiratory Rhythm GenerationThe Journal of Neuroscience, 25
Jeffrey Smith, Robert Butera, N. Koshiya, Christopher Negro, Christopher Wilson, Sheree Johnson (2000)
Respiratory rhythm generation in neonatal and adult mammals: the hybrid pacemaker-network model.Respiration physiology, 122 2-3
(2002)
Perturbation of respiratory pattern and rhythm in vitro by block of persistent sodium current (INaP)
C. Negro, C. Morgado-Valle, J. Feldman (2002)
Respiratory Rhythm An Emergent Network Property?Neuron, 34
K. Ezure, I. Tanaka, M. Kondo (2003)
Glycine Is Used as a Transmitter by Decrementing Expiratory Neurons of the Ventrolateral Medulla in the RatThe Journal of Neuroscience, 23
G. Richerson (2004)
Serotonergic neurons as carbon dioxide sensors that maintain ph homeostasisNature Reviews Neuroscience, 5
F. Elsen, J. Ramirez (1998)
Calcium Currents of Rhythmic Neurons Recorded in the Isolated Respiratory Network of Neonatal MiceThe Journal of Neuroscience, 18
C. Jiang, Janusz Lipski (2006)
Extensive monosynaptic inhibition of ventral respiratory group neurons by augmenting neurons in the Bötzinger complex in the catExperimental Brain Research, 81
L. Purvis, Jeffrey Smith, H. Koizumi, R. Butera (2007)
Intrinsic bursters increase the robustness of rhythm generation in an excitatory network.Journal of neurophysiology, 97 2
Qi-Jian Sun, A. Goodchild, P. Pilowsky (2001)
Firing patterns of pre-Bötzinger and Bötzinger neurons during hypocapnia in the adult ratBrain Research, 903
J. Duffin (1991)
A model of respiratory rhythm generation.Neuroreport, 2 10
S. Long, J. Duffin (1986)
The neuronal determinants of respiratory rhythmProgress in Neurobiology, 27
A. Haji, R. Takeda, M. Okazaki (2000)
Neuropharmacology of control of respiratory rhythm and pattern in mature mammals.Pharmacology & therapeutics, 86 3
J. Paton, D. Richter (1995)
Role of fast inhibitory synaptic mechanisms in respiratory rhythm generation in the maturing mouse.The Journal of Physiology, 484
S. Lieske, M. Thoby-Brisson, P. Telgkamp, J. Ramirez (2000)
Reconfiguration of the neural network controlling multiple breathing patterns: eupnea, sighs and gaspsNature Neuroscience, 3
Journal of Neurophysiology – Unpaywall
Published: Oct 4, 2007
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.