Thomas EA, Bornstein JC, Chambers JD. (2011). Multiple Neural Oscillators and Muscle Feedback Are Required for the Intestinal Fed State Motor Program PLoS ONE. 6(5)

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References and models cited by this paper

Alex G, Clerc N, Kunze WA, Furness JB. (2002). Responses of myenteric S neurones to low frequency stimulation of their synaptic inputs. Neuroscience. 110 [PubMed]

Alex G, Kunze WA, Furness JB, Clerc N. (2001). Comparison of the effects of neurokinin-3 receptor blockade on two forms of slow synaptic transmission in myenteric AH neurons. Neuroscience. 104 [PubMed]

BULBRING E, LIN RC. (1958). The effect of intraluminal application of 5-hydroxytryptamine and 5-hydroxytryptophan on peristalsis; the local production of 5-HT and its release in relation to intraluminal pressure and propulsive activity. The Journal of physiology. 140 [PubMed]

Bertrand PP. (2004). Bursts of recurrent excitation in the activation of intrinsic sensory neurons of the intestine. Neuroscience. 128 [PubMed]

Bertrand PP. (2006). Real-time measurement of serotonin release and motility in guinea pig ileum. The Journal of physiology. 577 [PubMed]

Bertrand PP, Bornstein JC. (2002). ATP as a putative sensory mediator: activation of intrinsic sensory neurons of the myenteric plexus via P2X receptors. The Journal of neuroscience : the official journal of the Society for Neuroscience. 22 [PubMed]

Bertrand PP, Kunze WA, Bornstein JC, Furness JB, Smith ML. (1997). Analysis of the responses of myenteric neurons in the small intestine to chemical stimulation of the mucosa. The American journal of physiology. 273 [PubMed]

Bertrand PP, Kunze WA, Furness JB, Bornstein JC. (2000). The terminals of myenteric intrinsic primary afferent neurons of the guinea-pig ileum are excited by 5-hydroxytryptamine acting at 5-hydroxytryptamine-3 receptors. Neuroscience. 101 [PubMed]

Bertrand PP, Thomas EA, Kunze WA, Bornstein JC. (2000). A simple mathematical model of second-messenger mediated slow excitatory postsynaptic potentials. Journal of computational neuroscience. 8 [PubMed]

Bian X, Bertrand PP, Bornstein JC. (2000). Descending inhibitory reflexes involve P2X receptor-mediated transmission from interneurons to motor neurons in guinea-pig ileum. The Journal of physiology. 528 [PubMed]

Bornstein JC, Bertrand PP, Furness JB, Kunze_waa . (2002). Enteric reflexes that influence motility Nervous control of the gastrointestinal tract.

Bornstein JC, Ellis M, Fung C. (2010). Luminal Cholera Toxin Alters Motility in Isolated Guinea-Pig Jejunum via a Pathway Independent of 5-HT(3) Receptors. Front Neurosci. 4

Bornstein JC, Gwynne RM, Ellis M. (2009). Nutrient induced segmentation is mediated by serotonin and cholecystokinin in isolated guinea pig small intestine Auton Neurosci. 149

Brookes SJ. (2001). Classes of enteric nerve cells in the guinea-pig small intestine. The Anatomical record. 262 [PubMed]

Chambers JD, Bornstein JC, Sjövall H, Thomas EA. (2005). Recurrent networks of submucous neurons controlling intestinal secretion: a modeling study. American journal of physiology. Gastrointestinal and liver physiology. 288 [PubMed]

Chambers JD, Bornstein JC, Thomas EA. (2008). Insights into mechanisms of intestinal segmentation in guinea pigs: a combined computational modeling and in vitro study. American journal of physiology. Gastrointestinal and liver physiology. 295 [PubMed]

Costa M, Brookes SH. (2008). Architecture of enteric neural circuits involved in intestinal motility. European review for medical and pharmacological sciences. 12 Suppl 1 [PubMed]

Costa M, Brookes SJ, Chen BN, Hennig GW. (1999). Quantitative analysis of peristalsis in the guinea-pig small intestine using spatio-temporal maps. J Physiol. 517 ( Pt 2)

Ferens D, Baell J, Lessene G, Smith JE, Furness JB. (2007). Effects of modulators of Ca(2+)-activated, intermediate-conductance potassium channels on motility of the rat small intestine, in vivo. Neurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society. 19 [PubMed]

Foong JP, Bornstein JC. (2009). 5-HT antagonists NAN-190 and SB 269970 block alpha2-adrenoceptors in the guinea pig. Neuroreport. 20 [PubMed]

Foong JP, Parry LJ, Gwynne RM, Bornstein JC. (2010). 5-HT(1A), SST(1), and SST(2) receptors mediate inhibitory postsynaptic potentials in the submucous plexus of the guinea pig ileum. American journal of physiology. Gastrointestinal and liver physiology. 298 [PubMed]

Furness JB. (2006). The Enteric Nervous System.

Furness JB, Jones C, Nurgali K, Clerc N. (2004). Intrinsic primary afferent neurons and nerve circuits within the intestine. Progress in neurobiology. 72 [PubMed]

Furness JB et al. (2004). Intermediate conductance potassium (IK) channels occur in human enteric neurons. Autonomic neuroscience : basic & clinical. 112 [PubMed]

Furness JB et al. (2003). Expression of intermediate conductance potassium channel immunoreactivity in neurons and epithelial cells of the rat gastrointestinal tract. Cell and tissue research. 314 [PubMed]

Grafe P, Mayer CJ, Wood JD. (1980). Synaptic modulation of calcium-dependent potassium conductance in myenteric neurones in the guinea-pig. The Journal of physiology. 305 [PubMed]

Gwynne RM, Bornstein JC. (2007). Synaptic transmission at functionally identified synapses in the enteric nervous system: roles for both ionotropic and metabotropic receptors. Current neuropharmacology. 5 [PubMed]

Gwynne RM, Bornstein JC. (2007). Mechanisms underlying nutrient-induced segmentation in isolated guinea pig small intestine. American journal of physiology. Gastrointestinal and liver physiology. 292 [PubMed]

Gwynne RM, Bornstein JC. (2007). Local inhibitory reflexes excited by mucosal application of nutrient amino acids in guinea pig jejunum. American journal of physiology. Gastrointestinal and liver physiology. 292 [PubMed]

Gwynne RM, Thomas EA, Goh SM, Sjövall H, Bornstein JC. (2004). Segmentation induced by intraluminal fatty acid in isolated guinea-pig duodenum and jejunum. The Journal of physiology. 556 [PubMed]

Hasler W. (2003). Motility of the small intestine and colon Textbook of Gastroenterology.

Hasler WL. (2008). Motility of the Small Intestine and Colon Textbook of Gastroenterology. 5th

Heredia DJ, Dickson EJ, Bayguinov PO, Hennig GW, Smith TK. (2009). Localized release of serotonin (5-hydroxytryptamine) by a fecal pellet regulates migrating motor complexes in murine colon. Gastroenterology. 136 [PubMed]

Huge A, Weber E, Ehrlein HJ. (1995). Effects of enteral feedback inhibition on motility, luminal flow, and absorption of nutrients in proximal gut of minipigs. Digestive diseases and sciences. 40 [PubMed]

Huizinga JD, Lammers WJ. (2009). Gut peristalsis is governed by a multitude of cooperating mechanisms. American journal of physiology. Gastrointestinal and liver physiology. 296 [PubMed]

Johnson PJ, Bornstein JC. (2004). Neurokinin-1 and -3 receptor blockade inhibits slow excitatory synaptic transmission in myenteric neurons and reveals slow inhibitory input. Neuroscience. 126 [PubMed]

Johnson PJ, Bornstein JC, Burcher E. (1998). Roles of neuronal NK1 and NK3 receptors in synaptic transmission during motility reflexes in the guinea-pig ileum. British journal of pharmacology. 124 [PubMed]

Johnson PJ, Bornstein JC, Yuan SY, Furness JB. (1996). Analysis of contributions of acetylcholine and tachykinins to neuro-neuronal transmission in motility reflexes in the guinea-pig ileum. British journal of pharmacology. 118 [PubMed]

Joiner WJ et al. (2003). Active K+ secretion through multiple KCa-type channels and regulation by IKCa channels in rat proximal colon. American journal of physiology. Gastrointestinal and liver physiology. 285 [PubMed]

Keating DJ, Spencer NJ. (2010). Release of 5-hydroxytryptamine from the mucosa is not required for the generation or propagation of colonic migrating motor complexes. Gastroenterology. 138 [PubMed]

Kunze WA, Furness JB, Bertrand PP, Bornstein JC. (1998). Intracellular recording from myenteric neurons of the guinea-pig ileum that respond to stretch. The Journal of physiology. 506 ( Pt 3) [PubMed]

Neylon CB et al. (2004). Intermediate-conductance calcium-activated potassium channels in enteric neurones of the mouse: pharmacological, molecular and immunochemical evidence for their role in mediating the slow afterhyperpolarization. Journal of neurochemistry. 90 [PubMed]

Nguyen TV et al. (2007). Effects of compounds that influence IK (KCNN4) channels on afterhyperpolarizing potentials, and determination of IK channel sequence, in guinea pig enteric neurons. Journal of neurophysiology. 97 [PubMed]

Pan H, Galligan JJ. (1994). 5-HT1A and 5-HT4 receptors mediate inhibition and facilitation of fast synaptic transmission in enteric neurons. The American journal of physiology. 266 [PubMed]

Pan H, Galligan JJ. (1995). Effects of 5-HT1A and 5-HT4 receptor agonists on slow synaptic potentials in enteric neurons. European journal of pharmacology. 278 [PubMed]

Parsons SP, Huizinga JD. (2010). Transient outward potassium current in ICC. American journal of physiology. Gastrointestinal and liver physiology. 298 [PubMed]

Sarr MG, Kelly KA, Phillips SF. (1980). Canine jejunal absorption and transit during interdigestive and digestive motor states. The American journal of physiology. 239 [PubMed]

Schemann M, Ehrlein HJ. (1986). Postprandial patterns of canine jejunal motility and transit of luminal content. Gastroenterology. 90 [PubMed]

Schmid HR, Ehrlein HJ. (1993). Effects of enteral infusion of hypertonic saline and nutrients on canine jejunal motor patterns. Digestive diseases and sciences. 38 [PubMed]

Siegle ML, Ehrlein HJ. (1988). Digestive motor patterns and transit of luminal contents in canine ileum. The American journal of physiology. 254 [PubMed]

Song ZM, Brookes SJ, Costa M. (1994). All calbindin-immunoreactive myenteric neurons project to the mucosa of the guinea-pig small intestine. Neuroscience letters. 180 [PubMed]

Spencer NJ, Walsh M, Smith TK. (2000). Purinergic and cholinergic neuro-neuronal transmission underlying reflexes activated by mucosal stimulation in the isolated guinea-pig ileum. The Journal of physiology. 522 Pt 2 [PubMed]

Tabak J, Senn W, O'Donovan MJ, Rinzel J. (2000). Modeling of spontaneous activity in developing spinal cord using activity-dependent depression in an excitatory network. The Journal of neuroscience : the official journal of the Society for Neuroscience. 20 [PubMed]

Thomas EA, Bertrand PP, Bornstein JC. (2000). A computer simulation of recurrent, excitatory networks of sensory neurons of the gut in guinea-pig. Neuroscience letters. 287 [PubMed]

Thomas EA, Bornstein JC. (2003). Inhibitory cotransmission or after-hyperpolarizing potentials can regulate firing in recurrent networks with excitatory metabotropic transmission. Neuroscience. 120 [PubMed]

Thompson-Vest N, Shimizu Y, Hunne B, Furness JB. (2006). The distribution of intermediate-conductance, calcium-activated, potassium (IK) channels in epithelial cells. Journal of anatomy. 208 [PubMed]

Thornton PD, Bornstein JC. (2002). Slow excitatory synaptic potentials evoked by distension in myenteric descending interneurones of guinea-pig ileum. The Journal of physiology. 539 [PubMed]

Tonini M, Costa M. (1990). A pharmacological analysis of the neuronal circuitry involved in distension-evoked enteric excitatory reflex. Neuroscience. 38 [PubMed]

Wang B et al. (2010). Lactobacillus reuteri ingestion and IK(Ca) channel blockade have similar effects on rat colon motility and myenteric neurones. Neurogastroenterology and motility : the official journal of the European Gastrointestinal Motility Society. 22 [PubMed]

Wilson HR, Cowan JD. (1972). Excitatory and inhibitory interactions in localized populations of model neurons. Biophysical journal. 12 [PubMed]

Zhu Y, Ye J, Huizinga JD. (2007). Clotrimazole-sensitive K+ currents regulate pacemaker activity in interstitial cells of Cajal. American journal of physiology. Gastrointestinal and liver physiology. 292 [PubMed]

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