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Results of search for 'au:"MacFarlane, P M"', page 1 of 2
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Authors
Alilain, W J
Ao, J
Bailey, J J
Baker-Herman, T L
Baudinette, R V
Bavis, R W
Behan, M
Berson, A S
Di Fiore, J M
Frappell, P B
Hoffman, M S
MacFarlane, P M
Macfarlane, P M
Martin, R J
Mayer, C A
Mitchell, G S
Nichols, N L
Vinit, S
Wilkerson, J E R
Wilson, C G
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Topics
Age Factors
Animals
Animals, Newborn
Humans
Hypoxia
Long-Term Potentiation
Male
Motor Neurons
NADPH Oxidases
Neuronal Plasticity
Oxygen Consumption
Phrenic Nerve
Rats
Rats, Inbred Lew
Rats, Sprague-Dawley
drug effects
metabolism
pharmacology
physiology
physiopathology
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English
Your search returned 26 results.
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1.
Convection requirement is established by total metabolic rate in the newborn tammar wallaby.
[electronic resource]
by
MacFarlane, P M
Frappell, P B
Producer:
20010830
In:
Respiration physiology
vol. 126
Online resources:
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2.
Development of the respiratory system in marsupials.
[electronic resource]
by
Frappell, P B
MacFarlane, P M
Producer:
20070220
In:
Respiratory physiology & neurobiology
vol. 154
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3.
Respiratory long-term facilitation following intermittent hypoxia requires reactive oxygen species formation.
[electronic resource]
by
MacFarlane, P M
Mitchell, G S
Producer:
20080805
In:
Neuroscience
vol. 152
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4.
Hypothermia and hypoxia inhibit the Hering-Breüer reflex in the marsupial newborn.
[electronic resource]
by
MacFarlane, P M
Frappell, P B
Producer:
20040519
In:
American journal of physiology. Regulatory, integrative and comparative physiology
vol. 286
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5.
Episodic spinal serotonin receptor activation elicits long-lasting phrenic motor facilitation by an NADPH oxidase-dependent mechanism.
[electronic resource]
by
MacFarlane, P M
Mitchell, G S
Producer:
20100726
In:
The Journal of physiology
vol. 587
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6.
Enhancement of phrenic long-term facilitation following repetitive acute intermittent hypoxia is blocked by the glycolytic inhibitor 2-deoxyglucose.
[electronic resource]
by
MacFarlane, P M
Vinit, S
Mitchell, G S
Producer:
20190107
In:
American journal of physiology. Regulatory, integrative and comparative physiology
vol. 314
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7.
Spinal nNOS regulates phrenic motor facilitation by a 5-HT2B receptor- and NADPH oxidase-dependent mechanism.
[electronic resource]
by
MacFarlane, P M
Vinit, S
Mitchell, G S
Producer:
20150212
In:
Neuroscience
vol. 269
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8.
Serotonin 2A and 2B receptor-induced phrenic motor facilitation: differential requirement for spinal NADPH oxidase activity.
[electronic resource]
by
MacFarlane, P M
Vinit, S
Mitchell, G S
Producer:
20110627
In:
Neuroscience
vol. 178
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9.
Microglia modulate brainstem serotonergic expression following neonatal sustained hypoxia exposure: implications for sudden infant death syndrome.
[electronic resource]
by
MacFarlane, P M
Mayer, C A
Litvin, D G
Producer:
20170807
In:
The Journal of physiology
vol. 594
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10.
Changes in carotid body and nTS neuronal excitability following neonatal sustained and chronic intermittent hypoxia exposure.
[electronic resource]
by
Mayer, C A
Wilson, C G
MacFarlane, P M
Producer:
20150804
In:
Respiratory physiology & neurobiology
vol. 205
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11.
Mechanics of the respiratory system in the newborn tammar wallaby.
[electronic resource]
by
MacFarlane, P M
Frappell, P B
Mortola, J P
Producer:
20020815
In:
The Journal of experimental biology
vol. 205
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12.
NADPH oxidase activity is necessary for acute intermittent hypoxia-induced phrenic long-term facilitation.
[electronic resource]
by
MacFarlane, P M
Satriotomo, I
Windelborn, J A
Mitchell, G S
Producer:
20090709
In:
The Journal of physiology
vol. 587
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13.
Energetics of terrestrial locomotion of the platypus Ornithorhynchus anatinus.
[electronic resource]
by
Fish, F E
Frappell, P B
Baudinette, R V
MacFarlane, P M
Producer:
20010510
In:
The Journal of experimental biology
vol. 204
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14.
Phrenic long-term facilitation after acute intermittent hypoxia requires spinal ERK activation but not TrkB synthesis.
[electronic resource]
by
Hoffman, M S
Nichols, N L
Macfarlane, P M
Mitchell, G S
Producer:
20130617
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 113
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15.
Respiratory plasticity following intermittent hypoxia: roles of protein phosphatases and reactive oxygen species.
[electronic resource]
by
Wilkerson, J E R
Macfarlane, P M
Hoffman, M S
Mitchell, G S
Producer:
20080205
In:
Biochemical Society transactions
vol. 35
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16.
Physiologic basis for intermittent hypoxic episodes in preterm infants.
[electronic resource]
by
Martin, R J
Di Fiore, J M
Macfarlane, P M
Wilson, C G
Producer:
20130416
In:
Advances in experimental medicine and biology
vol. 758
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17.
Vulnerability of neonatal respiratory neural control to sustained hypoxia during a uniquely sensitive window of development.
[electronic resource]
by
Mayer, C A
Di Fiore, J M
Martin, R J
Macfarlane, P M
Producer:
20141027
In:
Journal of applied physiology (Bethesda, Md. : 1985)
vol. 116
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18.
Ventilation and metabolism in a large semifossorial marsupial: the effect of graded hypoxia and hypercapnia.
[electronic resource]
by
Frappell, P B
Baudinette, R V
MacFarlane, P M
Wiggins, P R
Shimmin, G
Producer:
20020430
In:
Physiological and biochemical zoology : PBZ
vol. 75
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19.
Reactive oxygen species and respiratory plasticity following intermittent hypoxia.
[electronic resource]
by
MacFarlane, P M
Wilkerson, J E R
Lovett-Barr, M R
Mitchell, G S
Producer:
20090415
In:
Respiratory physiology & neurobiology
vol. 164
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20.
Intratracheal LPS administration attenuates the acute hypoxic ventilatory response: Role of brainstem IL-1β receptors.
[electronic resource]
by
Ribeiro, A P
Mayer, C A
Wilson, C G
Martin, R J
MacFarlane, P M
Producer:
20180326
In:
Respiratory physiology & neurobiology
vol. 242
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