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Cell and Tissue Research
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October 1, 1994
Immunogold labelling of serotonin-like and FMRFamide-like immunoreactive material in neurohaemal areas on abdominal nerves of Rhodnius prolixus
S Miksys, I Orchard
Brain Research
|
October 13, 1987
Regulation of adipokinetic hormone release from locust neuroendocrine tissue: participation of calcium and cyclic AMP
T Pannabecker, I Orchard
Journal of Insect Physiology
|
May 18, 2001
Dopamine induces hyperpolarization of locust salivary gland acinar cells via D(1)-like receptors
C Keating, I Orchard
Brain Research
|
January 16, 1989
Ionic dependence of depolarization-mediated adipokinetic hormone release from the locust corpus cardiacum
T Pannabecker, I Orchard
Brain Research
|
November 12, 1986
Electrical coupling and gap junctions between neurosecretory cells in an insect
I Orchard, R Shivers
Brain Research
|
August 16, 1988
Evidence for a Na+/Ca2+ exchange mechanism in the neuroendocrine cells of the locust corpus cardiacum
T Pannabecker, I Orchard
Molecular and Cellular Endocrinology
|
December 1, 1986
Octopamine and cyclic AMP mediate release of adipokinetic hormone I and II from isolated locust neuroendocrine tissue
T Pannabecker, I Orchard
Regulatory Peptides
|
November 11, 1998
The muscular contractions of the midgut of the cockroach, Diploptera punctata: effects of the insect neuropeptides proctolin and leucomyosuppressin
M Fusé, I Orchard
The Journal of Comparative Neurology
|
September 1, 1991
Distribution of FMRFamide-related peptides in the blood-feeding bug, Rhodnius prolixus
P W Tsang, I Orchard
Brain Research
|
June 2, 1980
Electrical activity of neurosecretory axons from the brain of Rhodnius prolixus: relation of changes in the pattern of activity to endocrine events during the moulting cycle
I Orchard, C G Steel
Page
of 8
Search research articles
Search
Showing results (1-10 of 71) with videos related to
Sort By:
Page
of 8
Cell and Tissue Research
|
October 1, 1994
Immunogold labelling of serotonin-like and FMRFamide-like immunoreactive material in neurohaemal areas on abdominal nerves of Rhodnius prolixus
S Miksys, I Orchard
Brain Research
|
October 13, 1987
Regulation of adipokinetic hormone release from locust neuroendocrine tissue: participation of calcium and cyclic AMP
T Pannabecker, I Orchard
Journal of Insect Physiology
|
May 18, 2001
Dopamine induces hyperpolarization of locust salivary gland acinar cells via D(1)-like receptors
C Keating, I Orchard
Brain Research
|
January 16, 1989
Ionic dependence of depolarization-mediated adipokinetic hormone release from the locust corpus cardiacum
T Pannabecker, I Orchard
Brain Research
|
November 12, 1986
Electrical coupling and gap junctions between neurosecretory cells in an insect
I Orchard, R Shivers
Brain Research
|
August 16, 1988
Evidence for a Na+/Ca2+ exchange mechanism in the neuroendocrine cells of the locust corpus cardiacum
T Pannabecker, I Orchard
Molecular and Cellular Endocrinology
|
December 1, 1986
Octopamine and cyclic AMP mediate release of adipokinetic hormone I and II from isolated locust neuroendocrine tissue
T Pannabecker, I Orchard
Regulatory Peptides
|
November 11, 1998
The muscular contractions of the midgut of the cockroach, Diploptera punctata: effects of the insect neuropeptides proctolin and leucomyosuppressin
M Fusé, I Orchard
The Journal of Comparative Neurology
|
September 1, 1991
Distribution of FMRFamide-related peptides in the blood-feeding bug, Rhodnius prolixus
P W Tsang, I Orchard
Brain Research
|
June 2, 1980
Electrical activity of neurosecretory axons from the brain of Rhodnius prolixus: relation of changes in the pattern of activity to endocrine events during the moulting cycle
I Orchard, C G Steel
Page
of 8