Leucine incorporation in the ganglia of praying mantids during a learning process (original) (raw)

The dynamics of learning in the praying mantis (Stagmatoptera biocellata

Norberto Balderrama

Journal of Insect Physiology, 1979

View PDFchevron_right

Amino acid levels during learning and memory consolidation of an aversive conditioning task in crickets

nelson zabala

Pharmacology Biochemistry and Behavior, 1992

View PDFchevron_right

Amino acids and memory consolidation in the cricket I: Changes in the titer of free amino acids in nervous tissue after learning

Melissa Granier

1990

View PDFchevron_right

The control of tonus and locomotor activity in the praying mantis (Mantis religiosa L.)

Bertrand Horne

Journal of Experimental Zoology, 1937

View PDFchevron_right

The metabolism of tyrosine, tyramine and L-3, 4-dihydroxyphenylalanine by cerebral and thoracic ganglia of the locust, Schistocera gergaria

Peter Vaughan

Brain Research, 1976

View PDFchevron_right

Toward elucidating diversity of neural mechanisms underlying insect learning

Makoto Mizunami

Zoological Letters, 2015

View PDFchevron_right

Glutamate-like immunoreactivity in identified neuronal populations of insect nervous systems

Jon Storm-mathisen

The Journal of Neuroscience, 1988

View PDFchevron_right

Again about central metabotropic glutamate receptors of the group I in the honeybee Apis mellifera

Tatiana Zachepilo

Journal of Evolutionary Biochemistry and Physiology, 2011

View PDFchevron_right

Characterization and developmental regulation of tyramine-β-hydroxylase in the CNS of the moth, Manduca sexta

John G Hildebrand

Insect Biochemistry and Molecular Biology, 2000

View PDFchevron_right

Activity of gypsy moth dorsolateral neurosecretory neurons under increased rearing density

Dragana Matic

Archives of Biological Sciences, 2012

View PDFchevron_right

γ-aminobutyric acid in the central nervous system of metamorphosing and mature Manduca sexta

John G Hildebrand

Insect Biochemistry, 1985

View PDFchevron_right

Neuropeptides in interneurons of the insect brain

Uwe Homberg

Cell and Tissue Research, 2006

View PDFchevron_right

The Structure and Cytochemistry of the Neurosecretory Cells in the Cerebral and Ventral Ganglia ofHydrous TriangularisSay (Insecta: Coleoptera)

T. GOVARDHAN

Bolletino di zoologia, 1978

View PDFchevron_right

The Role of Dopamine and Glutamate in Associative Learning by the Pigeon (Columba livia)

Martin Acerbo

2001

View PDFchevron_right

“Neuroethoendocrinology”: Integration of field and laboratory studies in insect neuroendocrinology

Susan Fahrbach

Hormones and Behavior, 2005

View PDFchevron_right

Postembryonic development of γ‐aminobutyric acid‐like Immunoreactivity in the brain of the sphinx moth Manduca sexta

Uwe Homberg

Journal of Comparative Neurology, 1994

View PDFchevron_right

Detection of dopamine, noradrenaline and 5-hydroxytryptamine in the cerebral ganglion of the desert locust,Schistocerca gregaria forsk (insecta: orthoptera)

Sture Axelsson

Brain Research, 1973

View PDFchevron_right

Characterization of the tyraminergic system in the central nervous system of the locust,Locusta migratoria migratoides

Szilveszter Juhos

Neurochemical Research, 1993

View PDFchevron_right

[Biochemical basis of learning and memory]

Georges Chapouthier

L Encéphale

View PDFchevron_right

Neuromodulatory pathways in learning and memory: Lessons from invertebrates

Nathan De Fruyt

Journal of Neuroendocrinology, 2020

View PDFchevron_right

Cholinergic neurochemical development of normal and deafferented antennal lobes during metamorphosis of the moth,Manduca sexta

John G Hildebrand

Brain Research, 1977

View PDFchevron_right

A learning-related variation in electroantennogram responses of a parasitic wasp

Wilant van Giessen

Physiological Entomology, 1990

View PDFchevron_right

Modulatory effect of learning and memory on honey bee brain acetylcholinesterase activity

Monique Gauthier

Comparative Biochemistry and Physiology Part C: Comparative Pharmacology, 1992

View PDFchevron_right

Analysis of protein levels and synthesis after learning in the split-brain pigeon

Dale Deutsch

Brain Research, 1980

View PDFchevron_right

An engram found? Evaluating the evidence from fruit flies [Curr. Opin. Neuro. 14 (2004) 737]

Hiromu Tanimoto

Current Opinion in Neurobiology, 2005

View PDFchevron_right

Modification of the motor reflex responses due to repetition of the peripheral stimulus in the cockroach. I. Habituation at the level of an isolated abdominal ganglion

Nelly Zilber

The Journal of experimental biology, 1973

View PDFchevron_right

Carbs or Fat? Nerve Cells That Control Glycolysis in Locust Flight Muscles

Dirk Bucher

Journal of Experimental Biology, 2003

View PDFchevron_right

Anatomy of the lobula complex in the brain of the praying mantis compared to the lobula complexes of the locust and cockroach

Ronny Rosner

Journal of Comparative Neurology

View PDFchevron_right

Neuromodulation by 5-hydroxytryptamine in the antennal lobe of the sphinx moth Manduca sexta

John G Hildebrand

The Journal of experimental biology, 1995

View PDFchevron_right

Alterations in synaptic structure in the paleostriatal complex of the domestic chick,Gallus domesticus, following passive avoidance training

András Csillag

Brain Research, 1987

View PDFchevron_right

Neuromodulation for behavior in the locust frontal ganglion

Amir Ayali

Journal of Comparative Physiology A: Sensory, Neural, and Behavioral Physiology, 2004

View PDFchevron_right

Immunohistological studies on the distribution of learning-related peptides in the central nervous system of conditioned Lymnaea

Manabu Sakakibara

Acta Biologica Hungarica, 2008

View PDFchevron_right

Neural processing of chemosensory information from the locust legs [Elektronische Ressource] /

ibrahim Gaaboub

View PDFchevron_right

The effects of l-glutamate on cultured insect neurones

Geoff Horseman

Neurosci Lett, 1988

View PDFchevron_right

Postembryonic development of ?-aminobutyric acid-like Immunoreactivity in the brain of the sphinx mothManduca sexta

John G Hildebrand

The Journal of Comparative Neurology, 1994

View PDFchevron_right