scholarly article | Q13442814 |
P50 | author | C Giovanni Galizia | Q42591564 |
Silke Sachse | Q55122003 | ||
P2093 | author name string | A Rappert | |
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P433 | issue | 11 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 3970-3982 | |
P577 | publication date | 1999-11-01 | |
P1433 | published in | European Journal of Neuroscience | Q5412733 |
P1476 | title | The spatial representation of chemical structures in the antennal lobe of honeybees: steps towards the olfactory code | |
P478 | volume | 11 |
Q27321689 | A combined perceptual, physico-chemical, and imaging approach to 'odour-distances' suggests a categorizing function of the Drosophila antennal lobe |
Q33804449 | A large-scale model of the locust antennal lobe |
Q52689947 | A metric for odorant comparison. |
Q36005747 | A multimodal approach for tracing lateralisation along the olfactory pathway in the honeybee through electrophysiological recordings, morpho-functional imaging, and behavioural studies. |
Q34028602 | Alarm pheromone processing in the ant brain: an evolutionary perspective |
Q22808996 | An Olfactory Sensory Map in the Fly Brain |
Q48294704 | Antennal lobe processing increases separability of odor mixture representations in the honeybee. |
Q39491181 | Antennal-lobe organization in desert ants of the genus Cataglyphis |
Q50726979 | Appetitive and aversive olfactory learning induce similar generalization rates in the honey bee. |
Q52011671 | Appetitive odor learning does not change olfactory coding in a subpopulation of honeybee antennal lobe neurons. |
Q42576234 | Associative conditioning tunes transient dynamics of early olfactory processing. |
Q30427735 | Asymmetry in olfactory generalization and the inclusion criterion in ants |
Q37114400 | Behavioral and neural plasticity caused by early social experiences: the case of the honeybee |
Q35600957 | Behavioral and neurophysiological study of olfactory perception and learning in honeybees |
Q44453961 | Blocking sensory inputs to identified antennal glomeruli selectively modifies odorant perception in Drosophila |
Q33534858 | Calcium imaging in the ant Camponotus fellah reveals a conserved odour-similarity space in insects and mammals |
Q36404416 | Chemotopic odorant coding in a mammalian olfactory system |
Q33632306 | Coincidence of pheromone and plant odor leads to sensory plasticity in the heliothine olfactory system. |
Q44744851 | Colony-specific hydrocarbons identify nest mates in two species of Formica ant. |
Q51901250 | Complete mapping of glomeruli based on sensory nerve branching pattern in the primary olfactory center of the cockroach Periplaneta americana |
Q49109359 | Computational modeling suggests that response properties rather than spatial position determine connectivity between olfactory glomeruli. |
Q33223682 | Consistent organization of glomeruli in the antennal lobes of related species of heliothine moths |
Q46761000 | Differential combinatorial coding of pheromones in two olfactory subsystems of the honey bee brain |
Q41776626 | Differential responses to branched and unsaturated aliphatic hydrocarbons in the rat olfactory system |
Q46882654 | Distributed representation of social odors indicates parallel processing in the antennal lobe of ants |
Q36615724 | DoOR 2.0--Comprehensive Mapping of Drosophila melanogaster Odorant Responses |
Q43138205 | Dummies versus air puffs: efficient stimulus delivery for low-volatile odors. |
Q47207798 | Dynamics of olfactory bulb input and output activity during odor stimulation in zebrafish |
Q48680027 | Early olfactory experience induces structural changes in the primary olfactory center of an insect brain. |
Q42002865 | Ecology. Follow the odor. |
Q41910228 | Effects of functional group position on spatial representations of aliphatic odorants in the rat olfactory bulb |
Q42578952 | Elimination of a ligand gating site generates a supersensitive olfactory receptor. |
Q42045258 | Enantioselectivity of projection neurons innervating identified olfactory glomeruli. |
Q48448363 | Environment-specific modulation of odorant representations in the honeybee brain. |
Q34341309 | Excitatory local interneurons enhance tuning of sensory information |
Q52697282 | Functional and topographic segregation of glomeruli revealed by local staining of antennal sensory neurons in the honeybee Apis mellifera. |
Q42976915 | Global features of neural activity in the olfactory system form a parallel code that predicts olfactory behavior and perception |
Q43256179 | Glutamatergic and GABAergic effects of fipronil on olfactory learning and memory in the honeybee |
Q33531740 | Honeybees learn odour mixtures via a selection of key odorants |
Q44181612 | Hydroxyurea-induced partial mushroom body ablation does not affect acquisition and retention of olfactory differential conditioning in honeybees. |
Q36938310 | Imaging a population code for odor identity in the Drosophila mushroom body |
Q41483707 | Indistinguishable odour enantiomers: Differences between peripheral and central-nervous electrophysiological responses. |
Q43880734 | Inhibitory connections in the honeybee antennal lobe are spatially patchy |
Q36852190 | Inhibitory interactions among olfactory glomeruli do not necessarily reflect spatial proximity. |
Q57898814 | Insect olfaction and the evolution of receptor tuning |
Q58649215 | Investigating the Underlying Intelligence Mechanisms of the Biological Olfactory System |
Q37250321 | Is there a space-time continuum in olfaction? |
Q42265326 | Keeping their distance? Odor response patterns along the concentration range. |
Q34869615 | Learning modifies odor mixture processing to improve detection of relevant components |
Q41961402 | Long hydrocarbon chains serve as unique molecular features recognized by ventral glomeruli of the rat olfactory bulb |
Q51008124 | Mind the gap: olfactory trace conditioning in honeybees. |
Q42045420 | Molecular features of odorants systematically influence slow temporal responses across clusters of coordinated antennal lobe units in the moth Manduca sexta |
Q51003473 | Multiple memory traces after associative learning in the honey bee antennal lobe. |
Q33237700 | Multiple olfactory receptor neurons and their axonal projections in the antennal lobe of the honeybee Apis mellifera |
Q38606259 | Neural Mechanisms and Information Processing in Recognition Systems |
Q40495201 | Neuronal architecture of the mosquito deutocerebrum |
Q48178971 | Non-elemental processing in olfactory discrimination tasks needs bilateral input in honeybees. |
Q36514200 | Nonassociative plasticity alters competitive interactions among mixture components in early olfactory processing |
Q37301005 | Octopamine modulates activity of neural networks in the honey bee antennal lobe. |
Q91893852 | Odor Stimuli: Not Just Chemical Identity |
Q43697266 | Odor exposure causes central adaptation and morphological changes in selected olfactory glomeruli in Drosophila. |
Q46737543 | Odorant molecular length: one aspect of the olfactory code |
Q34029136 | Odour perception in honeybees: coding information in glomerular patterns |
Q33736092 | Olfactory blocking and odorant similarity in the honeybee. |
Q52589094 | Olfactory coding in a simple system: adaptation in Drosophila larvae. |
Q51862306 | Olfactory discrimination of complex mixtures of amino acids by the black bullhead Ameiurus melas. |
Q51177134 | Olfactory experience shapes the evaluation of odour similarity in ants: a behavioural and computational analysis. |
Q48509065 | Organization of antennal lobe-associated neurons in adult Drosophila melanogaster brain |
Q44839838 | Organization of the olfactory pathway and odor processing in the antennal lobe of the ant Camponotus floridanus. |
Q36475383 | Parallel Olfactory Processing in the Honey Bee Brain: Odor Learning and Generalization under Selective Lesion of a Projection Neuron Tract |
Q44007429 | Parallel processing via a dual olfactory pathway in the honeybee. |
Q40007482 | Parallel representation of stimulus identity and intensity in a dual pathway model inspired by the olfactory system of the honeybee. |
Q24792043 | Perception space--the final frontier |
Q24802991 | Perceptual and neural olfactory similarity in honeybees |
Q43819993 | Perceptual correlates of neural representations evoked by odorant enantiomers. |
Q44578859 | Phenotypic plasticity in number of glomeruli and sensory innervation of the antennal lobe in leaf-cutting ant workers (A. vollenweideri). |
Q51722897 | Pheromone-sensitive glomeruli in the primary olfactory centre of ants. |
Q48134872 | Physiological and morphological characterization of honeybee olfactory neurons combining electrophysiology, calcium imaging and confocal microscopy. |
Q44160861 | Quantitative analysis of olfactory receptor neuron projections in the antennal lobe of the malaria mosquito, Anopheles gambiae |
Q30485832 | Rapid odor processing in the honeybee antennal lobe network |
Q56336032 | Representación odotópica de la organización glomerular del lóbulo antenal en los cuerpos fungiformes de las hormigas (Hymenoptera: Formicidae): Comparaciones entre dos especies |
Q43806415 | Representation of odorants by receptor neuron input to the mouse olfactory bulb |
Q34128179 | Representation of the glomerular olfactory map in the Drosophila brain. |
Q43875538 | Role of inhibition for temporal and spatial odor representation in olfactory output neurons: a calcium imaging study |
Q42728493 | Searching for anatomical correlates of olfactory lateralization in the honeybee antennal lobes: a morphological and behavioural study. |
Q34151419 | Searching for learning-dependent changes in the antennal lobe: simultaneous recording of neural activity and aversive olfactory learning in honeybees. |
Q92237744 | Segregation of Unknown Odors From Mixtures Based on Stimulus Onset Asynchrony in Honey Bees |
Q52731244 | Sensillum-specific, topographic projection patterns of olfactory receptor neurons in the antennal lobe of the cockroach Periplaneta americana. |
Q28743737 | Sensory representation and learning-related plasticity in mushroom body extrinsic feedback neurons of the protocerebral tract |
Q43076421 | Sex-specific antennal sensory system in the ant Camponotus japonicus: glomerular organizations of antennal lobes |
Q44555011 | Side-specific olfactory conditioning leads to more specific odor representation between sides but not within sides in the honeybee antennal lobes. |
Q28360982 | Side-specificity of olfactory learning in the honeybee: generalization between odors and sides |
Q36460674 | Space Takes Time: Concentration Dependent Output Codes from Primary Olfactory Networks Rapidly Provide Additional Information at Defined Discrimination Thresholds |
Q52704113 | Spatial representation of alarm pheromone information in a secondary olfactory centre in the ant brain. |
Q42046292 | Spatial representation of odorant structure in the moth antennal lobe: a study of structure-response relationships at low doses |
Q40612977 | Spatial representations of odorants in olfactory bulbs of rats and mice: similarities and differences in chemotopic organization |
Q36114178 | Spatio-temporal activity patterns of odor-induced synchronized potentials revealed by voltage-sensitive dye imaging and intracellular recording in the antennal lobe of the cockroach |
Q38602696 | Take time: odor coding capacity across sensory neurons increases over time in Drosophila. |
Q47649748 | Temporal dynamics and latency patterns of receptor neuron input to the olfactory bulb. |
Q30572335 | The banana code-natural blend processing in the olfactory circuitry of Drosophila melanogaster |
Q44658166 | The coding of odour‐intensity in the honeybee antennal lobe: local computation optimizes odour representation |
Q34076872 | The role of glomeruli in the neural representation of odours: results from optical recording studies |
Q37749507 | Towards plant-odor-related olfactory neuroethology in Drosophila |
Q33581526 | Two minds about odors |
Q36852588 | Understanding the logics of pheromone processing in the honeybee brain: from labeled-lines to across-fiber patterns. |
Q46247123 | Variability in Sexual Pheromones Questions their Role in Bumblebee Pre-Mating Recognition System |
Q36370159 | Weak patriline effects are present in the cuticular hydrocarbon profiles of isolated Formica exsecta ants but they disappear in the colony environment |
Q43975371 | Whole-cell recording from honeybee olfactory receptor neurons: ionic currents, membrane excitability and odourant response in developing workerbee and drone |
Q36995117 | cGMP modulates responses to queen mandibular pheromone in worker honey bees |
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