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Abstract Biological detectors such as the human nose or an insect antenna represent extremely attractive detectors for gas chromatography (GC) since they are specifically tuned to perceive biologically relevant compounds. However, these detectors are nonlinear, noisy and often perform poorly under standard GC conditions since they are adapted to detect transient rather than long-lasting stimuli. These drawbacks can be overcome if the chemical stimulus, delivered by the gas chromatograph, is re-shaped (modulated) before reaching the biological detector. We describe a pulsing system that improves the performance of an insect olfactory system when stimulated with the effluent from a GC capillary column. Chemicals eluted from the GC column are trapped and rapidly desorbed within a thermal modulator in order to transform the continuous effluent into a succession of short-pulsed stimuli. The output from this modulator was directed to an insect antenna, from which electrophysiological responses were recorded. The system was evaluated with adult male Spodoptera littoralis (Lepidoptera: Noctuidae) stimulated with the conspecific female sex pheromone. Results obtained with this new approach indicate that both sensitivity and reliability of the biological detector are improved compared with the classical technique. Possible developments of this new technique are discussed.
AbstractList Biological detectors such as the human nose or an insect antenna represent extremely attractive detectors for gas chromatography (GC) since they are specifically tuned to perceive biologically relevant compounds. However, these detectors are nonlinear, noisy and often perform poorly under standard GC conditions since they are adapted to detect transient rather than long-lasting stimuli. These drawbacks can be overcome if the chemical stimulus, delivered by the gas chromatograph, is re-shaped (modulated) before reaching the biological detector. We describe a pulsing system that improves the performance of an insect olfactory system when stimulated with the effluent from a GC capillary column. Chemicals eluted from the GC column are trapped and rapidly desorbed within a thermal modulator in order to transform the continuous effluent into a succession of short-pulsed stimuli. The output from this modulator was directed to an insect antenna, from which electrophysiological responses were recorded. The system was evaluated with adult male Spodoptera littoralis (Lepidoptera: Noctuidae) stimulated with the conspecific female sex pheromone. Results obtained with this new approach indicate that both sensitivity and reliability of the biological detector are improved compared with the classical technique. Possible developments of this new technique are discussed.
Author de Cruz, Isabelle
Wadhams, Lester
van der Pers, Jan
Gouinguené, Sandrine
Marion-Poll, Frédéric
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  surname: Gouinguené
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  organization: Institut de Zoologie, Rue Emile-Argand 11, CH-2007 Neuchatel, Switzerland, route de Saint Cyr, F-78026 Versailles Cedex, France, PO Box 1547, NL-1200 BM Hilversum, The Netherlands, Harpenden, Herts AL5 2JQ, UK
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  givenname: Isabelle
  surname: de Cruz
  fullname: de Cruz, Isabelle
  organization: Laboratoire des Médiateurs Chimiques, INRA Station de Phytopharmacie et Médiateurs Chimiques route de Saint Cyr, F-78026 Versailles Cedex, France
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  givenname: Jan
  surname: van der Pers
  fullname: van der Pers, Jan
  organization: Syntech PO Box 1547, NL-1200 BM Hilversum, The Netherlands
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  givenname: Lester
  surname: Wadhams
  fullname: Wadhams, Lester
  organization: IACR-Rothamsted Harpenden, Herts AL5 2JQ, UK
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  givenname: Frédéric
  surname: Marion-Poll
  fullname: Marion-Poll, Frédéric
  email: marion@versailles.inra.fr
  organization: Laboratoire des Médiateurs Chimiques, INRA Station de Phytopharmacie et Médiateurs Chimiques route de Saint Cyr, F-78026 Versailles Cedex, France
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Issue 6
Keywords Methodology
Insecta
Instrumentation
Spodoptera littoralis
Gas chromatography
Detector
Investigation method
Arthropoda
Lepidoptera
Olfaction
Perception
Noctuidae
Technique
Invertebrata
Language English
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PublicationTitle Chemical senses
PublicationTitleAlternate Chem Senses
PublicationYear 1998
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Snippet Biological detectors such as the human nose or an insect antenna represent extremely attractive detectors for gas chromatography (GC) since they are...
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SubjectTerms Animals
Biological and medical sciences
Chromatography, Gas - instrumentation
Chromatography, Gas - methods
Electrophysiology - methods
Fatty Acids, Monounsaturated - analysis
Fatty Acids, Monounsaturated - pharmacology
Female
Fundamental and applied biological sciences. Psychology
General aspects and techniques. Study of several systematic groups. Models
Invertebrates
Male
Miscellaneous techniques
Noctuidae
Sensitivity and Specificity
Sex Attractants - analysis
Sex Attractants - pharmacology
Smell - physiology
Spodoptera - physiology
Spodoptera littoralis
Techniques
Time Factors
Title A New Method to Improve Olfactory Responses to GC Effluents
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