Neural activity can be mapped across individuals using brain atlases, but when spatial relationships are not equal, these techniques collapse. We map activity across individuals using functional registration, based on physiological responses to predetermined reference stimuli. Data from several individuals are integrated into a common multidimensional stimulus space, where dimensionality and axes are defined by these reference stimuli. We used this technique to discriminate volatile compounds with a cohort of Drosophila flies, by recording odor responses in receptor neurons on the flies' antennae. We propose this technique for the development of reliable biological sensors when activity raw data cannot be calibrated. In particular, this technique will be useful for evaluating physiological measurements in natural chemosensory systems, and therefore will allow to exploit the sensitivity and selectivity of olfactory receptors present in the animal kingdom for analytical purposes.

Martinelli, E., Ludke, A., Adamo, P., Strauch, M., Di Natale, C., Galizia, C.g. (2017). Normalizing brain activity across individuals using functional reference mapping. SCIENTIFIC REPORTS, 7(1) [10.1038/s41598-017-16913-1].

Normalizing brain activity across individuals using functional reference mapping

Martinelli E.;Di Natale C.;
2017-01-01

Abstract

Neural activity can be mapped across individuals using brain atlases, but when spatial relationships are not equal, these techniques collapse. We map activity across individuals using functional registration, based on physiological responses to predetermined reference stimuli. Data from several individuals are integrated into a common multidimensional stimulus space, where dimensionality and axes are defined by these reference stimuli. We used this technique to discriminate volatile compounds with a cohort of Drosophila flies, by recording odor responses in receptor neurons on the flies' antennae. We propose this technique for the development of reliable biological sensors when activity raw data cannot be calibrated. In particular, this technique will be useful for evaluating physiological measurements in natural chemosensory systems, and therefore will allow to exploit the sensitivity and selectivity of olfactory receptors present in the animal kingdom for analytical purposes.
2017
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore ING-INF/01 - ELETTRONICA
English
Con Impact Factor ISI
Article number: 17128 (2017)
Martinelli, E., Ludke, A., Adamo, P., Strauch, M., Di Natale, C., Galizia, C.g. (2017). Normalizing brain activity across individuals using functional reference mapping. SCIENTIFIC REPORTS, 7(1) [10.1038/s41598-017-16913-1].
Martinelli, E; Ludke, A; Adamo, P; Strauch, M; Di Natale, C; Galizia, Cg
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/198698
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