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M Cattarelli

Publications and source records attributed to M Cattarelli.

31 records · Page 2Linked to original sources

Selective olfactory pathway lesions differentially affect runway behavior of the rat.

Selective bilateral lesions of the lateral olfactory tract (LOT) and/or the anterior limb of the anterior commissure (AAC) were performed on male rats and their influence on performance of a simple task studied. Rats had to enter and run down an alley for water reward. Whatever the lesion, all the rats succeeded in learning the task but some differences appeared in comparison with intact and sham-operated rats. AAC rats acquired faster the task, whereas LOT rats and AAC + LOT rats took longer to reach the learning criterion.

Animals↗

Metabolic mapping of 2-deoxyglucose uptake in the rat piriform cortex using computerized image processing.

Using a computerized image processing method, the metabolic activity of the unfolded molecular and pyramidal layers of the piriform cortex was studied in rats during odorous stimulation. Animals were either intact or had sustained a bilateral transection of the lateral olfactory tract. 2-DG labelling was observed in corresponding areas across these two layers. No spatial pattern of 2-DG uptake could be seen in correlation with the odorant quality. These results are discussed with respect to the known anatomical and functional properties of the piriform cortex.

Animals↗

Basal plasma corticosterone level after bilateral selective lesions of the olfactory pathways in the rat.

In comparison to control rats, basal plasma corticosterone level and lactacidemia significantly increased in rats submitted to a bilateral lesion of the lateral olfactory tract and/or the anterior branch of the anterior commissure. Only the lesion of the anterior branch of the anterior commissure induced hyperglycemia; that of the lateral olfactory tract exerted an opposite effect.

Adrenal Glands↗

Metabolic mapping of functional activity in the rat olfactory system after a bilateral transection of the lateral olfactory tract.

The effects of the bilateral transection of the LOT on the patterns of 2-deoxyglucose uptake within the olfactory bulb and the olfactory projections were studied in adult rats. Animals were exposed to a pure neutral odor, ethyl acetoacetate (EAA) or to a biological alarming odor, fox odor. In intact animals, the patterns of glomerular activity elicited by EAA and fox odor appeared complex. An average number of 30-40 foci of 2-DG uptake was noted in each bulb and the optical density of the foci spread out according to a continuous gradient. These patterns were largely overlapping on the lateral aspect and the third-to-posterior part of the medial aspect of the bulb. Nevertheless, they were somewhat different and the spatial distribution of the darkest foci seemed particularly relevant for the pattern recognition. In lesioned animals, the same spatial distribution of the foci as in intact rats, was observed in the lateral and the medial aspects of the bulb. Nevertheless, lesioned animals presented some quantitative changes in their patterns of glomerular labeling. Moreover, these patterns appeared different according to the biological meaning of the odor tested. The bilateral transection of the LOT brought about a very strong decrease of the optical density in the direct olfactory projections. No evident change of 2-DG uptake was noted in the different tertiary olfactory projections. These 2-DG results confirm the anatomical data relating to the LOT projections.

Amygdala↗

Transmission and integration of biologically meaningful olfactory information after bilateral transection of the lateral olfactory tract in the rat.

The contribution of the olfactory inputs conveyed by the lateral olfactory tract (LOT) to the central olfactory areas in the onset of behavioral and electrophysiological responses i.e. multiunit activity of mitral cells was studied in rats which were submitted to a bilateral transection of LOT. The characteristic emotional reactions elicited in sham-operated rats by biologically meaningful odorants--odors of predator or of conspecific--were no longer observed after such lesion. At the olfactory bulb level, the differential habituation of mitral cell electrical responses according to the biological meaning of the stimuli disappeared in the rats with a bilateral section of LOT. However the awaking influence of the odorants when stimulations occurred during slow wave sleep remained unchanged: all the rats were more often awakened by the odor of predator than by the other stimuli. On the other hand, an inhibitory centrifugal influence of LOT on mitral cell electrical responses was noted in rats with a unilateral transection of LOT. The results are discussed in relation to the two olfactory pathways (lateral and medial). During wakefulness, LOT seems essential to the olfactory information processing; in slow wave sleep, the medial olfactory pathways appear to mediate olfactory discrimination and to elicit adapted arousal.

Animals↗

The role of the medial olfactory pathways in olfaction: behavioral and electrophysiological data.

The role of the olfactory inputs transmitted by the medial olfactory pathways --i.e. anterior limb of the anterior commissure and medial forebrain bundle-was studied in rats submitted either to a bilateral lesion of the anterior commissure (bAC group) or to a bilateral transection of the lateral olfactory tract followed by an anterior commissure bilateral lesion (bCL group). In the bCL group, the characteristic emotional reactions usually observed in sham-operated rats to biologically meaningful odorants (odor of a predator or of conspecifics) were no longer observed; in this group, the modulation of mitral cell electrical responses according to the biological meaning of the stimuli disappeared and no habituation was noted when the stimulations were repeated: few responses appeared at random; lastly, all the stimuli tested, the odor of conspecifics excepted, did not exert an awaking influence on the sleeping rats (slow wave sleep). On the contrary, emotional reactions were always observed in the bAC group, a slight increase of reactivity to the odorants was even noted. In this group of animals, the anterior commissure bilateral lesion induced a large increase of the bulbar responses to all the odorants; the habituation of the electrical responses disappeared, a large percentage of responses being always noted even for the tenth series of stimulation; these results point out the great inhibitory influence that the anterior commissure exerts on the olfactory bulb activity. In these bAC rats almost usual awaking influences were noted, however, the odor of conspecifics became as efficient as fox odor to awake the animals. Results are discussed in relation to the functional role of the medial and lateral olfactory pathways, the integrity of both the pathways being necessary for an accurate olfactory process.

Animals↗

Influence of some biologically meaningful odorants on the vigilance states of the rat.

In freely moving rats, mitral cells multiunit activity and vigilance states (EEG and neck muscles EMG) were recorded during stimulations by some odorous stimuli known from previous experiments to elicit distinct emotional behaviors. An awaking influence may be pointed out; the greatest awaking influence is noted for the opposite most biologically meaningful stimuli: odor of fox (predator of the rat) and odor of grouped rats. Mitral cells responsiveness is not only modulated by the biological meaning of the olfactory stimulus but is also under the control of the arousal level of the animal; it decreases from wakefulness (W) to slow wave sleep (SWS).

Animals↗

[Control of the rat olfactory bulb activity induced by biologically significant odors (author's transl)].

In acute experiments, unitary activity was recorded from mitral cells of the rat olfactory bulb. The animals were stimulated with odors that have been shown in previous experiments to give a distinct emotional behavior. In curarized rats an odor giving alarm behavior evoked a greater number of inhibitory than excitatory responses was elicited by a neutral odor. In rats under Nembutal anesthesia an alarming odor evoked a greater number of inhibitory than excitatory responses; a reassuring odor evoked a greater number of excitatory than inhibititory responses; and equal number of inhibitory and excitatory responses; a reassuring or a neutral odor evoked an equal number of inhibitory and excitatory responses. After sectioning the olfactory peduncles, the difference in ratio between excitatory and inhibitory responses for alarming or reassuring odors was no longer present. The results are discussed in terms of a modulation of mitral cell activity by higher nervous centers in relation to the biological significance of the stimulating odors.

Animals↗