Turning behaviour in animals
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In vivo Bidirectional Modulation of Cannabinoid on the Activity of Globus Pallidus in Rats
2021, NeuroscienceCitation Excerpt :Consistent with above studies, the present behavioral tests suggest that intrapallidal administration of WIN 55,212-2 mainly enhanced motor behavior in rats, while CB1R antagonist mainly exerted opposite effect. It has been suggested that the basis of turning behavior is the imbalance of bilateral basal ganglia output activity (Pycock, 1980). According to the indirect pathway of the basal ganglia circuit, the increased firing activity of unilateral GP neurons would reduce the activity of the subthalamic nucleus and disinhibit the influence of the basal ganglia output nucleus on ipsilateral thalamus and motor cortex, therefore induce contralateral motor behavior.
Deep-time geometricians and hints on motor control evolution of marine invertebrates
2021, Palaeogeography, Palaeoclimatology, PalaeoecologyCitation Excerpt :Laboratory observations have shown that certain animals (e.g., rodents) display a natural preference to one particular side, which reflect an intrinsic bilateral imbalance in the functioning of the nigrostriatal pathways (Glick et al., 1976). In modern pharmacology, circling behaviour can be elicited or enhanced by applying certain dopaminergic drugs (Pycock, 1980). In the rich natural-world locomotion patterns provided by trace fossils, circling and spiralling behaviours are common in several deep-sea trace fossils (e.g., Spirodesmos, Spirorhaphe) (see Huckriede, 1952; Fan et al., 2018) and in the feeding patterns of modern deep-sea acorn worms (Smith et al., 2005) and intertidal polychaete Paraonis fulgens Levinsen (Minter et al., 2006), which may suggest the special natural selection on particular motor patterns and feeding ecology.
The effects of mining machinery noise of different amplitudes on the behaviour, faecal corticosterone and tissue morphology of wild mice (Mus musculus)
2018, Applied Animal Behaviour ScienceHead-turning asymmetry: A novel lateralization in rats predicts susceptibility to behavioral despair
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