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Najafipashaki, S.

Publications and source records attributed to Najafipashaki, S..

3 recordsLinked to original sources

Principles of neocortical organisation and behaviour in primates

One sentence summaryThe study of brain MRI from 70 different primate species reveals a fundamental principle of neocortical organisation and behaviour driven by mechanical morphogenesis. The development and evolution of neocortical organisation is typically explained by the interaction of two fundamental factors: genetics and experience-dependent processes. Morphogens and signalling molecules would orchestrate the formation of neocortical areas and connection networks, which are later refined through exposure to environmental stimuli. Evolutionary changes to these genetic programs are thought to account for the diversity of brains and behaviours observed in extant species. However, our phylogenetic comparative study of primate neuroanatomy and behaviour shows this view is incomplete. Using brain MRI from 70 primate species we observed that not only the degree of folding but also the folding pattern changes continuously with brain volume, independently of phylogenetic position. To better understand the consequences of this continuity we focused on New and Old World monkeys which diverged approximately 47 million years ago. Large New World monkeys, such as capuchins, have a significantly larger and more folded neocortex than many of their close phylogenetic relatives, whose brains are barely folded. Notably, in addition to folding, their thickness and connectivity patterns were almost identical to those of phylogenetically distant Old World monkeys. Combined analyses of MRI and endocasts from 105 primate species indicated that the highly folded neocortex of large New World monkeys evolved independently from a common ancestor with a small, unfolded brain. Remarkably, across all 70 species, behavioural similarity correlated substantially more with neuroanatomical similarity than with phylogenetic similarity. Our results challenge the prevailing explanation of the development and evolution of neocortical organisation. We propose that the "capuchin anomaly" can be resolved by incorporating mechanical morphogenesis, alongside genetics and experience, as a third fundamental factor. Growth-driven mechanical instabilities would produce similar neuroanatomical organisation patterns and behaviours, emerging independently of the specific genetic determinants of that growth.

neuroscience↗

Activation of Infralimbic cortex neurons projecting to the nucleus accumbens shell suppresses discriminative stimulus-triggered relapse to cocaine seeking in rats

Cocaine addiction is marked by high relapse rates, often triggered by drug-associated cues. These cues can be conditioned stimuli (CSs), which occur after drug intake and are paired with drug effects, and discriminative stimuli (DSs), which signal drug availability, regardless of ongoing drug-seeking behaviour. While projections from the infralimbic cortex (IL) to the nucleus accumbens (NAc) shell are known to regulate CS-induced cocaine relapse, their role in DS-triggered relapse is not known. To investigate this, we examined how activating IL[->]NAc shell projections influences relapse driven by DSs and CSs during abstinence from intermittent cocaine use. Female Sprague-Dawley rats received viral-mediated gene expression of excitatory designer receptors exclusively activated by designer drugs in the IL. Rats then self-administered cocaine during 12 intermittent-access sessions (5-min cocaine ON/25-min cocaine OFF, 4h/day). A discrete light (DS+) signalled drug-available periods, while a different light (DS-) signalled drug non-availability. During each DS+ period, cocaine infusions were paired with a compound light-tone (CS+). Four weeks later, rats were tested for cue-induced cocaine seeking following response-independent presentation of DS+, CS+ or both. Immediately prior to testing, rats received intra-NAc shell clozapine N-oxide or aCSF to activate IL terminals. DS+ alone and DS+/CS+ combined triggered greater cocaine seeking than did the CS+. Activation of IL[->]NAc shell projections suppressed relapse behaviour in DS+ and DS+/CS+ conditions. These findings highlight the distinct and powerful influence of DSs on relapse and identify the IL[->]NAc shell circuit as a promising target for relapse prevention.

neuroscience↗

Triggered Temptations: A New Procedure to Compare Reward-Seeking Behaviour Induced by Discriminative and Conditioned Stimuli in Rats

RationaleEnvironmental cues guide animals towards resources vital for survival but can also drive maladaptive reward-seeking behaviours, as in gambling and eating disorders. While conditioned stimuli (CSs) are paired with reward delivery after reward-seeking actions, discriminative stimuli (DSs) signal reward availability independent of behaviour. ObjectiveWe introduce a procedure to compare CS and DS effects on reward-seeking behaviour, in the same subjects within a single session. MethodsFemale and male Sprague-Dawley rats learned to self-administer sucrose. During each session, DS+ trials signaled that lever pressing would produce sucrose paired with a CS+, and DS-trials signaled no sucrose and a CS-. Next, in the absence of sucrose, we assessed the ability of the cues to i) reinforce lever pressing and ii) increase sucrose seeking when presented response-independently. We also assessed the effects of the mGlu2/3 receptor agonist LY379268 and d-amphetamine on cue-induced sucrose seeking. ResultsBy the end of self-administration training, lever pressing peaked during DS+ trials and dropped during DS-trials. The DS+ was a conditioned reinforcer of sucrose seeking in both sexes, whereas the CS+ was more effective in males. Response-independent presentations of the DS+ invigorated sucrose seeking in both sexes, whereas the CS+ was effective only in males. LY379268 suppressed DS+-triggered sucrose seeking in females, with no effect in males. D-amphetamine enhanced sucrose seeking non-specifically across cue conditions in males, with no effect in females. ConclusionsOur new trial-based procedure can be used to identify unique and similar mechanisms underlying DS and CS influences on appetitive behaviour.

neuroscience↗