H2020Individual fellowship2016–2018

DRIVOME · Multi-modal interrogation of instinctive behaviours and intrahypothalamic connectivity

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2016-03-01 → 2018-02-28
EU contribution
€183,455
Participants
1
Scheme
MSCA-IF-EF-RI

Lines connect the coordinator with its partners.

Results in brief

Multi-modal interrogation of instinctive behaviours and intrahypothalamic connectivity

Experiments dating back to the 1920's demonstrated that manipulating a deep brain structure called the hypothalamus can dramatically affect basic mammalian instincts like hunger and aggression. Building on these findings with improved tools, recent work has uncovered hypothalamic neuronal populations that can drive fundamental mammalian behaviours: feeding, sex and aggression, sleep/wakefulness and parental behaviours. These neuronal cell types are located very close to each other and are likely to interact in a specific manner giving rise to organized behavioural outputs (e.g., coordinated wakefulness and sexual drive). Classical work in ethology has outlined hypotheses for e.g., how reciprocal inhibition between neuronal populations generating opposing behaviours may guide the organization of fundamental mammalian behaviours into the coherent, adaptive, context-relevant displays evident throughout the animal kingdom. Modern techniques including opsins, genetically encoded calcium indicators (GECIs), transgenic mice, and multi-photon imaging of deep brain structures, are now ripe for comprehensive cell-type specific probing of the hypothalamic networks in charge of fundamental drives and possibly emotions. Despite the above mentioned advances, major fundamental questions about neuronal communication in hypothalamus are still open while the microcircuitry in the neocortex has been studied for over a century. Given my background in studying neurons in the neocortex and hypothalamus, we employed a comparative approach considering the differences between these two brain structures as an entry point to this project. Since the hypothalamus contains intermingled neurons that directly control various (and some of them mutually exclusive) behaviours, connectivity between neighboring cells could be highly specific, e.g., involving reciprocal inhibition between cell types promoting exclusive behaviours. This can be assayed by patch clamp in multiple transgenic slices where we can utilize the genetic handles on these cell types.

Data: CORDIS, © European Union

Project objective

Mammalian behaviour is driven by instincts such as hunger, sex and aggression which are familiar to everyone from daily experience. Anomalies in these instincts cause disorders such as anorexia, excessive sexual drive and episodic dyscontrol syndrome, and potentially also psychologically difficult situations like marital infidelity. Neuronal circuits that drive these instincts reside in the hypothalamus where research is gaining pace rapidly.Recent work has uncovered hypothalamic neuronal populations in mouse, that can drive the following fundamental mammalian behaviours: feeding (Aponte et al., 2011, Betley et al., 2015), sex/aggression (Lee et al., 2014, Lin et al., 2011), sleep/wakefulness (Adamantidis et al., 2007, Jego et al., 2013) and parental behaviours (Marlin et al., 2015, Wu et al., 2014). Older work has demonstrated similar effects with cruder manipulations of the hypothalamus in several species. Classical work in ethology (Lorenz, 1981, Tinbergen, 1951) as well as newer anatomical insights (Swanson, 2000) have outlined hypotheses for how neuronal network architecture may guide the organization of instinctive behaviours into the coherent, adaptive, context-relevant displays evident throughout the animal kingdom. Modern techniques (opsins, genetically encoded calcium indicators, transgenic mice, multi photon imaging of deep brain structures and optrode recording) are now ripe for comprehensive cell-type specific probing of the hypothalamic networks in charge of fundamental drives and possibly emotions. We propose to use these methods to elucidate the intrahypothalamic wiring diagram (the connectome of drives, or 'DRIVOME') that can explain how instincts are orchestrated.

Original text from CORDIS.

Participants

Links

Data: CORDIS, © European Union