Active Brain & Nervous System Psychology & Behaviour

PROFUSE: Fusing brain and computational mechanisms of prosocial behaviour across health, development and disorder

In plain English

AI plain-English summary

A child who shares a toy and an adult who donates to charity rely on the same brain mechanisms, but scientists do not yet understand how these processes develop or break down. ProFuse will combine wearable brain scanners, machine learning, and magnetic stimulation to map exactly where and when the brain computes decisions to help others, from childhood through adolescence to adulthood. Current research on prosocial behaviour is fragmented: one group studies brain location, another studies timing, another studies development. ProFuse fuses these approaches by mathematically combining data from a new wearable brain-imaging technology (OPM-MEG) with fMRI, then disrupting specific prefrontal cortex regions with transcranial magnetic stimulation to test whether those computations are necessary for helping behaviour. If successful, this fundamental science will produce the first integrated account of how prosocial decision-making develops across childhood. While the research has no immediate practical application, understanding the computational mechanisms of helping behaviour could eventually inform strategies to encourage cooperation in schools, communities, or public health campaigns—much as basic research into memory systems later informed educational practices.

View original technical description
Prosocial behaviours - decisions that help others - are fundamental for societal and individual well-being. From climate change to ageing populations, current and future generations face great challenges that require individuals to make significant personal sacrifices to help others and maintain social cohesion. It is therefore crucial to understand the mechanisms that underlie prosocial behaviour, their (a)typical development - from childhood to adolescence - and how they are implemented in the brain. Yet, current knowledge is fractured. Separate lines of work have examined where in the brain prosocial behaviour is processed (fMRI), when in time such processing occurs (MEG or EEG), how prosocial behaviours develop, or the computations. Now is the time to leverage innovative computational tools, end the fissures between approaches, fuse methods together, and unify their benefits. ProFuse will combine big-data samples, machine learning, beyond-state-of-the-art brain imaging, repetitive brain stimulation and computational methods with innovative experiments that tap fundamental features of prosocial behaviours. Using the latest representational similarity multivariate techniques, this work will mathematically 'fuse' data from a pioneering wearable form of brain imaging - optically pumped magnetometer (OPM)-magnetoencephalography (MEG) - with functional magnetic resonance imaging (fMRI) data, to test where, when and how prosocial computations are processed neurally. Using repetitive brain stimulation (TMS) these computations will be disrupted at the exact place they occur in prefrontal cortex. Finally, ProFuse will use OPM-MEG fMRI fusion - precisely suited for developmental neuroimaging - to uncover computational mechanisms of prosocial behaviour during the sensitive period from childhood to adolescence, and compared to adulthood. Ultimately, ProFuse will provide a revolutionary integrated account of prosocial behaviour spanning childhood to adulthood and enlighten strategies to increase prosocial behaviours.

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Researchers

Patricia Lockwood (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Neurocomputational mechanisms of prosocial behaviour in health, development and disorder
Prosocial development across childhood: Towards a comprehensive mechanistic framework
fMRI-compatible TMS stimulation equipment for concurrent brain stimulation and measurement
BrainSight: Imaging of neural codes over the lifecourse
High-resolution multimodal imaging for multisensory interactions

Original classification

Research Grant

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