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CityUHK neuroscientist crack code on brain multitasking, uncovering neural mechanisms behind cognitive bottlenecks

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CityUHK neuroscientist crack code on brain multitasking, uncovering neural mechanisms behind cognitive bottlenecks
Business

Business

CityUHK neuroscientist crack code on brain multitasking, uncovering neural mechanisms behind cognitive bottlenecks

2026-09-03 15:12 Last Updated At:15:35

HONG KONG, Sept. 3, 2026 /PRNewswire/ -- It is commonly perceived that multitasking is highly inefficient, with the brain often "crashing" or scrambling when trying to do two things at once. A study co-led by Professor Yung Wing-ho, Chair Professor in the Department of Neuroscience at City University of Hong Kong (CityUHK), together with scholars from The Chinese University of Hong Kong, has explained the underlying cause, revealing how the brain dynamically reorganises itself to break through the cognitive bottleneck and achieve efficient, simultaneous multitasking.

The study confirms at the cellular level the brain's remarkable ability to adapt and optimise its neural resources, overturning the public's understanding of its parallel processing capacity and providing insights into the neural mechanisms that allow humans to balance flexibility and specialisation in daily life. The findings were published in the leading neuroscience journal Neuron, under the title "Dynamic coordination and segregation mechanisms in higher cortex for parallel task processing".

To investigate how the brain handles two tasks at the same time, the research team utilised an innovative mouse model to observe the brain's secondary motor cortex (M2) during dual-task performance. Mice had to maintain a continuous lever movement task while listening to different auditory cues and deciding whether to respond, a sensory decision-making task known as a "Go/No-Go" test. Using longitudinal two-photon calcium imaging, the researchers tracked the activity of the same individual neurons within a large neuronal population in M2 over several weeks of training, allowing them to observe how neural activity was reorganised as the animals learned to multitask.

The study showed that multitasking interference can be traced at the level of individual neurons. Neurons involved in both tasks became hotspots of competition, providing a cellular basis for the brain's limited capacity to process competing demands. The competition, however, was not confined to neurons shared by both tasks. Even neurons mainly responsible for one task adjusted their activity when the other task was being processed, helping the brain coordinate the two competing demands and achieve early multitasking success.

With continued training, the brain adopted a different strategy. More task-specific neurons were recruited, while the neural representations of the two tasks became progressively separated, allowing the tasks to progress more independently with less interference and boosting overall multitasking performance.

The team further showed that M2 plays a causal role in this learning process. When M2 activity was moderately suppressed during training, the animals failed to improve with practice. Once the suppression was removed, their multitasking performance rapidly improved.

In addition to biological observations, the research team ran simulations using recurrent neural networks. They found that simply separating the representations of the two tasks was not the most effective solution; learning was faster when early coordination was preserved while other task representations became progressively separate. This finding coincides with the strategy observed in the biological brain and offers significant implications for the development of artificial intelligence.

Professor Yung said, "Our findings suggest that efficient multitasking requires a delicate balance between coordination and specialisation. These principles may provide a framework for understanding multitasking deficits in neurological disorders and, importantly, offer a biologically inspired strategy for designing artificial intelligence systems that can learn and manage multiple competing tasks more efficiently."

Understanding these dynamic brain processes opens new avenues for enhancing cognitive function and human potential. Moving forward, the team will leverage these insights to optimise learning strategies in education, develop more effective rehabilitation programmes for neurological conditions and continue to explore potential applications in other fields.

 

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CityUHK neuroscientist crack code on brain multitasking, uncovering neural mechanisms behind cognitive bottlenecks

CityUHK neuroscientist crack code on brain multitasking, uncovering neural mechanisms behind cognitive bottlenecks

Aurra Markets wins the 'Most Transparent Broker' award at Money Expo Mumbai 2026. Read about our MT5 infrastructure and Aurra Wallet.

MUMBAI, India, Sept. 3, 2026 /PRNewswire/ -- Aurra Markets Wins 'Most Transparent Broker' Award at Money Expo Mumbai

Aurra Markets, a multi-asset CFD broker, received the 'Most Transparent Broker' award at Money Expo Mumbai 2026. Participating as a Diamond Sponsor at the Jio World Convention Centre, the brokerage presented its institutional-grade trading infrastructure and partnership models to the Indian financial community.

Direct Market Access and Tier-1 Liquidity

Receiving this award reflects the company's focus on maintaining secure trading conditions. In active financial markets, reliability is a primary requirement for retail and institutional traders. By integrating direct Tier-1 liquidity and holding fully segregated client funds, Aurra Markets provides a stable environment for trading forex, precious metals, and indices. The team demonstrated its MetaTrader 5 (MT5) framework at Booth 33, highlighting the 12ms execution speed that supports algorithmic and day traders.

Efficient Funding via the Aurra Wallet

The exhibition also served as a platform to detail the company's advanced funding infrastructure. Clients can manage their capital using the Aurra Wallet. This unified system bridges fiat and digital assets, allowing traders to handle deposits and withdrawals efficiently. Integrating this technology reduces banking delays and provides rapid market access.

Expanding Operations in the Indian Market

"We are honored to receive the Most Transparent Broker award in Mumbai," a senior spokesperson for Aurra Markets stated. "This recognition validates our infrastructural investments designed to lower trading costs and maintain security. Engaging with affiliates and traders in India confirms the demand for high-performance trading solutions. We provide market participants with the stability needed to trade macroeconomic shifts."

About Aurra Markets

Aurra Global Markets Limited is authorized and regulated by the Mauritius Financial Services Commission (FSC) under License No. GB25204837. Aurra Markets provides a global community of traders with the direct infrastructure and technical resources needed to operate in dynamic financial markets. For more information, visit www.aurra.markets.

** This press release is distributed by PR Newswire through automated distribution system, for which the client assumes full responsibility. **

Aurra Markets Receives 'Most Transparent Broker' Award in Mumbai

Aurra Markets Receives 'Most Transparent Broker' Award in Mumbai

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