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Centre for Neurotechnology navigation

  • About the Centre
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      • Three-photon microscope facility
      • TissueCyte1000 serial two photon tomography platform
      • Noninvasive Human Brain Signal Recording and Stimulation Facilities
        • 8-channel wireless EMG system
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        • MRI-compatible EEG system
        • Multi-channel functional near-IR spectroscopy
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    • EPSRC Centre for Doctoral Training in Neurotechnology
      • Research themes
      • Projects
        • 3D Ultrasound Computed Tomography of the Brain
        • 3D-resolved optogenetic excitation using time-averaged speckle patterns
        • A clinically-viable brain-computer interface for inducing neuroplasticity for stroke rehabilitation
        • Automated Neonatal EEG Early Warning System based on novel signal analysis tools in the field and/or novel features
        • AutoTRIAGE: a clinical, computational and biomechanical investigation of the feasibility of using vehicular event data recorders for assessing head trauma severity in collisions
        • Axo-glial pathology in Multiple Sclerosis and its potential effects on neurotransmission
        • Biologically inspired computation for real-time motor control
        • Characterising receptive fields of astrocytes in auditory cortex
        • Closed-loop, personalized brain stimulation intervention for impairment of cognitive control
        • Computational technology towards future therapies for itchness via neuro-skin interactions
        • Conductive polymer platforms for the integrated in vitro investigation of neural networks
        • Designing novel imaging probes for targeting inflammatory lesions in brain disorders
        • Developing a novel type of neurostimulation to aid speech processing and rehabilitation from aphasia
        • Developing technology to enable macroscopic imaging of neuronal connectivity to quantify changes during health and disease
        • Development of a diagnostic battery for probing individual differences in network function
        • Development of a noninvasive and localised blood-brain barrier opening system for the treatment of Alzheimer’s Disease
        • Development of non-invasive deep brain stimulation technology
        • EEG assessment of spoken language processing in aphasia
        • Engineering fast, flexible, precise and parallel light sculpting for neural circuit elucidation
        • Engineering tactile signals to aid hearing in noisy background
        • Experimental and computational study of auditory receptive field properties and connectivity
        • High resolution imaging of multimodal nanoparticles for treatment of brain cancers
        • High-resolution mapping of age-related functional changes in cortical connectivity
        • High-throughput Visualization and Computational Consequences of Increased Synaptic Plasticity and Axon Regeneration in the Living Aged Brain
        • Improved methods for functional neuronal imaging with genetically encoded voltage indicators
        • Information theoretic analysis tools for studying the cellular assembly of memory
        • Integrated sensor suite to investigate neurological dysfunction in balance
        • Investigating Sports Related Concussion with a Wearable In-Ear System for Continuous Monitoring of Brain and Body Functions
        • Large scale population functional connectomic parcellation and individual variation
        • Large-Area Flexible Plastic Electronic Sensor for 2D Neural Recording
        • Learning to hear with plasticity across multiple timescales
        • Lesion-symptom mapping using motion-tracking: How neural trauma impacts motor function
        • Machine learning and human adaptability: towards a hierarchical model of executive cognition and brain function
        • Mathematical and computational analyses of plastic spiking recurrent networks
        • Measuring brain and body biological age to predict health outcomes and disease risk during ageing
        • Microdevices to investigate sleep and temperature regulation in mice
        • Monitoring muscle fatigue using novel wireless sensors
        • Neural implants for brain-robot interface
        • Neural network mechanisms of inhibitory and attentional control
        • Neurochemical CMOS array – bedside assay of ionic and inflammatory marker from the human brain
        • Neuronal Interfacing System for Human Pluripotent Stem Cell Interrogations using Materials-based Nanotechnologies
        • One-probe - a new device for non-penetrative monitoring of the injured brain
        • Peripheral nerve decoding algorithms for bioelectronic medicines
        • ReBooT: Restoring Brain Operation with Technology; Microelectronics to enable an open source instrument for exploring closed loop neural systems
        • Robot-assisted fMRI investigation of learning in newborn infants
        • Role of copper ions in the toxicity of α-synuclein in Parkinson’s disease
        • Sensory Motor Interface for Lower Extremity Robots (SMILER)
        • Spinal motor neurons control of redundant robotic system
        • Surface Electromyography for Brain-Machine Interface Applications
        • The bionic spinal cord bridge: Combined therapies for neural regeneration
        • Towards whole brain functional imaging in freely moving subjects
        • Ultrasound technology to deliver novel theranostic agents to malignant brain tumours
        • Virtual physiotherapy for assessment and training of arm function
        • Wearable Force-Feedback Interface supporting in vivo Brain-Robot Interface
        • Wearable wireless sensor arrays to detect the progression of amyotrophic lateral sclerosis (ALS)
        • Whole-brain dynamics and higher cognitive processing in disorders of consciousness
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Centre for Neurotechnology

Collaborative research at the interface of neuroscience and engineering

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Illustration of synapses firing near sensors

Neural implants stimulating cells in the brain. Image courtesy of Tim Constandinou and the CANDO project - click above to find out about CANDO's work.

The Centre for Neurotechnology fosters collaborative research at the interface between neuroscience and engineering

Hands adjusting a wire attached to electrodes on a man's forehead

Novel non-invasive brain stimulation techniques are being developed to treat a range of brain disorders.

A student demonstrates a brain-controlled computer game to a visitor to the Imperial Festival

A student from the CDT Neurotechnology demonstrates their brain controlled exhibit at the Imperial Festival

test subject using lab equipment to test hand grip

Researchers in the Human Robotics lab testing equipment for rehabilitation of neurological movement disorders

Martyn Boutelle holds a brain with a sensor attached

Biomedical sensors can measure response to stimulation or trauma in the brain

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About us

Learn about the Centre, our research and facilities.

Industry engagement and spinouts

Find out about our links to industry, and some of the successful spinouts and startups that our members have been involved with.

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Student training

Discover the MRes Neurotechnology, and find out how Centre for Doctoral Training in Neurotechnology for Life and Health trained a new generation of students to work at the interface between neuroscience and engineering.

News

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Bioengineering makes robotic limbs feel natural

13 February 2025

04 February 2025

Inspiration turns into application for Imperial’s neural implant research

20 January 2025

Imperial receives £15m ARIA funding for breakthrough brain research

19 October 2023

Surgery-free brain stimulation could provide new treatment for dementia

28 March 2023

Sports related brain injuries reveal the mechanics of loss of consciousness

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