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Multiphysics, Abaqus), CAD software (Solidworks, AutoCAD), Visual C++, LabVIEW, Pythons, EEG, and eye-tracking systems Demonstrated expertise in the area of design, methods, modelling, and optimization
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project team members. Key Responsibilities: Design and conduct experiments on neuropersonalised training using EEG and non-invasive brain stimulation methods Develop and update training manuals and
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. The department is extremely well-equipped for research, including excellent facilities for developmental science research, eye-tracking, virtual reality, EEG/ERP and biophysiological recording. The department
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brain stimulation (phase-locked TI electric fields and audio), electroencephalography (EEG), and cognitive paradigms during wakefulness and sleep. The successful applicant will also work alongside other
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brain stimulation (phase-locked TI electric fields and audio), electroencephalography (EEG), and cognitive paradigms during wakefulness and sleep. The successful applicant will also work alongside other
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for administering non-invasive brain stimulation (phase-locked TI electric fields and audio), electroencephalography (EEG), and cognitive paradigms during wakefulness and sleep. The successful applicant
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functional MRI (fMRI), electroencephalography (EEG), and neuromodulation with low-intensity focused ultrasound (LIFU); computational analysis of fMRI and EEG data; development of new research methodologies
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Alzheimer’s disease to the study and for administering non-invasive brain stimulation (phase-locked TI electric fields and audio), electroencephalography (EEG), and cognitive paradigms during wakefulness and
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designs for data collection in a study that involves the use of non-invasive spinal cord stimulation, electroencephalography (EEG), laser-evoked potentials (LEPS) and other physiological monitoring
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. The successful candidate will work under the supervision of Professor Jonathan Brennan. The position will involve working with electroencephalography (EEG) data from bilingual speakers of English, Mandarin, and