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The tools used to measure and manipulate the nervous system: imaging, electrophysiology, connectomics, optogenetics, stimulation, and brain-computer interfaces.
Collect and analyze brain and behavior data with fNIRS neuroimaging, psycho-physiological sensors, and Tobii eye tracking, and judge each method's strengths and limits.
"Neurophotonics" is a cutting-edge interdisciplinary subject driven by the upsurge of "brain projects" in various countries around the world. However, there are currently few relevant monographs or co
Discover key updates on electroconvulsive therapy (ECT) and neurostimulation techniques in this comprehensive psychiatry grand rounds presentation by Dr. Irving Reti from Johns Hopkins.
Learn the principles behind neuroimaging: structural and functional human neuroanatomy, cognitive domains, image formation physics, fMRI, diffusion tensor imaging, spectroscopy, PET, and experimental design.
Learn neuroimaging from brain neuroanatomy through experimental design, functional connectivity MRI, diffusion tensor imaging and spectroscopy, then process structural MRI data with R packages.
以线性与非线性光学成像及光遗传学为核心,学习用光学技术观测和操控神经活动。
Process structural brain MRI in R: read and write NIfTI images, correct inhomogeneity, strip the skull, register scans, and segment white matter, gray matter and CSF.
Trace how light and sound become perception: eye anatomy and photoreceptors, visual pathways to the cortex, EEG, fMRI and TMS methods, and auditory processing from cochlea onward.
This course explores the latest data, models,and techniques for investigating the different levels of the brain. Find new insights and derive new theories.
Explore how the nervous system supports language, from first- and second-language learning to clinical speech, reading, and writing disorders.
Explorating brain science from a new insights, Advanced imaging techniques guide clinical practice.
Read EEG data in Python with an OpenBCI headset to explore brain-computer interface applications.
Comprehensive guide to diagnosing headaches, comparing tension and migraine types, and identifying red flags for neuroimaging. Includes clinical features and key takeaway points for effective patient care.
Explore normal and abnormal neonatal brain ultrasound images, comparing full-term and premature infants. Learn to identify various conditions through comprehensive case studies and visual examples.
Explore heart muscle cell types, action potentials, excitation-contraction coupling, and ECG interpretation in this comprehensive cardiac electrophysiology study.
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