
neuroimaging
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Neuroimaging is the use of quantitative (computational) techniques to study the structure and function of the central nervous system, developed as an objective way of scientifically studying the healthy human brain in a non-invasive manner. Increasingly it is also being used for quantitative research studies of brain disease and psychiatric illness. Neuroimaging is highly multidisciplinary involving neuroscience, computer science, psychology and statistics, and is not a medical specialty.
Key facts
- Diagnostic.name
- Neuroimaging
- Diagnostic.image
- Image:Parasagittal MRI of human head in patient with benign familial macrocephaly prior to brain injury (ANIMATED).gif
- Diagnostic.caption
- Para-sagittal MRI of the head in a patient with benign familial macrocephaly
- Diagnostic.purpose
- Indirectly (directly) image structure, function/pharmacology of the nervous system
via Wikipedia infobox
Research
329,533 papers- A practical guide to linking brain-wide gene expression and neuroimaging data.NeuroImage · 2019
- Challenges in pediatric neuroimaging.NeuroImage · 2019
- Neuroimaging and global health.NeuroImage · 2022
- Network analysis of neuroimaging in mice.NeuroImage · 2022
- Neuroimaging in Cerebellar Ataxias: A Diagnostic Approach.Cerebellum (London, England) · 2025
via PubMed
Wikidata facts
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- Commons category
- Neuroimaging
Sources (3)
via Wikidata · CC0
~25 min read
Article
21 sectionsContents
- History
- Indications
- Brain-imaging techniques
- Computed tomography of the head
- Magnetic resonance imaging
- Positron emission tomography
- Single-photon emission computed tomography
- Cranial ultrasound
- Functional magnetic resonance imaging
- Diffuse optical imaging
- Event-related optical signal
- Magnetoencephalography
- Functional ultrasound imaging
- Advantages and concerns of neuroimaging techniques
- Functional Magnetic Resonance Imaging (fMRI)
- Computed Tomography (CT) scan
- Positron Emission Tomography (PET)
- Magnetoencephalography (MEG) and Electroencephalography (EEG)
- See also
- References
- External links
Neuroimaging is the use of quantitative (computational) techniques to study the structure and function of the central nervous system, developed as an objective way of scientifically studying the healthy human brain in a non-invasive manner. Increasingly it is also being used for quantitative research studies of brain disease and psychiatric illness. Neuroimaging is highly multidisciplinary involving neuroscience, computer science, psychology and statistics, and is not a medical specialty.
Neuroimaging is sometimes confused with neuroradiology. Neuroradiology is a medical specialty that uses non-statistical brain imaging in a clinical setting, practiced by radiologists who are medical practitioners. Neuroradiology primarily focuses on recognizing brain lesions, such as vascular diseases, strokes, tumors, and inflammatory diseases. In contrast to neuroimaging, neuroradiology is qualitative (based on subjective impressions and extensive clinical training) but sometimes uses basic quantitative methods. Functional brain imaging techniques, such as functional magnetic resonance imaging (fMRI), are common in neuroimaging but rarely used in neuroradiology.