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Metal Print : Brain tumour, fMRI and tractography C017 / 7102

Brain tumour, fMRI and tractography C017  /  7102



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Brain tumour, fMRI and tractography C017 / 7102

Brain tumour, fMRI and tractography. Combined functional magnetic resonance imaging (fMRI, blue and green) and tractography (yellow and red) imaging of a brain with a tumour (upper left). The front of the brain is at right. The tumour (solid red) has been imaged using tractography, also known as 3D diffusion tensor imaging (DTI) magnetic resonance imaging (MRI). It shows the nerve pathways (red and yellow) affected by the tumour. Brain tumours can be benign or malignant (cancerous). They can cause seizures, headaches, and memory and personality changes. Hot spots on the fMRI areas are activated functional areas

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 9341939

© SHERBROOKE CONNECTIVITY IMAGING LAB/SCIENCE PHOTO LIBRARY

Brain Imaging Brain Scan Cancer Cancerous Central Nervous System Cerebral Diffusion Tensor Imaging Dti Scan Fiber Fibers Fibre Fibres Imaging Technique Magnetic Resonance Imaging Malignancy Malignant Mri Scan Mri Scanner Nerve Nerve Fibre Nerves Neural Pathway Neural Tract Neuropathology Oncology Paths Pathway Pathways Structural Tractogram Tractography Tumor Tumour Brain Condition Disorder Neurological Neurology


20"x16" (51x41cm) Metal Print

Discover the depths of the human brain with Media Storehouse's Metal Prints featuring the captivating image "Brain tumour, fMRI and tractography C017 / 7102" by SHERBROOKE CONNECTIVITY IMAGING LAB/SCIENCE PHOTO LIBRARY. This striking image showcases a brain scan combining functional magnetic resonance imaging (fMRI) in blue and green, and tractography in yellow and red. Witness the intricate details of the brain's neural connections, highlighted against the contrast of the tumour. Our high-quality Metal Prints bring this scientific masterpiece to life, making it a unique and thought-provoking addition to any space.

Your image is printed photographically and bonded to a 3.5mm thick, Dibond board (black polyethylene sandwiched between two sheets of white coated aluminium). The panel is then sealed with a gloss protective covering. Supplied complete with a wall mount which holds the print 10mm from the wall.

Made with durable metal and luxurious printing techniques, metal prints bring images to life and add a modern touch to any space

Estimated Product Size is 50.8cm x 40.6cm (20" x 16")

These are individually made so all sizes are approximate

Artwork printed orientated as per the preview above, with landscape (horizontal) or portrait (vertical) orientation to match the source image.


EDITORS COMMENTS
This print showcases the intricate details of a brain affected by a tumour, using advanced imaging techniques. The combination of functional magnetic resonance imaging (fMRI) and tractography provides a comprehensive view of the brain's structure and disease progression. Against a striking black background, the image reveals the front of the brain on the right side, with a solid red mass representing the tumour in the upper left. Tractography, also known as 3D diffusion tensor imaging (DTI), has been employed to visualize nerve pathways within the brain. These pathways are depicted in vibrant yellow and red hues, illustrating how they are impacted by this malignant growth. Brain tumours can be either benign or cancerous and often lead to various symptoms such as seizures, headaches, memory loss, and personality changes. The fMRI component of this image highlights activated functional areas through hot spots indicated by blue and green colors. This technique helps researchers understand which regions of the brain are involved during specific tasks or cognitive processes. Presented by Sherbrooke Connectivity Imaging Lab/Science Photo Library, this visually stunning photograph not only serves as an educational tool for medical professionals but also sparks curiosity about neurology and oncology among viewers. It exemplifies how cutting-edge imaging technologies contribute to our understanding of complex neurological conditions like brain tumours while emphasizing their impact on human health.

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