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Corticospinal tract, DTI MRI scan C017 / 7046

Corticospinal tract, DTI MRI scan C017  /  7046


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Corticospinal tract, DTI MRI scan C017 / 7046

Corticospinal tract. Sagittal 3D diffusion tensor imaging (DTI) magnetic resonance imaging (MRI) scan of nerve pathways (blue) in the brains corticospinal tract. The corticospinal tract conducts nerve impulses to and from from the brains motor cortex and the spinal cord. It is the main motor network fibre bundle. Diffusion tensor imaging measures the direction of water diffusion, which in the brain reveals the orientation of nerve fibres. The technique is also known as tractography, with the resulting image known as a tractogram

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

Media ID 9341413

© SHERBROOKE CONNECTIVITY IMAGING LAB/SCIENCE PHOTO LIBRARY

Brain Imaging Brain Scan Central Nervous System Cerebral Diffusion Tensor Imaging Dti Scan Fiber Fibers Fibre Fibres Imaging Technique Magnetic Resonance Imaging Motor Cortex Pathway Mri Scan Mri Scanner Nerve Nerve Fibre Nerves Neural Pathway Neural Tract Paths Pathway Pathways Structural Tractogram Tractography Brain Neurological Neurology


EDITORS COMMENTS
This print showcases the intricate beauty of the corticospinal tract, a vital pathway in the human brain. The image, captured using advanced diffusion tensor imaging (DTI) magnetic resonance imaging (MRI), reveals the complex network of nerve fibers that make up this crucial motor pathway. In vibrant shades of blue against a striking black background, the photograph highlights the anatomical structure and functional significance of this neural tract. The corticospinal tract serves as a conduit for nerve impulses traveling between the motor cortex and spinal cord, enabling voluntary movement throughout our body. The technique employed to create this stunning image is known as tractography, which utilizes water diffusion patterns to map out and visualize nerve fiber orientation within the brain. This innovative imaging technique provides valuable insights into neurological function and aids medical professionals in diagnosing various conditions affecting these pathways. With its emphasis on biology, medicine, and neurology, this print represents both scientific excellence and aesthetic appeal. It offers viewers an opportunity to marvel at the intricacies of our central nervous system while appreciating the wonders of modern medical technology. Captured by Sherbrooke Connectivity Imaging Lab/Science Photo Library, this visually striking artwork serves as a reminder of how far we have come in understanding and exploring our own brains – unlocking secrets that continue to shape advancements in neuroscience research and clinical practice.

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