Brain Mapping

Elekta is a leading company in neurology and neurosurgery. Elekta meets the highest demands of specialists in neurology and neurosurgery. Building on more than 50 years of experience in stereotaxy, Elekta continues to discover qualitatively new solutions for stereotactic treatment of brain pathologies. For this purpose, to track areas of activity in the brain, Elekta offers a magnetoencephalography (MEG) system, which is currently the most effective method for studying brain activity in real time. Compared to EEG, MEG technology has unique sensitivity. The clinical advantage of MEG as a tool that provides the highest efficiency in diagnosing epilepsy has been proven. This technology is also used for preoperative mapping of visual, auditory, somatosensory, and motor areas of the cerebral cortex. For real-time mapping of brain neuron activity, Elekta offers a unique magnetoencephalography (MEG) system - Elekta Neuromag®.
Elekta Neuromag® brain mapping is a magnetoencephalographic (MEG) system designed for high-precision 3D mapping of brain structures in real time (non-invasively). MEG technology is used for both clinical and research purposes. Presurgical mapping for neurosurgery, combined with MEG and MRI images, improves the accuracy of surgical navigation and radiotherapy planning. Many programs are aimed at applications in psychiatric diseases (schizophrenia, depression, dyslexia). One of the most important applications of Elekta Neuromag® in epilepsy treatment is the precise identification of the epileptic source and its location relative to other functionally important areas of the cerebral cortex. Technically, the Elekta Neuromag® system is one of the most complex and advanced MEG/EEG devices on the world market today. A 306-channel system with an optimal combination of planar gradiometers and magnetometers in orthogonal triplets.
MEG technology is used for both clinical and research purposes. The use of 306 magnetoencephalographic (MEG) and 64 electroencephalographic (EEG) channels provides highly accurate localization of functional areas of the cerebral cortex. The unique sensor design and use of advanced software allows obtaining data with unprecedented detail even from the deepest brain regions.