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      Spatiotemporal signal space separation method for rejecting nearby interference in MEG measurements.

      1 ,
      Physics in medicine and biology
      IOP Publishing

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          Abstract

          Limitations of traditional magnetoencephalography (MEG) exclude some important patient groups from MEG examinations, such as epilepsy patients with a vagus nerve stimulator, patients with magnetic particles on the head or having magnetic dental materials that cause severe movement-related artefact signals. Conventional interference rejection methods are not able to remove the artefacts originating this close to the MEG sensor array. For example, the reference array method is unable to suppress interference generated by sources closer to the sensors than the reference array, about 20-40 cm. The spatiotemporal signal space separation method proposed in this paper recognizes and removes both external interference and the artefacts produced by these nearby sources, even on the scalp. First, the basic separation into brain-related and external interference signals is accomplished with signal space separation based on sensor geometry and Maxwell's equations only. After this, the artefacts from nearby sources are extracted by a simple statistical analysis in the time domain, and projected out. Practical examples with artificial current dipoles and interference sources as well as data from real patients demonstrate that the method removes the artefacts without altering the field patterns of the brain signals.

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          Author and article information

          Journal
          Phys Med Biol
          Physics in medicine and biology
          IOP Publishing
          0031-9155
          0031-9155
          Apr 07 2006
          : 51
          : 7
          Affiliations
          [1 ] Elekta Neuromag Oy, Helsinki, Finland. Samu.Taulu@elekta.com
          Article
          S0031-9155(06)09790-9
          10.1088/0031-9155/51/7/008
          16552102
          929abb21-70dc-4fbd-87ff-2ab3ef24316a
          History

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