Difference between revisions of "Dynamap"

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それで次に向ったのが『和創ダイニング やおまん』入口前の画像を撮るのを忘れました。    ・今後の講演項目例として以下のようなことを考えています。[http://windows81.bzyjnqdj.com windows 8.1 価格<br>
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'''Dynamical Brain Mapping team'''
土曜日に部品を購入し組み立てようと思ったのですが、一つ問題が発生。 スコアは無くす方向??それとも今、見れないだけ?PCを買い換える時のいい指標だったのに・・・。[http://windows81.bzyjnqdj.com windows 8.1 プロダクトキ�<br>
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ウチのは天然温泉に入れたのが嬉しかったらしく、「また行きたい」とか言っていましたが…もうイイっちゅ-のんで翌週、Birthdayツーリングで1泊という話もあったのですが、色々と物入りでもあったし日帰りで伊豆ツーリングに。 スマートフォン(多機能携帯電話)やタブレット型多機能携帯端末への対応が遅れ、昨年10月に発売したばかりの「ウィンドウズ8」の刷新に追い込まれた。[http://windows81.bzyjnqdj.com windows 8.1 プロダクトキー]
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The general objective of the Dynamap team is to develop signal processing strategies for characterizing the spatio-temporal dynamics of brain networks, for both physiological and pathological activity.
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With this in view, the first strategy of the team is to combine the strength of different modalities such as EEG, MEG, fMRI, with particular emphasis on simultaneous recordings (EEG-MEG, EEG-fMRI) that allow recording the exact same activity under different points of view. The second strategy is to take the opportunity of intracerebral recordings performed in patients with epilepsy for providing a ‘ground truth’ to which non-invasive methods can be confronted.In basic neuroscience, one application of our work is to provide methodological advances for the users of the MEG platform. In clinics, our tools are intended to improve delineation of the epileptogenic zone for presurgical planning of patients with epilepsy. A particular effort is made towards translation of our work to clinicians and researchers through the multi-platform [[Anywave]] software, which architecture specifically aims at allowing fast implementation of algorithms to the end users.
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'''Publications'''
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List on Pubmed: [[https://www.ncbi.nlm.nih.gov/pubmed/?term=Bartolomei+F%5BAuthor%5D+OR+Giusiano+B%5BAuthor%5D+OR+Benar+C%5BAuthor%5D+OR+Badier+JM%5BAuthor%5D]]

Latest revision as of 14:03, 2 March 2020

Dynamical Brain Mapping team

The general objective of the Dynamap team is to develop signal processing strategies for characterizing the spatio-temporal dynamics of brain networks, for both physiological and pathological activity.

With this in view, the first strategy of the team is to combine the strength of different modalities such as EEG, MEG, fMRI, with particular emphasis on simultaneous recordings (EEG-MEG, EEG-fMRI) that allow recording the exact same activity under different points of view. The second strategy is to take the opportunity of intracerebral recordings performed in patients with epilepsy for providing a ‘ground truth’ to which non-invasive methods can be confronted.In basic neuroscience, one application of our work is to provide methodological advances for the users of the MEG platform. In clinics, our tools are intended to improve delineation of the epileptogenic zone for presurgical planning of patients with epilepsy. A particular effort is made towards translation of our work to clinicians and researchers through the multi-platform Anywave software, which architecture specifically aims at allowing fast implementation of algorithms to the end users.

Publications

List on Pubmed: [[1]]