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adaptive mixture independent component analysis (amica)  (InfoMax Inc)

 
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    Structured Review

    InfoMax Inc adaptive mixture independent component analysis (amica)
    (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by <t>AMICA</t> decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.
    Adaptive Mixture Independent Component Analysis (Amica), supplied by InfoMax Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/adaptive+mixture+independent+component+analysis+%28amica%29/pmc06698582-199-17-34?v=InfoMax+Inc
    Average 90 stars, based on 1 article reviews
    adaptive mixture independent component analysis (amica) - by Bioz Stars, 2026-08
    90/100 stars

    Images

    1) Product Images from "Unidirectional brain to muscle connectivity reveals motor cortex control of leg muscles during stereotyped walking"

    Article Title: Unidirectional brain to muscle connectivity reveals motor cortex control of leg muscles during stereotyped walking

    Journal: NeuroImage

    doi: 10.1016/j.neuroimage.2017.07.013

    (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by AMICA decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.
    Figure Legend Snippet: (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by AMICA decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.

    Techniques Used: Activity Assay



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    InfoMax Inc adaptive mixture independent component analysis (amica)
    (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by <t>AMICA</t> decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.
    Adaptive Mixture Independent Component Analysis (Amica), supplied by InfoMax Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/adaptive+mixture+independent+component+analysis+%28amica%29/pmc06698582-199-17-34?v=InfoMax+Inc
    Average 90 stars, based on 1 article reviews
    adaptive mixture independent component analysis (amica) - by Bioz Stars, 2026-08
    90/100 stars
      Buy from Supplier

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    (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by AMICA decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.

    Journal: NeuroImage

    Article Title: Unidirectional brain to muscle connectivity reveals motor cortex control of leg muscles during stereotyped walking

    doi: 10.1016/j.neuroimage.2017.07.013

    Figure Lengend Snippet: (A) (Left) Smoothed probability of three Adaptive Mixture ICA Models found by AMICA decomposition of concatenated data during the walk and rest conditions for one subject. Models 1 and 3 are active respectively during the walk and rest conditions. (B) (Right) Model Activity Rate (MAR) of the three models during resting and during walking. (C) (Bottom) Three representative components only present in Model 1 (walking), and a component only in Model 3 (resting). This representation demonstrates stationarity of resting and walking phases and the necessity of two separate models to explain the data.

    Article Snippet: Finally the hypothesis of data stationarity underlining the whole analysis hitherto described was demonstrated by means of multiple-model Adaptive Mixture Independent Component Analysis (AMICA) , which can be viewed as a generalization of the Infomax algorithm ( ) supporting a multiple mixture approach ( ).

    Techniques: Activity Assay