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32 channel multicontact linear array electrode  (NeuroNexus Technologies)


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    Structured Review

    NeuroNexus Technologies 32 channel multicontact linear array electrode
    32 Channel Multicontact Linear Array Electrode, supplied by NeuroNexus Technologies, used in various techniques. Bioz Stars score: 97/100, based on 2486 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/linear-array+multicontact+electrode/Silicon+Neural+Probe+%2F+Silicon+Microelectrode+Array/pm28802702-97-7-11
    Average 97 stars, based on 2486 article reviews
    32 channel multicontact linear array electrode - by Bioz Stars, 2026-09
    97/100 stars

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    Related Articles

    other:

    Article Title: Novel method of extracting motion from natural movies.
    Article Snippet: A micromanipulator was used to lower a 32-channel multicontact linear-array electrode (Neuronexus, Ann Arbor, Michigan, USA), which contained four shanks (400-μm shank separation).

    Article Title: Mirror Neurons in a New World Monkey, Common Marmoset.
    Article Snippet: A micromanipulator lowered a linear array 32-channel multicontact electrode (Neuronexus, Ann Arbor, MI, US) perpendicular to the cortical surface of the posterior and ventral parts of STS, where strong responses to others’ grasping action were commonly observed under our anesthetic condition.

    Article Title: Functional columns in superior temporal sulcus areas of the common marmoset
    Article Snippet: Cortical areas in the superior temporal sulcus (STS) of primates have been recognized as a part of the ‘social brain’.. In particular, biological motion stimuli elicit neuronal responses in the STS, indicating their roles in the ability to understand others’ actions.. However, the spatial organization of functionally identified STS cells is not well understood because it is difficult to identify the precise locations of cells in sulcal regions.

    Injection:

    Article Title: Mirror Neurons in a New World Monkey, Common Marmoset.
    Article Snippet: .. Two micromanipulators were used to lower linear array multicontact electrodes (Neuronexus, Ann Arbor, MI, US) vertically perpendicular to the cortical surface in the STS injection site and in the labeled spots in the lateral frontal cortex for the chronic experiment. ..

    Labeling:

    Article Title: Mirror Neurons in a New World Monkey, Common Marmoset.
    Article Snippet: .. Two micromanipulators were used to lower linear array multicontact electrodes (Neuronexus, Ann Arbor, MI, US) vertically perpendicular to the cortical surface in the STS injection site and in the labeled spots in the lateral frontal cortex for the chronic experiment. ..



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    NeuroNexus Technologies linear array multicontact electrodes
    FIGURE 2 | Electrophysiological mapping of STS under anesthetic condition. (A) Cortical surface around STS of a common marmoset. Four green dots indicate the penetration sites of four shanks of a linear array <t>multicontact</t> <t>electrode.</t> The red line indicates the presumed cortical surface because only 4–5 bottom contacts of each shank were inserted. The yellow dotted line indicates STS. (B) Multiunit responses to the sight of grasping action of another marmoset, which were arranged by channel configuration. Rasters and peristimulus time histograms were aligned to the stimulus onset at time = 0. The bin width for the peristimulus time histogram was 20 ms. To minimize damage to the cortex caused by the electrode penetration, multiunits were recorded only from channels on the upper part of each shank. The multiunits on the bottom two channels on the second shank strongly responded to the movie. (C) Multiunit responses to the sight of human grasping action, which were arranged by channel configuration. As in (B), the multiunits on the bottom two channels on the second shank strongly responded to the movie.
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    FIGURE 2 | Electrophysiological mapping of STS under anesthetic condition. (A) Cortical surface around STS of a common marmoset. Four green dots indicate the penetration sites of four shanks of a linear array multicontact electrode. The red line indicates the presumed cortical surface because only 4–5 bottom contacts of each shank were inserted. The yellow dotted line indicates STS. (B) Multiunit responses to the sight of grasping action of another marmoset, which were arranged by channel configuration. Rasters and peristimulus time histograms were aligned to the stimulus onset at time = 0. The bin width for the peristimulus time histogram was 20 ms. To minimize damage to the cortex caused by the electrode penetration, multiunits were recorded only from channels on the upper part of each shank. The multiunits on the bottom two channels on the second shank strongly responded to the movie. (C) Multiunit responses to the sight of human grasping action, which were arranged by channel configuration. As in (B), the multiunits on the bottom two channels on the second shank strongly responded to the movie.

    Journal: Frontiers in neuroscience

    Article Title: Mirror Neurons in a New World Monkey, Common Marmoset.

    doi: 10.3389/fnins.2015.00459

    Figure Lengend Snippet: FIGURE 2 | Electrophysiological mapping of STS under anesthetic condition. (A) Cortical surface around STS of a common marmoset. Four green dots indicate the penetration sites of four shanks of a linear array multicontact electrode. The red line indicates the presumed cortical surface because only 4–5 bottom contacts of each shank were inserted. The yellow dotted line indicates STS. (B) Multiunit responses to the sight of grasping action of another marmoset, which were arranged by channel configuration. Rasters and peristimulus time histograms were aligned to the stimulus onset at time = 0. The bin width for the peristimulus time histogram was 20 ms. To minimize damage to the cortex caused by the electrode penetration, multiunits were recorded only from channels on the upper part of each shank. The multiunits on the bottom two channels on the second shank strongly responded to the movie. (C) Multiunit responses to the sight of human grasping action, which were arranged by channel configuration. As in (B), the multiunits on the bottom two channels on the second shank strongly responded to the movie.

    Article Snippet: Two micromanipulators were used to lower linear array multicontact electrodes (Neuronexus, Ann Arbor, MI, US) vertically perpendicular to the cortical surface in the STS injection site and in the labeled spots in the lateral frontal cortex for the chronic experiment.

    Techniques: