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med64 multichannel recording system  (Panasonic Healthcare)


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    Structured Review

    Panasonic Healthcare med64 multichannel recording system
    Med64 Multichannel Recording System, supplied by Panasonic Healthcare, used in various techniques. Bioz Stars score: 94/100, based on 104 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/med64+multichannel+recording+system/MED64+Multi-electrode+Array+System/us10813979-670-9-13
    Average 94 stars, based on 104 article reviews
    med64 multichannel recording system - by Bioz Stars, 2026-10
    94/100 stars

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    other:

    Article Title: IL-33 ameliorates Alzheimer’s disease-like pathology and cognitive decline
    Article Snippet: The field excitatory postsynaptic potentials were recorded using a MED64 multichannel recording system (Panasonic International).

    Article Title: Methods and compositions for treating neurodegenerative and neuroinflammatory conditions
    Article Snippet: The field excitatory postsynaptic potentials were recorded using a MED64 multichannel recording system (Panasonic International Inc.).



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    Alpha MED Scientific multichannel field potential recording med64
    Schematic diagram of the <t>MED64</t> P5001A probe (three-group arrays including 64 50 × 50-μm planar microelectrodes with 150 μm apart from each other). (B) Schematic diagram showing the relative position between the <t>multichannel</t> probe and the sagittal brain slice. The fEPSPs of RSC and ACC regions are recorded respectively by Group 1 (G1) and Group 2 (G2) electrode arrays with the stimulus site (red) in the RSC. (C, D) The example of recorded fEPSPs from the RSC (18 channels) and ACC (21 channels) with one stimulus channel (red line) in the RSC. The numbers 1–3 represent different types of channels (the active, the silent, and abnormal channels, respectively). (E) The pie chart showing the percentage of 3 types of the recorded channels in the RSC and ACC, respectively (RSC: type 1 = 79.37%, type 2 = 17.46%, type 3 = 3.17%; ACC: type 1 = 63.95%, type 2 = 35.37%, type 3 = 0.68%, n = 7 slices from 5 mice). (F) The averaged amplitude of all the recorded fEPSCs from the RSC and ACC in each brain slice (two-tailed unpaired t test: t = 5.314, *** p < 0.0001, n = 8 slices from 5 mice). The summary data for Fig 2 can be found in . ACC, anterior cingulate cortex; RSC, retrosplenial cortex.
    Multichannel Field Potential Recording Med64, supplied by Alpha MED Scientific, 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/med64+multichannel+recording+system/med64+probe/pmc11801709-56-5-9
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    Alpha MED Scientific multichannel recording system med64
    Schematic diagram of the <t>MED64</t> P5001A probe (three-group arrays including 64 50 × 50-μm planar microelectrodes with 150 μm apart from each other). (B) Schematic diagram showing the relative position between the <t>multichannel</t> probe and the sagittal brain slice. The fEPSPs of RSC and ACC regions are recorded respectively by Group 1 (G1) and Group 2 (G2) electrode arrays with the stimulus site (red) in the RSC. (C, D) The example of recorded fEPSPs from the RSC (18 channels) and ACC (21 channels) with one stimulus channel (red line) in the RSC. The numbers 1–3 represent different types of channels (the active, the silent, and abnormal channels, respectively). (E) The pie chart showing the percentage of 3 types of the recorded channels in the RSC and ACC, respectively (RSC: type 1 = 79.37%, type 2 = 17.46%, type 3 = 3.17%; ACC: type 1 = 63.95%, type 2 = 35.37%, type 3 = 0.68%, n = 7 slices from 5 mice). (F) The averaged amplitude of all the recorded fEPSCs from the RSC and ACC in each brain slice (two-tailed unpaired t test: t = 5.314, *** p < 0.0001, n = 8 slices from 5 mice). The summary data for Fig 2 can be found in . ACC, anterior cingulate cortex; RSC, retrosplenial cortex.
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    94
    Panasonic Healthcare med64 multichannel recording system
    Schematic diagram of the <t>MED64</t> P5001A probe (three-group arrays including 64 50 × 50-μm planar microelectrodes with 150 μm apart from each other). (B) Schematic diagram showing the relative position between the <t>multichannel</t> probe and the sagittal brain slice. The fEPSPs of RSC and ACC regions are recorded respectively by Group 1 (G1) and Group 2 (G2) electrode arrays with the stimulus site (red) in the RSC. (C, D) The example of recorded fEPSPs from the RSC (18 channels) and ACC (21 channels) with one stimulus channel (red line) in the RSC. The numbers 1–3 represent different types of channels (the active, the silent, and abnormal channels, respectively). (E) The pie chart showing the percentage of 3 types of the recorded channels in the RSC and ACC, respectively (RSC: type 1 = 79.37%, type 2 = 17.46%, type 3 = 3.17%; ACC: type 1 = 63.95%, type 2 = 35.37%, type 3 = 0.68%, n = 7 slices from 5 mice). (F) The averaged amplitude of all the recorded fEPSCs from the RSC and ACC in each brain slice (two-tailed unpaired t test: t = 5.314, *** p < 0.0001, n = 8 slices from 5 mice). The summary data for Fig 2 can be found in . ACC, anterior cingulate cortex; RSC, retrosplenial cortex.
    Med64 Multichannel Recording System, supplied by Panasonic Healthcare, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/med64+multichannel+recording+system/MED64+Multi-electrode+Array+System/us10813979-670-9-13
    Average 94 stars, based on 1 article reviews
    med64 multichannel recording system - by Bioz Stars, 2026-10
    94/100 stars
      Buy from Supplier

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    Schematic diagram of the MED64 P5001A probe (three-group arrays including 64 50 × 50-μm planar microelectrodes with 150 μm apart from each other). (B) Schematic diagram showing the relative position between the multichannel probe and the sagittal brain slice. The fEPSPs of RSC and ACC regions are recorded respectively by Group 1 (G1) and Group 2 (G2) electrode arrays with the stimulus site (red) in the RSC. (C, D) The example of recorded fEPSPs from the RSC (18 channels) and ACC (21 channels) with one stimulus channel (red line) in the RSC. The numbers 1–3 represent different types of channels (the active, the silent, and abnormal channels, respectively). (E) The pie chart showing the percentage of 3 types of the recorded channels in the RSC and ACC, respectively (RSC: type 1 = 79.37%, type 2 = 17.46%, type 3 = 3.17%; ACC: type 1 = 63.95%, type 2 = 35.37%, type 3 = 0.68%, n = 7 slices from 5 mice). (F) The averaged amplitude of all the recorded fEPSCs from the RSC and ACC in each brain slice (two-tailed unpaired t test: t = 5.314, *** p < 0.0001, n = 8 slices from 5 mice). The summary data for Fig 2 can be found in . ACC, anterior cingulate cortex; RSC, retrosplenial cortex.

    Journal: PLOS Biology

    Article Title: Supraspinal facilitation of painful stimuli by glutamatergic innervation from the retrosplenial to the anterior cingulate cortex

    doi: 10.1371/journal.pbio.3003011

    Figure Lengend Snippet: Schematic diagram of the MED64 P5001A probe (three-group arrays including 64 50 × 50-μm planar microelectrodes with 150 μm apart from each other). (B) Schematic diagram showing the relative position between the multichannel probe and the sagittal brain slice. The fEPSPs of RSC and ACC regions are recorded respectively by Group 1 (G1) and Group 2 (G2) electrode arrays with the stimulus site (red) in the RSC. (C, D) The example of recorded fEPSPs from the RSC (18 channels) and ACC (21 channels) with one stimulus channel (red line) in the RSC. The numbers 1–3 represent different types of channels (the active, the silent, and abnormal channels, respectively). (E) The pie chart showing the percentage of 3 types of the recorded channels in the RSC and ACC, respectively (RSC: type 1 = 79.37%, type 2 = 17.46%, type 3 = 3.17%; ACC: type 1 = 63.95%, type 2 = 35.37%, type 3 = 0.68%, n = 7 slices from 5 mice). (F) The averaged amplitude of all the recorded fEPSCs from the RSC and ACC in each brain slice (two-tailed unpaired t test: t = 5.314, *** p < 0.0001, n = 8 slices from 5 mice). The summary data for Fig 2 can be found in . ACC, anterior cingulate cortex; RSC, retrosplenial cortex.

    Article Snippet: Here, we first performed the multichannel field potential recording (MED64) to record the field excitatory postsynaptic potentials (fEPSPs) in the ACC with the electrical stimulus in the RSC on the sagittal brain slice ( ).

    Techniques: Slice Preparation, Two Tailed Test