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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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( A ) Sketch of macaque brain with <t>microelectrode</t> array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .
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Image Search Results


( A ) Sketch of macaque brain with microelectrode array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .

Journal: PLoS ONE

Article Title: Scale-Invariant Neuronal Avalanche Dynamics and the Cut-Off in Size Distributions

doi: 10.1371/journal.pone.0099761

Figure Lengend Snippet: ( A ) Sketch of macaque brain with microelectrode array locations (squares; black: premotor cortex, monkey 1; gray: prefrontal cortex, monkey 2). CS : central sulcus; PS : principal sulcus. ( B ) An example trace of an LFP signal, showing the detection of nLFPs (marked by asterisks) using a threshold of −2.5 SD (dashed line). ( C ) Raster plot of nLFPs detected from all 91 electrodes (monkey 1) in a period of 2 seconds. nLFPs are represented by individual dots in the plot. ( D ) nLFPs occurring during either the same or consecutive time bins are detected as a spatiotemporal cluster with the size, s , defined as the number of nLFPs involved. ( E ) Avalanche size distributions are plotted in double-logarithmic coordinates for four observation windows, i.e., groups of electrodes in the recording array. The size of the observation window, N , is defined as the number of electrodes within the window (see inset for spatial coverage of the windows). The positions of arrows indicate the values of the corresponding N . ( F ) Continuous avalanche size distributions are plotted for the same observation windows with the size of an avalanche, s Amp , defined as the summated absolute amplitudes of all nLFPs involved. The positions of arrows indicate the values of N × mean absolute nLFP amplitude across all electrodes. For visual comparison, a power law with exponent −1.5 is shown in E and F (dashed lines). E is re-plotted from , .

Article Snippet: In the two adult macaque monkeys, we recorded the LFP with chronically implanted microelectrode arrays (96 channels; 10×10 without corner electrodes, 400 μm inter-electrode distance, 0.5–1 mm electrode length; BlackRock Microsystems) located in the superficial layers of the arm-representing area of the left premotor cortex (monkey 1; 91 working electrodes) or prefrontal cortex (area 46; monkey 2; 95 working electrodes).

Techniques: Microelectrode Array, Comparison