brain mapping Search Results


93
Cytoskeleton Inc microtubule associated protein
DEGs required for sexual development in F. graminearum .
Microtubule Associated Protein, supplied by Cytoskeleton Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cytoskeleton Inc map rich tubulin
DEGs required for sexual development in F. graminearum .
Map Rich Tubulin, supplied by Cytoskeleton Inc, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Allen Institute for Brain Science whole-genome gene expression maps
DEGs required for sexual development in F. graminearum .
Whole Genome Gene Expression Maps, supplied by Allen Institute for Brain Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Forschungszentrum gmbh macaque brain atlas
(A) i: 109 cortical regions of the <t>Julich</t> <t>Macaque</t> <t>Brain</t> <t>Atlas,</t> identified by receptor and cytoarchitecture. ii:D1 receptor density. The receptor density shown here does not take into account differences in neuron density across areas. (B) i: divided the macaque cortex into 42 slabs of tissue, here mapped on to the Yerkes19 surface. ii: neuron density across the cortex. (C) i: injection sites for the studies of dendritic spine density by . ii: number of dendritic spines on the basal dendrites of layer III pyramidal cells. (D) i: 40 injected areas in the retrograde tract-tracing database of . ii: cortical hierarchy. (E) Circular embedding of the cortical hierarchical connectivity structure. Radial distance to the center represents the hierarchical position of the area, with the areas lowest in the hierarchy closest to the edge. Angular distance between areas represents the inverse of connectivity strength (fraction of labeled neurons - FLN), so that areas that are plotted at similar angles are more strongly connected to each other. Colors represent the angle on the circle. Clear visual and somatosensory hierarchies emerge from this circular embedding of the connectivity data (highlighted with arrows). Association areas lie at angles off the main visual and somatosensory hierarchies. (F) The density of D1 receptors divided by neuron density. Regions that have not yet been measured are shown in gray. (G) There was a strong positive correlation between the D1 receptor density per neuron and the cortical hierarchy. The spatially corrected p value is the fraction of randomly generated surrogate maps with spatial smoothness matched to the hierarchy map that show a stronger Pearson correlation (negative or positive) with the D1 receptor map than the hierarchy map itself. See also and .
Macaque Brain Atlas, supplied by Forschungszentrum gmbh, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Allen Institute for Brain Science retinotopic field sign maps
KEY RESOURCES TABLE
Retinotopic Field Sign Maps, supplied by Allen Institute for Brain Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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brain products gmbh scalp current source density (csd) map
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Scalp Current Source Density (Csd) Map, supplied by brain products gmbh, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Allen Institute for Brain Science brain-wide axonal projection mapping matrix
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Brain Wide Axonal Projection Mapping Matrix, supplied by Allen Institute for Brain Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Hartenstein GmbH larval brain mapping atlas
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Larval Brain Mapping Atlas, supplied by Hartenstein GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Allen Institute for Brain Science spatial and temporal maps of gene expression
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Spatial And Temporal Maps Of Gene Expression, supplied by Allen Institute for Brain Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
MBF Bioscience computerized brain-mapping system stereo investigator
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Computerized Brain Mapping System Stereo Investigator, supplied by MBF Bioscience, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
MBF Bioscience whole mouse brain automatic region delineation and cell mapping
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Whole Mouse Brain Automatic Region Delineation And Cell Mapping, supplied by MBF Bioscience, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Allen Institute for Brain Science viral-tracer maps
<t>Current</t> <t>source</t> <t>density</t> map of <t>the</t> <t>PAS</t> induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).
Viral Tracer Maps, supplied by Allen Institute for Brain Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


DEGs required for sexual development in F. graminearum .

Journal: PLoS Genetics

Article Title: A Large-Scale Functional Analysis of Putative Target Genes of Mating-Type Loci Provides Insight into the Regulation of Sexual Development of the Cereal Pathogen Fusarium graminearum

doi: 10.1371/journal.pgen.1005486

Figure Lengend Snippet: DEGs required for sexual development in F. graminearum .

Article Snippet: , FGSG_01862 , Microtubule associated protein , Cytoskeleton dynamics , delayed PM , , DDD .

Techniques: Expressing, Control, Membrane

(A) i: 109 cortical regions of the Julich Macaque Brain Atlas, identified by receptor and cytoarchitecture. ii:D1 receptor density. The receptor density shown here does not take into account differences in neuron density across areas. (B) i: divided the macaque cortex into 42 slabs of tissue, here mapped on to the Yerkes19 surface. ii: neuron density across the cortex. (C) i: injection sites for the studies of dendritic spine density by . ii: number of dendritic spines on the basal dendrites of layer III pyramidal cells. (D) i: 40 injected areas in the retrograde tract-tracing database of . ii: cortical hierarchy. (E) Circular embedding of the cortical hierarchical connectivity structure. Radial distance to the center represents the hierarchical position of the area, with the areas lowest in the hierarchy closest to the edge. Angular distance between areas represents the inverse of connectivity strength (fraction of labeled neurons - FLN), so that areas that are plotted at similar angles are more strongly connected to each other. Colors represent the angle on the circle. Clear visual and somatosensory hierarchies emerge from this circular embedding of the connectivity data (highlighted with arrows). Association areas lie at angles off the main visual and somatosensory hierarchies. (F) The density of D1 receptors divided by neuron density. Regions that have not yet been measured are shown in gray. (G) There was a strong positive correlation between the D1 receptor density per neuron and the cortical hierarchy. The spatially corrected p value is the fraction of randomly generated surrogate maps with spatial smoothness matched to the hierarchy map that show a stronger Pearson correlation (negative or positive) with the D1 receptor map than the hierarchy map itself. See also and .

Journal: Neuron

Article Title: A dopamine gradient controls access to distributed working memory in the large-scale monkey cortex

doi: 10.1016/j.neuron.2021.08.024

Figure Lengend Snippet: (A) i: 109 cortical regions of the Julich Macaque Brain Atlas, identified by receptor and cytoarchitecture. ii:D1 receptor density. The receptor density shown here does not take into account differences in neuron density across areas. (B) i: divided the macaque cortex into 42 slabs of tissue, here mapped on to the Yerkes19 surface. ii: neuron density across the cortex. (C) i: injection sites for the studies of dendritic spine density by . ii: number of dendritic spines on the basal dendrites of layer III pyramidal cells. (D) i: 40 injected areas in the retrograde tract-tracing database of . ii: cortical hierarchy. (E) Circular embedding of the cortical hierarchical connectivity structure. Radial distance to the center represents the hierarchical position of the area, with the areas lowest in the hierarchy closest to the edge. Angular distance between areas represents the inverse of connectivity strength (fraction of labeled neurons - FLN), so that areas that are plotted at similar angles are more strongly connected to each other. Colors represent the angle on the circle. Clear visual and somatosensory hierarchies emerge from this circular embedding of the connectivity data (highlighted with arrows). Association areas lie at angles off the main visual and somatosensory hierarchies. (F) The density of D1 receptors divided by neuron density. Regions that have not yet been measured are shown in gray. (G) There was a strong positive correlation between the D1 receptor density per neuron and the cortical hierarchy. The spatially corrected p value is the fraction of randomly generated surrogate maps with spatial smoothness matched to the hierarchy map that show a stronger Pearson correlation (negative or positive) with the D1 receptor map than the hierarchy map itself. See also and .

Article Snippet: For each area in the Lyon atlas, we searched for overlaps with areas in the Julich Macaque Brain Atlas.

Techniques: Injection, Labeling, Generated

KEY RESOURCES TABLE

Journal: Neuron

Article Title: The spatial structure of neural encoding in mouse posterior cortex during navigation

doi: 10.1016/j.neuron.2019.01.029

Figure Lengend Snippet: KEY RESOURCES TABLE

Article Snippet: Retinotopic field sign maps , Allen Institute for Brain Science , http://api.brain-map.org/api/v2/well_known_file_download/501586803 and 78 further “well known file” IDs..

Techniques: Software, Imaging

Current source density map of the PAS induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).

Journal: Human Brain Mapping

Article Title: Modulation of preparatory volitional motor cortical activity by paired associative transcranial magnetic stimulation

doi: 10.1002/hbm.20793

Figure Lengend Snippet: Current source density map of the PAS induced MRCP voltage change (difference of post‐PAS minus pre‐PAS). Left part of the diagram: early BP; right part of the diagram: late BP; upper row: APB task; lower row: ECR task. A PAS effect was noted only after PASLTP, only for the late BP (reduction of BP negativity) and only in the APB task. This effect was localized over the central scalp area, predominantly in the left hemisphere. Those electrodes with a statistically significant PASLTP effect are indicated by blue dots (CZA, C1, and C1P).

Article Snippet: Mapping of PAS effects on MRCP amplitude For each PAS protocol and motor task, and separately for the early BP and the late BP a scalp current source density (CSD) map was calculated based on the voltage difference post‐PAS vs. pre‐PAS at each of the 56 electrode positions (Brain Vision Analyzer Version 2.0.0.3031, Brain Products GmbH, Germany).

Techniques: