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primary antibody against pv  (Synaptic Systems)


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    Structured Review

    Synaptic Systems primary antibody against pv
    Primary Antibody Against Pv, supplied by Synaptic Systems, 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/result/primary antibody against pv/product/Synaptic Systems
    Average 90 stars, based on 1 article reviews
    primary antibody against pv - by Bioz Stars, 2026-02
    90/100 stars

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    (a) Histological image of ventral horn of lumbar spinal cord. (b) Quantification of density in the ventral horn of lumbar spinal cord shows that treadmill training increases CST puncta density in the ventral horn. (c) Histological image of CST puncta onto deep dorsal horn <t>parvalbumin-expressing</t> interneurons (dPVs), inhibitory premotor neurons located in laminae IV-V that are involved in corrective movements. (d) Quantification of (c). Treadmill training with high motivation may also result in increased CST puncta onto premotor neurons. High motivation may thus promote stereotypic CST connectivity onto premotor networks, whereas low motivation may result in more entropic connectivity.
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    (a) Histological image of ventral horn of lumbar spinal cord. (b) Quantification of density in the ventral horn of lumbar spinal cord shows that treadmill training increases CST puncta density in the ventral horn. (c) Histological image of CST puncta onto deep dorsal horn <t>parvalbumin-expressing</t> interneurons (dPVs), inhibitory premotor neurons located in laminae IV-V that are involved in corrective movements. (d) Quantification of (c). Treadmill training with high motivation may also result in increased CST puncta onto premotor neurons. High motivation may thus promote stereotypic CST connectivity onto premotor networks, whereas low motivation may result in more entropic connectivity.
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    Swant primary antibodies against pv
    (a) Histological image of ventral horn of lumbar spinal cord. (b) Quantification of density in the ventral horn of lumbar spinal cord shows that treadmill training increases CST puncta density in the ventral horn. (c) Histological image of CST puncta onto deep dorsal horn <t>parvalbumin-expressing</t> interneurons (dPVs), inhibitory premotor neurons located in laminae IV-V that are involved in corrective movements. (d) Quantification of (c). Treadmill training with high motivation may also result in increased CST puncta onto premotor neurons. High motivation may thus promote stereotypic CST connectivity onto premotor networks, whereas low motivation may result in more entropic connectivity.
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    Millipore primary antibodies against pv
    ( A ) 3-D brain diagram and coronal sections representing the brain regions investigated. ( B–E ) Representative photomicrographs from immunohistochemistry each pair of columns represents a group comparison (left control (CTRL) and right ELS) and each line is related to CA1 and PL, respectively. ( B ) <t>NeuN</t> immunohistochemistry showed that ELS rats did not present neuronal loss. Parvalbumin (PV) immunohistochemistry. ( D <t>)</t> <t>mGluR5:</t> ( E ) GFAP, showing increased astrogliosis induced by ELS (Mixed-effects model). GL: Granule layer of dentate gyrus; CA1: Cornu Ammonis 1; EC: Entorhinal cortex; IL: Infralimbic cortex; PL: Prelimbic cortex; TRN: Thalamic Reticular Nucleus. *p<0.05. CTRL n=11, and ELS n=14. Error bars represent the mean ± SEM.
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    Synaptic Systems primary antibody against pv
    ( A ) 3-D brain diagram and coronal sections representing the brain regions investigated. ( B–E ) Representative photomicrographs from immunohistochemistry each pair of columns represents a group comparison (left control (CTRL) and right ELS) and each line is related to CA1 and PL, respectively. ( B ) <t>NeuN</t> immunohistochemistry showed that ELS rats did not present neuronal loss. Parvalbumin (PV) immunohistochemistry. ( D <t>)</t> <t>mGluR5:</t> ( E ) GFAP, showing increased astrogliosis induced by ELS (Mixed-effects model). GL: Granule layer of dentate gyrus; CA1: Cornu Ammonis 1; EC: Entorhinal cortex; IL: Infralimbic cortex; PL: Prelimbic cortex; TRN: Thalamic Reticular Nucleus. *p<0.05. CTRL n=11, and ELS n=14. Error bars represent the mean ± SEM.
    Primary Antibody Against Pv, supplied by Synaptic Systems, 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/result/primary antibody against pv/product/Synaptic Systems
    Average 90 stars, based on 1 article reviews
    primary antibody against pv - by Bioz Stars, 2026-02
    90/100 stars
      Buy from Supplier

    Image Search Results


    (a) Histological image of ventral horn of lumbar spinal cord. (b) Quantification of density in the ventral horn of lumbar spinal cord shows that treadmill training increases CST puncta density in the ventral horn. (c) Histological image of CST puncta onto deep dorsal horn parvalbumin-expressing interneurons (dPVs), inhibitory premotor neurons located in laminae IV-V that are involved in corrective movements. (d) Quantification of (c). Treadmill training with high motivation may also result in increased CST puncta onto premotor neurons. High motivation may thus promote stereotypic CST connectivity onto premotor networks, whereas low motivation may result in more entropic connectivity.

    Journal: bioRxiv

    Article Title: Treadmill step training promotes corticospinal tract plasticity after incomplete spinal cord injury

    doi: 10.1101/2024.10.14.618099

    Figure Lengend Snippet: (a) Histological image of ventral horn of lumbar spinal cord. (b) Quantification of density in the ventral horn of lumbar spinal cord shows that treadmill training increases CST puncta density in the ventral horn. (c) Histological image of CST puncta onto deep dorsal horn parvalbumin-expressing interneurons (dPVs), inhibitory premotor neurons located in laminae IV-V that are involved in corrective movements. (d) Quantification of (c). Treadmill training with high motivation may also result in increased CST puncta onto premotor neurons. High motivation may thus promote stereotypic CST connectivity onto premotor networks, whereas low motivation may result in more entropic connectivity.

    Article Snippet: Tissue was incubated in the following primary antibodies made in HS-PBS and 0.3% Triton X-100 (HS-PBST) for 48 at 4°C: primary Guinea Pig antibody against Parvalbumin (PV) (1:1000, Cat No. FR105250, Nittobo Medical Co, LTD, JPN) and primary Rabbit antibody against green fluorescent protein (GFP, 1:500, Cat. No, A11122, Thermo Fischer, Waltham, MA, USA).

    Techniques: Expressing

    ( A ) 3-D brain diagram and coronal sections representing the brain regions investigated. ( B–E ) Representative photomicrographs from immunohistochemistry each pair of columns represents a group comparison (left control (CTRL) and right ELS) and each line is related to CA1 and PL, respectively. ( B ) NeuN immunohistochemistry showed that ELS rats did not present neuronal loss. Parvalbumin (PV) immunohistochemistry. ( D ) mGluR5: ( E ) GFAP, showing increased astrogliosis induced by ELS (Mixed-effects model). GL: Granule layer of dentate gyrus; CA1: Cornu Ammonis 1; EC: Entorhinal cortex; IL: Infralimbic cortex; PL: Prelimbic cortex; TRN: Thalamic Reticular Nucleus. *p<0.05. CTRL n=11, and ELS n=14. Error bars represent the mean ± SEM.

    Journal: eLife

    Article Title: Dysfunctional hippocampal-prefrontal network underlies a multidimensional neuropsychiatric phenotype following early-life seizure

    doi: 10.7554/eLife.90997

    Figure Lengend Snippet: ( A ) 3-D brain diagram and coronal sections representing the brain regions investigated. ( B–E ) Representative photomicrographs from immunohistochemistry each pair of columns represents a group comparison (left control (CTRL) and right ELS) and each line is related to CA1 and PL, respectively. ( B ) NeuN immunohistochemistry showed that ELS rats did not present neuronal loss. Parvalbumin (PV) immunohistochemistry. ( D ) mGluR5: ( E ) GFAP, showing increased astrogliosis induced by ELS (Mixed-effects model). GL: Granule layer of dentate gyrus; CA1: Cornu Ammonis 1; EC: Entorhinal cortex; IL: Infralimbic cortex; PL: Prelimbic cortex; TRN: Thalamic Reticular Nucleus. *p<0.05. CTRL n=11, and ELS n=14. Error bars represent the mean ± SEM.

    Article Snippet: We used the primary antibodies against NeuN (Chemicon, USA; 1:1000), PV (Calbiochem, USA; 1:500), mGluR5 (Millipore, USA; 1:200), and GFAP (Dako, Denmark; 1:500) proteins, and biotinylated secondary antibodies (Dako, Denmark; 1:200).

    Techniques: Immunohistochemistry, Comparison, Control