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human synapsin promoter in dhpc  (Addgene inc)


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    Addgene inc human synapsin promoter in dhpc
    Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of <t>dHPC-</t> (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-
    Human Synapsin Promoter In Dhpc, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 556 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/human synapsin promoter in dhpc/product/Addgene inc
    Average 96 stars, based on 556 article reviews
    human synapsin promoter in dhpc - by Bioz Stars, 2026-06
    96/100 stars

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    1) Product Images from "A hippocampus-accumbens code guides goal-directed appetitive behavior."

    Article Title: A hippocampus-accumbens code guides goal-directed appetitive behavior.

    Journal: Nature communications

    doi: 10.1038/s41467-024-47361-x

    Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of dHPC- (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-
    Figure Legend Snippet: Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of dHPC- (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-

    Techniques Used:

    Fig. 6 | dHPC→NAc neurons are over-represented in lick-excited neurons. a, b Example imaging session and traces showing lick-excited and lick-inhibited neurons. a Behavioral traces and calcium activity of sample neurons #11 (lick- inhibited) and #118 (lick-excited). b Field of view showing spatial profiles of dHPC-
    Figure Legend Snippet: Fig. 6 | dHPC→NAc neurons are over-represented in lick-excited neurons. a, b Example imaging session and traces showing lick-excited and lick-inhibited neurons. a Behavioral traces and calcium activity of sample neurons #11 (lick- inhibited) and #118 (lick-excited). b Field of view showing spatial profiles of dHPC-

    Techniques Used: Imaging, Activity Assay



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    Addgene inc human synapsin promoter in dhpc
    Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of <t>dHPC-</t> (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-
    Human Synapsin Promoter In Dhpc, supplied by Addgene inc, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/human synapsin promoter in dhpc/product/Addgene inc
    Average 96 stars, based on 1 article reviews
    human synapsin promoter in dhpc - by Bioz Stars, 2026-06
    96/100 stars
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    Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of dHPC- (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-

    Journal: Nature communications

    Article Title: A hippocampus-accumbens code guides goal-directed appetitive behavior.

    doi: 10.1038/s41467-024-47361-x

    Figure Lengend Snippet: Fig. 4 | dHPC→NAc place fields are modulated by local cues and reward zone. a Heat maps of dHPC- (left) and dHPC→NAc (right) place cells’ average calcium events, ordered by place field location. White dashed lines: texture boundaries; yellow rectangle: reward zone. b Example place fields with edges near belt texture boundaries. Triangles mark start (no fill) and end (fill) points. Dashed black lines: texture boundaries. c, d Place field edges accumulate near texture boundary areas. Histograms of dHPC- (green) and dHPC→NAc (red) neurons’ place field start c and end d. Dotted line and shade: average and 95th CI of 1000× randomly shuffled place fields. Both dHPC- and dHPC→NAc place field start and end positions are significantly overrepresented at the 99.9th percentile (dotted black lines) compared to a ran- domly shuffled distribution (mean represented by horizontal black line). Start (χ²(1, 5332) = 5.136, P = 0.0234) and end positions (χ²(1, 5332) = 3.869, P = 0.0492) of dHPC→NAc place fields are also significantly overrepresented compared to the dHPC-

    Article Snippet: Then, we used double-floxed inverse open reading frame (DIO) Cre-dependent mCherry under the human synapsin promoter in dHPC (AAV5-hSyn-DIO-mCherry, titer: 1.1 × 1013 vg/ml, Catalog# 50459-AAV5, Addgene,Watertown,USA).

    Techniques:

    Fig. 6 | dHPC→NAc neurons are over-represented in lick-excited neurons. a, b Example imaging session and traces showing lick-excited and lick-inhibited neurons. a Behavioral traces and calcium activity of sample neurons #11 (lick- inhibited) and #118 (lick-excited). b Field of view showing spatial profiles of dHPC-

    Journal: Nature communications

    Article Title: A hippocampus-accumbens code guides goal-directed appetitive behavior.

    doi: 10.1038/s41467-024-47361-x

    Figure Lengend Snippet: Fig. 6 | dHPC→NAc neurons are over-represented in lick-excited neurons. a, b Example imaging session and traces showing lick-excited and lick-inhibited neurons. a Behavioral traces and calcium activity of sample neurons #11 (lick- inhibited) and #118 (lick-excited). b Field of view showing spatial profiles of dHPC-

    Article Snippet: Then, we used double-floxed inverse open reading frame (DIO) Cre-dependent mCherry under the human synapsin promoter in dHPC (AAV5-hSyn-DIO-mCherry, titer: 1.1 × 1013 vg/ml, Catalog# 50459-AAV5, Addgene,Watertown,USA).

    Techniques: Imaging, Activity Assay