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Inscopix Inc data processing software (idps)
Data Processing Software (Idps), supplied by Inscopix Inc, 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/data+processing+software+(idps)/data+processing+software/pmc12275950-19-1-0
Average 90 stars, based on 1 article reviews
data processing software (idps) - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

Imaging:

Article Title: Ultrafast venous and sagittal sinus constrictions in the brain driven by abdominal pressure
Article Snippet: .. The imaging data were processed and analyzed using the Inscopix Data Processing Software (Inscopix, Mountain View, CA). ..

Article Title: Dynamic representations of valence in anterior cingulate cortex in mice
Article Snippet: .. We used Inscopix Data Processing System software (IDPS, v1.8) on imaging data from IDAS to perform filtering, motion correction, Constrained Nonnegative Matrix Factorization (CNMFe) spatial footprint extraction, and multiplane cell registration. ..

Software:

Article Title: Ultrafast venous and sagittal sinus constrictions in the brain driven by abdominal pressure
Article Snippet: .. The imaging data were processed and analyzed using the Inscopix Data Processing Software (Inscopix, Mountain View, CA). ..

Article Title: Dynamic representations of valence in anterior cingulate cortex in mice
Article Snippet: .. We used Inscopix Data Processing System software (IDPS, v1.8) on imaging data from IDAS to perform filtering, motion correction, Constrained Nonnegative Matrix Factorization (CNMFe) spatial footprint extraction, and multiplane cell registration. ..

Article Title: Locus coeruleus activation transforms cortical taste representations
Article Snippet: Data analysis was performed using custom scripts written in MATLAB (MathWorks) and Prism 10 (GraphPad). .. Miniscope recordings were pre-processed using Inscopix Data Processing Software (IDPS), including spatial and temporal down-sampling, bandpass filtering, and motion correction. ..

Article Title: Functional imaging of nine distinct neuronal populations under a miniscope in freely behaving animals
Article Snippet: .. Acquired calcium transients, concatenated per recording day with each recording day consisting of the acclimation and behavior time, were processed in the Inscopix Data Processing Software (IDPS, Inscopix). ..

Article Title: Oxytocin attenuates fear learning via enhancing somatostatin interneuron-mediated local GABAergic inhibition in the prelimbic cortex.
Article Snippet: .. Miniscope recordings were preprocessed using Inscopix Data Processing Software (v.1.9.2, Inscopix). ..

Article Title: Social Novelty Recruits a Dysfunctional Nucleus Accumbens Ensemble That Drives Social Avoidance in a Shank3 −/− Autism Model
Article Snippet: .. Calcium and behavior videos were uploaded to the Inscopix Data Processing Software (IDPS). ..

Article Title: Functional imaging of nine distinct neuronal populations under a miniscope in freely behaving animals
Article Snippet: cell line (Homo- sapiens) , HEK 293T , GE Dharmacon, Fisher Scientific , NC0260915 , . .. Software, algorithm , Inscopix Data Processing Software (IDPS) , Bruker , , Miniscope analysis software. .. Recombinant DNA reagent (Sapphire) , mT-Sapphire-C1 , Addgene , RRID: Addgene_54545 , .

Article Title: STAR Protocols question-and-answer series: Neuroimaging
Article Snippet: .. Shijia Liu and Sung Han: We used Inscopix Data Processing Software, which provides an intuitive interface and includes helpful documentation on the algorithms. ..

Extraction:

Article Title: Dynamic representations of valence in anterior cingulate cortex in mice
Article Snippet: .. We used Inscopix Data Processing System software (IDPS, v1.8) on imaging data from IDAS to perform filtering, motion correction, Constrained Nonnegative Matrix Factorization (CNMFe) spatial footprint extraction, and multiplane cell registration. ..



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a , Simultaneous in vivo calcium imaging and optogenetic stimulation under free-moving conditions. AAV-syn-GCaMP6f and AAV-syn-ChrimsonR were co-injected into the DG, followed by GRIN-lens implantation. An integrated miniature microscope (nVoke; <t>Inscopix)</t> enabled large-scale cellular-resolution Ca 2+ imaging and optogenetic stimulation. b, Left: Expression of GCaMP6f and ChrimsonR in the DG. Right: Max projection of relative fluorescence change (Δ F / F ) of Ca 2+ transients from all imaging frames during the first 30 min, showing representative active neurons. c, Top: Experimental design of Ca 2+ imaging combined with optogenetic stimulation during the open field test. Each 50-min session consisted of 30-min Ca 2+ imaging (used for the following analysis), 5-min optogenetic stimulation, and 15-min post-stimulation recording. This was repeated for 10 days. No light was introduced to mice in the No Stim group. Bottom: Δ F / F traces from 15 representative neurons (scale bar, 10% Δ F / F ). <t>Data</t> from 25 to 38 min of a 50-min session are shown. d, Distance traveled during the first 30 min e, Average Ca 2+ transient rate during the first 30 min. f, Distribution of spatial information for the No Stim (grey curve) and Stim×10 groups (red curve). The vertical axis represents the frequency of distribution, with the dotted line indicating the criterion for place cells (top 95% percentile of the shuffled distribution; see Methods section). Bar graph indicates proportion of place cells. g, Representative results of position decoding using Ca 2+ imaging data. The first 30 min was split into two 15-min halves for training and test data for decoding. Black/red lines: observed position; grey/pink lines: decoded position. h, Decoding accuracy (mae; mean absolute error, cm). Dotted lines: shuffled control. Two-way repeated measures ANOVA: Stim type, F (1, 8) = 6.49, P = 0.034; Day, F (2, 16) = 2.89, P = 0.085; Stim type × Day, F (2, 16) = 1.11, P = 0.353. Bonferroni correction for multiple comparisons was performed, * P < 0.05. i, Same as f , but for speed information and speed cells. The dotted line indicates the criterion for speed cells (top 99% percentile of the shuffled distribution). j, Same as g , but for speed decoding. k, Same as h , but for speed decoding accuracy. Two-way repeated measures ANOVA: Stim type, F (1, 8) =4.02, P = 0.080; Day, F (2, 16) = 4.87, P = 0.022; Day×Stim type, F (2, 16) = 3.98, P = 0.039. Bonferroni correction for multiple comparisons was performed, * P < 0.05.
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a , Simultaneous in vivo calcium imaging and optogenetic stimulation under free-moving conditions. AAV-syn-GCaMP6f and AAV-syn-ChrimsonR were co-injected into the DG, followed by GRIN-lens implantation. An integrated miniature microscope (nVoke; <t>Inscopix)</t> enabled large-scale cellular-resolution Ca 2+ imaging and optogenetic stimulation. b, Left: Expression of GCaMP6f and ChrimsonR in the DG. Right: Max projection of relative fluorescence change (Δ F / F ) of Ca 2+ transients from all imaging frames during the first 30 min, showing representative active neurons. c, Top: Experimental design of Ca 2+ imaging combined with optogenetic stimulation during the open field test. Each 50-min session consisted of 30-min Ca 2+ imaging (used for the following analysis), 5-min optogenetic stimulation, and 15-min post-stimulation recording. This was repeated for 10 days. No light was introduced to mice in the No Stim group. Bottom: Δ F / F traces from 15 representative neurons (scale bar, 10% Δ F / F ). <t>Data</t> from 25 to 38 min of a 50-min session are shown. d, Distance traveled during the first 30 min e, Average Ca 2+ transient rate during the first 30 min. f, Distribution of spatial information for the No Stim (grey curve) and Stim×10 groups (red curve). The vertical axis represents the frequency of distribution, with the dotted line indicating the criterion for place cells (top 95% percentile of the shuffled distribution; see Methods section). Bar graph indicates proportion of place cells. g, Representative results of position decoding using Ca 2+ imaging data. The first 30 min was split into two 15-min halves for training and test data for decoding. Black/red lines: observed position; grey/pink lines: decoded position. h, Decoding accuracy (mae; mean absolute error, cm). Dotted lines: shuffled control. Two-way repeated measures ANOVA: Stim type, F (1, 8) = 6.49, P = 0.034; Day, F (2, 16) = 2.89, P = 0.085; Stim type × Day, F (2, 16) = 1.11, P = 0.353. Bonferroni correction for multiple comparisons was performed, * P < 0.05. i, Same as f , but for speed information and speed cells. The dotted line indicates the criterion for speed cells (top 99% percentile of the shuffled distribution). j, Same as g , but for speed decoding. k, Same as h , but for speed decoding accuracy. Two-way repeated measures ANOVA: Stim type, F (1, 8) =4.02, P = 0.080; Day, F (2, 16) = 4.87, P = 0.022; Day×Stim type, F (2, 16) = 3.98, P = 0.039. Bonferroni correction for multiple comparisons was performed, * P < 0.05.
Idps Inscopix Data 721 Processing Software, supplied by Inscopix Inc, 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/data+processing+software+(idps)/idps+inscopix+data+721+processing+software/pm40157920-532-8-9
Average 90 stars, based on 1 article reviews
idps inscopix data 721 processing software - by Bioz Stars, 2026-09
90/100 stars
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a , Simultaneous in vivo calcium imaging and optogenetic stimulation under free-moving conditions. AAV-syn-GCaMP6f and AAV-syn-ChrimsonR were co-injected into the DG, followed by GRIN-lens implantation. An integrated miniature microscope (nVoke; Inscopix) enabled large-scale cellular-resolution Ca 2+ imaging and optogenetic stimulation. b, Left: Expression of GCaMP6f and ChrimsonR in the DG. Right: Max projection of relative fluorescence change (Δ F / F ) of Ca 2+ transients from all imaging frames during the first 30 min, showing representative active neurons. c, Top: Experimental design of Ca 2+ imaging combined with optogenetic stimulation during the open field test. Each 50-min session consisted of 30-min Ca 2+ imaging (used for the following analysis), 5-min optogenetic stimulation, and 15-min post-stimulation recording. This was repeated for 10 days. No light was introduced to mice in the No Stim group. Bottom: Δ F / F traces from 15 representative neurons (scale bar, 10% Δ F / F ). Data from 25 to 38 min of a 50-min session are shown. d, Distance traveled during the first 30 min e, Average Ca 2+ transient rate during the first 30 min. f, Distribution of spatial information for the No Stim (grey curve) and Stim×10 groups (red curve). The vertical axis represents the frequency of distribution, with the dotted line indicating the criterion for place cells (top 95% percentile of the shuffled distribution; see Methods section). Bar graph indicates proportion of place cells. g, Representative results of position decoding using Ca 2+ imaging data. The first 30 min was split into two 15-min halves for training and test data for decoding. Black/red lines: observed position; grey/pink lines: decoded position. h, Decoding accuracy (mae; mean absolute error, cm). Dotted lines: shuffled control. Two-way repeated measures ANOVA: Stim type, F (1, 8) = 6.49, P = 0.034; Day, F (2, 16) = 2.89, P = 0.085; Stim type × Day, F (2, 16) = 1.11, P = 0.353. Bonferroni correction for multiple comparisons was performed, * P < 0.05. i, Same as f , but for speed information and speed cells. The dotted line indicates the criterion for speed cells (top 99% percentile of the shuffled distribution). j, Same as g , but for speed decoding. k, Same as h , but for speed decoding accuracy. Two-way repeated measures ANOVA: Stim type, F (1, 8) =4.02, P = 0.080; Day, F (2, 16) = 4.87, P = 0.022; Day×Stim type, F (2, 16) = 3.98, P = 0.039. Bonferroni correction for multiple comparisons was performed, * P < 0.05.

Journal: bioRxiv

Article Title: Repetitive Neuronal Activation Regulates Cellular Maturation State via Nuclear Reprogramming

doi: 10.1101/2025.05.02.651848

Figure Lengend Snippet: a , Simultaneous in vivo calcium imaging and optogenetic stimulation under free-moving conditions. AAV-syn-GCaMP6f and AAV-syn-ChrimsonR were co-injected into the DG, followed by GRIN-lens implantation. An integrated miniature microscope (nVoke; Inscopix) enabled large-scale cellular-resolution Ca 2+ imaging and optogenetic stimulation. b, Left: Expression of GCaMP6f and ChrimsonR in the DG. Right: Max projection of relative fluorescence change (Δ F / F ) of Ca 2+ transients from all imaging frames during the first 30 min, showing representative active neurons. c, Top: Experimental design of Ca 2+ imaging combined with optogenetic stimulation during the open field test. Each 50-min session consisted of 30-min Ca 2+ imaging (used for the following analysis), 5-min optogenetic stimulation, and 15-min post-stimulation recording. This was repeated for 10 days. No light was introduced to mice in the No Stim group. Bottom: Δ F / F traces from 15 representative neurons (scale bar, 10% Δ F / F ). Data from 25 to 38 min of a 50-min session are shown. d, Distance traveled during the first 30 min e, Average Ca 2+ transient rate during the first 30 min. f, Distribution of spatial information for the No Stim (grey curve) and Stim×10 groups (red curve). The vertical axis represents the frequency of distribution, with the dotted line indicating the criterion for place cells (top 95% percentile of the shuffled distribution; see Methods section). Bar graph indicates proportion of place cells. g, Representative results of position decoding using Ca 2+ imaging data. The first 30 min was split into two 15-min halves for training and test data for decoding. Black/red lines: observed position; grey/pink lines: decoded position. h, Decoding accuracy (mae; mean absolute error, cm). Dotted lines: shuffled control. Two-way repeated measures ANOVA: Stim type, F (1, 8) = 6.49, P = 0.034; Day, F (2, 16) = 2.89, P = 0.085; Stim type × Day, F (2, 16) = 1.11, P = 0.353. Bonferroni correction for multiple comparisons was performed, * P < 0.05. i, Same as f , but for speed information and speed cells. The dotted line indicates the criterion for speed cells (top 99% percentile of the shuffled distribution). j, Same as g , but for speed decoding. k, Same as h , but for speed decoding accuracy. Two-way repeated measures ANOVA: Stim type, F (1, 8) =4.02, P = 0.080; Day, F (2, 16) = 4.87, P = 0.022; Day×Stim type, F (2, 16) = 3.98, P = 0.039. Bonferroni correction for multiple comparisons was performed, * P < 0.05.

Article Snippet: To extract the activity patterns of individual DG neurons from the obtained fluorescent images, we used Inscopix Data Processing Software (IDPS 1.8.0).

Techniques: In Vivo, Imaging, Injection, Microscopy, Expressing, Fluorescence, Control