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vce cluster option  (STATA Corporation)


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    STATA Corporation vce cluster option
    Vce Cluster Option, supplied by STATA Corporation, 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/vce/vce++cluster++option/pm40183245-80-13-13
    Average 90 stars, based on 1 article reviews
    vce cluster option - by Bioz Stars, 2026-10
    90/100 stars

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    Article Title: Heterogeneous Effects in Education: The Promise and Challenge of Incorporating Intersectionality Into Quantitative Methodological Approaches
    Article Snippet: For instance, in Stata, researchers can use the vce(cluster) option while performing regressions ( Stata, 2017 ).

    Article Title: Investigating the IGF axis as a pathway for intergenerational effects
    Article Snippet: Early nutritional and growth experiences can impact development, metabolic function, and reproductive outcomes in adulthood, influencing health trajectories in the next generation.. The insulin-like growth factor (IGF) axis regulates growth, metabolism, and energetic investment, but whether it plays a role in the pathway linking maternal experience with offspring prenatal development is unclear.. To test this, we investigated patterns of maternal developmental weight gain (a proxy of early nutrition), young adult energy stores, age, and parity as predictors of biomarkers of the pregnancy IGF axis (n= 36) using data from the Cebu Longitudinal Health and Nutrition Survey in Metro Cebu, Philippines.

    Article Title: Activity and rest in patients with severe acquired brain injury: an observational study.
    Article Snippet: Objective: To examine activity levels, types of activities and their distribution across the day in patients with severe acquired brain injury including disorders of consciousness admitted to subacute neurorehabilitation.. Methods: In this observational cross-sectional study, a modified behavioural mapping tool was used to document activity of patients admitted to a specialized rehabilitation ward for three consecutive days from 8.00 am to 8.00pm.. Observers walked a fixed route and returned to each patient every 10min.

    Article Title: Social Network Analysis of Diffusion Among American Indian Youth in a Culturally Adapted, Family-focused Prevention Program.
    Article Snippet: Diffusion can contribute to the spread of preventive intervention effects from participants to non-participants, but best practices for randomized trials prevent contamination of conditions.. These practices conflict with cultural values of community benefit, which are salient among American Indians.. This study embedded social network measures within a randomized trial of the Bii-Zin-Da-De-Dah (BZDDD) family-focused prevention program to characterize youth’s social networks, describe the nature and content of sharing, and test for diffusion effects on cultural engagement (ethnic identification, cultural socialization, cultural practices) and substance use.

    Article Title: Weaker association between hearing loss and non-employment in recent generations: the HUNT cohort study.
    Article Snippet: To account for dependency in the data because some participants took part in both surveys, we estimated cluster-robust standard errors using the vce (cluster) option in STATA with subjects’ ID as the cluster variable.

    Article Title: Residence in coastal communities in adolescence and health in young adulthood: An 11-year follow-up of English UKHLS youth questionnaire respondents.
    Article Snippet: In each regression model statement, the vce cluster option in STATA, using LSOA codes as the cluster variable, was used to take account of the clustering of individuals within LSOAs.

    Article Title: A Mixed-Methods Evaluation of a Peer Group Intervention to Promote Wellbeing in Mental Health Nurses.
    Article Snippet: Each participant's set of responses over time was treated as a cluster using Stata's vce cluster option.



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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
    Rt Vce Mirocam, supplied by IntroMedic Co Ltd, 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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    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
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    STATA Corporation vce cluster option
    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two <t>CEs</t> <t>(MRV_5</t> and MRV_6) found in this work compared with commercial vaccinia CE <t>(VCE)</t> (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.
    Vce Cluster Option, supplied by STATA Corporation, 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/vce/vce++cluster++option/pm40183245-80-13-13
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    Image Search Results


    ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two CEs (MRV_5 and MRV_6) found in this work compared with commercial vaccinia CE (VCE) (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.

    Journal: Science Advances

    Article Title: Discovery of diverse and high-quality mRNA capping enzymes through a language model–enabled platform

    doi: 10.1126/sciadv.adt0402

    Figure Lengend Snippet: ( A ) Diagram of the in vivo capping activity assay. The construction details of the K1.5/T7 transcriptional system used for the in vivo assays are shown in fig. S15. YFP, yellow fluorescent protein. ( B ) The capping activities of 46 text-mined CEs in CHO cells. The RNAP not fused to a CE served as the negative control (NO_CE, blue bar), and the RNAP fused to the NP868R CE served as the positive control (gray bar and blue dashed line). The relative activities were calculated by assigning the NO_CE mean fluorescence intensity as 1. The bar plot shows the means ± SD of three biological replicates. Sequences chosen for yeast evaluation are marked by orange dots. Data are found in table S5. ( C ) The capping activities of 18 text-mined CEs in S. cerevisiae . Controls, error bars, and color coding are the same as in (B). ( D ) Diagram of the in vitro capping activity assay. ( E ) The in vitro capping activities of two CEs (MRV_5 and MRV_6) found in this work compared with commercial vaccinia CE (VCE) (control_NEB) and no enzyme treatment control (control_NoEnzyme). Each group includes three biological replicates, with representative mass spectra shown. The x axis represents the molecular weight of the compounds, with the observed mass displayed above the corresponding peaks (amu, the relative atomic mass unit). The y axis is the count of compounds collected. For compound identities and liquid chromatography–mass spectrometry (LC-MS) results of all experiments, see figs. S22 to S25 and table S6. The bar plot shows the means ± SD of three biological replicates. P values were determined using an unpaired two-sided t test.

    Article Snippet: With the same enzyme usage and reaction conditions, both MRV_5 and MRV_6 [Marseilleviridae CEs (MCEs)] exhibited twofold enhanced capping efficiencies to the commercial vaccinia CE (VCE) from New England Biolabs (NEB; and figs. S22 to S25).

    Techniques: In Vivo, Activity Assay, Negative Control, Positive Control, Fluorescence, In Vitro, Control, Molecular Weight, Liquid Chromatography, Mass Spectrometry, Liquid Chromatography with Mass Spectroscopy