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multilevel mixed-effects linear regression (lme) model with robust standard errors  (STATA Corporation)


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    Structured Review

    STATA Corporation multilevel mixed-effects linear regression (lme) model with robust standard errors
    Observed TMT-A, TMT-B and DB z scores and fitted curve based on linear mixed-effects model for all patients over time following VNS therapy. The baseline z scores for TMT-A, TMT-B and DB were − 1.42, −2.01, and − 0.53, respectively. AVG = Average.
    Multilevel Mixed Effects Linear Regression (Lme) Model With Robust Standard Errors, 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/multilevel+mixed-effects+linear+regression+models/pmc10899669-153-16-26?v=STATA+Corporation
    Average 90 stars, based on 1 article reviews
    multilevel mixed-effects linear regression (lme) model with robust standard errors - by Bioz Stars, 2026-07
    90/100 stars

    Images

    1) Product Images from "Complex executive functions assessed by the trail making test (TMT) part B improve more than those assessed by the TMT part A or digit span backward task during vagus nerve stimulation in patients with drug-resistant epilepsy"

    Article Title: Complex executive functions assessed by the trail making test (TMT) part B improve more than those assessed by the TMT part A or digit span backward task during vagus nerve stimulation in patients with drug-resistant epilepsy

    Journal: Frontiers in Psychiatry

    doi: 10.3389/fpsyt.2024.1349201

    Observed TMT-A, TMT-B and DB z scores and fitted curve based on linear mixed-effects model for all patients over time following VNS therapy. The baseline z scores for TMT-A, TMT-B and DB were − 1.42, −2.01, and − 0.53, respectively. AVG = Average.
    Figure Legend Snippet: Observed TMT-A, TMT-B and DB z scores and fitted curve based on linear mixed-effects model for all patients over time following VNS therapy. The baseline z scores for TMT-A, TMT-B and DB were − 1.42, −2.01, and − 0.53, respectively. AVG = Average.

    Techniques Used:


    Figure Legend Snippet:

    Techniques Used: Functional Assay, Magnetic Resonance Imaging



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    Image Search Results


    Observed TMT-A, TMT-B and DB z scores and fitted curve based on linear mixed-effects model for all patients over time following VNS therapy. The baseline z scores for TMT-A, TMT-B and DB were − 1.42, −2.01, and − 0.53, respectively. AVG = Average.

    Journal: Frontiers in Psychiatry

    Article Title: Complex executive functions assessed by the trail making test (TMT) part B improve more than those assessed by the TMT part A or digit span backward task during vagus nerve stimulation in patients with drug-resistant epilepsy

    doi: 10.3389/fpsyt.2024.1349201

    Figure Lengend Snippet: Observed TMT-A, TMT-B and DB z scores and fitted curve based on linear mixed-effects model for all patients over time following VNS therapy. The baseline z scores for TMT-A, TMT-B and DB were − 1.42, −2.01, and − 0.53, respectively. AVG = Average.

    Article Snippet: Changes in TMT-A, TMT-B, and DB z scores over time (months) were analyzed using a multilevel mixed-effects linear regression (LME) model with robust standard errors in Stata version 17.0 (StataCorp, College Station, Texas, United States).

    Techniques:

    Journal: Frontiers in Psychiatry

    Article Title: Complex executive functions assessed by the trail making test (TMT) part B improve more than those assessed by the TMT part A or digit span backward task during vagus nerve stimulation in patients with drug-resistant epilepsy

    doi: 10.3389/fpsyt.2024.1349201

    Figure Lengend Snippet:

    Article Snippet: Changes in TMT-A, TMT-B, and DB z scores over time (months) were analyzed using a multilevel mixed-effects linear regression (LME) model with robust standard errors in Stata version 17.0 (StataCorp, College Station, Texas, United States).

    Techniques: Functional Assay, Magnetic Resonance Imaging