Exploring father–adolescent closeness: A random forest approach.

Objective: This study demonstrates how machine learning, specifically random forest, can advance family science, particularly in studying father–child relationships. Background: Fatherhood research faces challenges with fathers' recruitment and retention, complex living arrangements, and lower respo...

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Published in:Family Relations (John Wiley & Sons, Inc.) Vol. 74; no. 3; pp. 1216 - 1233
Main Authors: Pace, Garrett T., Lee, Joyce Y., Ward, Kaitlin P., Chang, Olivia D.
Format: Article
Published: John Wiley & Sons, Inc. Jul2025
Subjects:
Online Access:View this record in EBSCOhost
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      dt: Jul2025
      vid: 74
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      pub: John Wiley & Sons, Inc.
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        185725886
        10.1111/fare.13168
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        atl: Exploring father–adolescent closeness: A random forest approach.
      aug:
        au:
          Pace, Garrett T.
          Lee, Joyce Y.
          Ward, Kaitlin P.
          Chang, Olivia D.
        affil:
          School of Social Work, University of Nevada, Las Vegas, Las Vegas NV
          College of Social Work, The Ohio State University, Columbus OH
          School of Social Work, University of Michigan, Ann Arbor MI
      su:
        Father-child relationship
        Adolescence
        Artificial intelligence
        Machine learning
        Random forest algorithms
      sug:
        subj:
          Father-child relationship
          Adolescence
          Artificial intelligence
          Machine learning
          Random forest algorithms
      keyword:
        adolescence
        artificial intelligence
        children's perspectives
        father–child relationships
        machine learning
        random forest
        adolescence
        artificial intelligence
        children's perspectives
        father–child relationships
        machine learning
        random forest
      ab: Objective: This study demonstrates how machine learning, specifically random forest, can advance family science, particularly in studying father–child relationships. Background: Fatherhood research faces challenges with fathers' recruitment and retention, complex living arrangements, and lower response rates compared to mothers. Machine learning, a tool of artificial intelligence, effectively examines large and complex data sets, handles missing data, and identifies relationships between predictors and outcomes. Thus, machine learning can help mitigate the methodological challenges of studying fathers and father–child relationships. Method: We used random forest to predict adolescent‐reported father–adolescent closeness in the Future of Families and Child Wellbeing Study (n = 2,927), using 131 predictors measured during the first decade of childhood. Results: Fathers' residential status with the child was the strongest predictor of father–adolescent closeness. Using random forest results to inform variable selection, we demonstrated how random forest can enhance the development and performance metrics of regression models. Conclusion: This study highlights the utility of random forest for studying complex questions, such as how family contexts predict adolescents' perceptions of their father–child relationships. Implications: Random forest is a feasible and useful approach for applied family scientists to incorporate artificial intelligence into their research, moving the field in new and meaningful directions.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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