phat 22(5): e5

Editorial

The 100 most cited articles on wearable technology in the area of Medical Informatics: A bibliometric analysis using Web of Science

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  • @ARTICLE{10.4108/eetpht.v8i5.3171,
        author={William Castillo-Gonzalez and Hector Julio Pi\`{o}era-Castro and Adri\^{a}n Alejandro Vit\^{o}n-Castillo and Carlos Oscar Lepez and Javier Gonzalez-Argote and Mabel Cecilia Bonardi and Carlos Alberto G\^{o}mez Cano},
        title={The 100 most cited articles on wearable technology in the area of Medical Informatics: A bibliometric analysis using Web of Science},
        journal={EAI Endorsed Transactions on Pervasive Health and Technology},
        volume={8},
        number={5},
        publisher={EAI},
        journal_a={PHAT},
        year={2022},
        month={11},
        keywords={wearable technologies, Healthcare, wearable sensors, bibliometric analysis, VOSviewer},
        doi={10.4108/eetpht.v8i5.3171}
    }
    
  • William Castillo-Gonzalez
    Hector Julio Piñera-Castro
    Adrián Alejandro Vitón-Castillo
    Carlos Oscar Lepez
    Javier Gonzalez-Argote
    Mabel Cecilia Bonardi
    Carlos Alberto Gómez Cano
    Year: 2022
    The 100 most cited articles on wearable technology in the area of Medical Informatics: A bibliometric analysis using Web of Science
    PHAT
    EAI
    DOI: 10.4108/eetpht.v8i5.3171
William Castillo-Gonzalez1, Hector Julio Piñera-Castro2,*, Adrián Alejandro Vitón-Castillo3, Carlos Oscar Lepez1, Javier Gonzalez-Argote4, Mabel Cecilia Bonardi5, Carlos Alberto Gómez Cano6
  • 1: University of Buenos Aires
  • 2: Universidad de Ciencias Médicas de la Habana
  • 3: Universidad de Ciencias Médicas de Pinar del Río
  • 4: Universidad Abierta Interamericana
  • 5: Fundación Salud, Ciencia y Tecnologia
  • 6: Corporación Unificada Nacional de Educación Superior
*Contact email: adrianviton964@gmail.com

Abstract

INTRODUCTION: Wearable technology has revolutionized healthcare in recent years thanks to its ability to collect accurate data on the health status of patients. Wearable devices, such as smartwatches, wristbands, and fitness trackers, are designed to be worn on the body and can measure various body parameters, including heart rate, blood pressure, physical activity, and sleep quality. OBJECTIVES: To analyze the 100 most cited articles on wearable technology in the area of Medical Informatics. METHODS: The Web of Science database carried out a bibliometric analysis of the 100 most cited articles on wearable technology in the area of Medical Informatics. The objective is to identify the main trends and themes in this area of research. RESULTS: There is an increasing trend in the number of papers published and citations received in recent years, with some years with low publications but high citations and others with high publications but low citations. A positive and statistically significant correlation (r = 0.66; P<0.001) was found between the number of documents published by the authors and the number of citations they received. The analysis of publications by country, reveals that the United States is the most productive country, with 49 documents, followed by the United Kingdom, China, and Italy. However, when considering the impact of the research, other countries such as Canada, Germany, China, and South Korea have significantly high average citations per paper and leadership. CONCLUSION: The results of this study have several important implications for the research and development of wearable technology in the area of Medical Informatics. The increase in the number of papers published and citations received in recent years suggests a growing interest and advances in research. This indicates an increasing need to develop innovative real-time solutions for measuring and monitoring physical activity and health.