Infants on the move: bibliometric analyses of observational vs. digital means of screening infant development

IF 2.6 3区 医学 Q2 BEHAVIORAL SCIENCES
Hannah Varkey, Ha Phan, Phyllis Kittler, Anne Gordon, Elizabeth B. Torres
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Abstract

Neurodevelopmental disorders are on the rise, yet their average diagnosis is after 4.5 years old. This delay is partly due to reliance on social-communication criteria, which require longer maturation than scaffolding elements of neuromotor control. Much earlier criteria could include reflexes, monitoring of the quality of spontaneous movements from central pattern generators and maturation of intentional movements and their overall sensation. General Movement Assessment (GMA) studies these features using observational means, but the last two decades have seen a surge in digital tools that enable non-invasive, continuous tracking of infants’ spontaneous movements. Despite their importance, these tools are not yet broadly used. In this work, using CiteSpace, VOSViewer and SciMAT software, we investigate the evolution of the literature on GMA and the methods in use today, to estimate how digital techniques are being adopted. To that end, we created maps of key word co-occurrence networks, co-author networks, document co-citation analysis and strategic diagrams of 295 publications based on a search in the Web of Science, Dimensions and SCOPUS databases for: ‘general movement assessment’ OR ‘general movements assessment’. The nodes on the maps were categorized by size, cluster groups and year of publication. We found that the state-of-the-art methodology to diagnose neurodevelopmental disorders still relies heavily on observation. Several groups in classical GMA research have branched out to incorporate new techniques, but few groups have adopted digital means. We report on additional analyses of methods and biosensors usage and propose that combining traditional clinical observation criteria with digital means may allow earlier diagnoses and interventional therapies for infants.

移动中的婴儿:对婴儿发育筛查的观察手段和数字手段的文献计量分析
神经发育障碍呈上升趋势,但其平均诊断年龄却在 4.5 岁之后。造成这种延误的部分原因是依赖于社会交往标准,而社会交往标准比神经运动控制的支架要素需要更长的成熟期。更早的标准可以包括反射、对来自中枢模式发生器的自发运动质量的监测以及有意运动及其整体感觉的成熟。一般运动评估(GMA)通过观察手段对这些特征进行研究,但在过去的二十年里,数字工具的发展突飞猛进,能够对婴儿的自发运动进行非侵入式的连续跟踪。尽管这些工具非常重要,但尚未得到广泛应用。在这项工作中,我们利用 CiteSpace、VOSViewer 和 SciMAT 软件,调查了有关 GMA 的文献演变情况和目前使用的方法,以估计数字技术的采用情况。为此,我们根据在 Web of Science、Dimensions 和 SCOPUS 数据库中对 295 篇出版物的搜索,绘制了关键词共现网络图、合著者网络图、文献共引分析图和战略图:一般运动评估 "或 "一般运动评估"。地图上的节点按规模、群组和出版年份进行了分类。我们发现,诊断神经发育障碍的最先进方法仍然主要依赖于观察。在经典的全身运动分析研究中,有几个小组已经开始采用新技术,但很少有小组采用数字手段。我们报告了对各种方法和生物传感器使用情况的补充分析,并提出将传统的临床观察标准与数字化手段相结合,可以更早地对婴儿进行诊断和干预治疗。
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来源期刊
Frontiers in Integrative Neuroscience
Frontiers in Integrative Neuroscience Neuroscience-Cellular and Molecular Neuroscience
CiteScore
4.60
自引率
2.90%
发文量
148
审稿时长
14 weeks
期刊介绍: Frontiers in Integrative Neuroscience publishes rigorously peer-reviewed research that synthesizes multiple facets of brain structure and function, to better understand how multiple diverse functions are integrated to produce complex behaviors. Led by an outstanding Editorial Board of international experts, this multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. Our goal is to publish research related to furthering the understanding of the integrative mechanisms underlying brain functioning across one or more interacting levels of neural organization. In most real life experiences, sensory inputs from several modalities converge and interact in a manner that influences perception and actions generating purposeful and social behaviors. The journal is therefore focused on the primary questions of how multiple sensory, cognitive and emotional processes merge to produce coordinated complex behavior. It is questions such as this that cannot be answered at a single level – an ion channel, a neuron or a synapse – that we wish to focus on. In Frontiers in Integrative Neuroscience we welcome in vitro or in vivo investigations across the molecular, cellular, and systems and behavioral level. Research in any species and at any stage of development and aging that are focused at understanding integration mechanisms underlying emergent properties of the brain and behavior are welcome.
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