移动传感促进癌症患者肿瘤建模:一个概念框架

Philip I. Chow , Devin G. Roller , Mehdi Boukhechba , Kelly M. Shaffer , Lee M. Ritterband , Matthew J. Reilley , Tri M. Le , Paul R. Kunk , Todd W. Bauer , Daniel G. Gioeli
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引用次数: 0

摘要

随着移动和可穿戴设备的不断普及,利用人们的移动传感数据来提高我们对其细胞和生物基础疾病的理解具有巨大但尚未实现的潜力。肿瘤建模方面的突破性技术创新,如三维肿瘤微环境系统(TMES),使研究人员能够在一个密切模仿人体的受控环境中研究肿瘤细胞的行为。虽然已知患者的健康行为会通过循环激素(皮质醇、褪黑激素)影响肿瘤生长,但要在TMES或类似的肿瘤建模系统中绘制真实的肿瘤模型,捕捉这一过程是一个挑战。本文的目标是提出一个概念框架,将来自数字健康、数据科学、肿瘤学和细胞信号的研究人员联合起来,共同致力于通过移动传感改善癌症患者的治疗结果。为了支持我们的框架,现有的研究表明,使用人们的移动传感数据来近似他们的潜在激素水平是可行的。此外,研究发现,当皮质醇根据患者的实际皮质醇水平在TMES中循环时,与皮质醇水平处于正常健康水平时相比,胰腺肿瘤细胞的生长显著增加。综上所述,这些研究的结果表明,通过移动传感对人的激素水平进行持续监测,可以通过告知如何引入激素来改进TMES实验。我们希望我们的框架能够激励社会心理科学领域的数字健康研究人员,考虑如何将他们的专业知识应用于从行为到细胞的各个层面的研究成果。
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Mobile sensing to advance tumor modeling in cancer patients: A conceptual framework

As mobile and wearable devices continue to grow in popularity, there is strong yet unrealized potential to harness people's mobile sensing data to improve our understanding of their cellular and biologically-based diseases. Breakthrough technical innovations in tumor modeling, such as the three dimensional tumor microenvironment system (TMES), allow researchers to study the behavior of tumor cells in a controlled environment that closely mimics the human body. Although patients' health behaviors are known to impact their tumor growth through circulating hormones (cortisol, melatonin), capturing this process is a challenge to rendering realistic tumor models in the TMES or similar tumor modeling systems. The goal of this paper is to propose a conceptual framework that unifies researchers from digital health, data science, oncology, and cellular signaling, in a common cause to improve cancer patients' treatment outcomes through mobile sensing. In support of our framework, existing studies indicate that it is feasible to use people's mobile sensing data to approximate their underlying hormone levels. Further, it was found that when cortisol is cycled through the TMES based on actual patients' cortisol levels, there is a significant increase in pancreatic tumor cell growth compared to when cortisol levels are at normal healthy levels. Taken together, findings from these studies indicate that continuous monitoring of people's hormone levels through mobile sensing may improve experimentation in the TMES, by informing how hormones should be introduced. We hope our framework inspires digital health researchers in the psychosocial sciences to consider how their expertise can be applied to advancing outcomes across levels of inquiry, from behavioral to cellular.

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来源期刊
CiteScore
6.50
自引率
9.30%
发文量
94
审稿时长
6 weeks
期刊介绍: Official Journal of the European Society for Research on Internet Interventions (ESRII) and the International Society for Research on Internet Interventions (ISRII). The aim of Internet Interventions is to publish scientific, peer-reviewed, high-impact research on Internet interventions and related areas. Internet Interventions welcomes papers on the following subjects: • Intervention studies targeting the promotion of mental health and featuring the Internet and/or technologies using the Internet as an underlying technology, e.g. computers, smartphone devices, tablets, sensors • Implementation and dissemination of Internet interventions • Integration of Internet interventions into existing systems of care • Descriptions of development and deployment infrastructures • Internet intervention methodology and theory papers • Internet-based epidemiology • Descriptions of new Internet-based technologies and experiments with clinical applications • Economics of internet interventions (cost-effectiveness) • Health care policy and Internet interventions • The role of culture in Internet intervention • Internet psychometrics • Ethical issues pertaining to Internet interventions and measurements • Human-computer interaction and usability research with clinical implications • Systematic reviews and meta-analysis on Internet interventions
期刊最新文献
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