Seamless energy balance monitoring device
Seamless energy balance monitoring device
批准号:
7745663
负责人:
Steven Francis LeBoeuf
金额:
$10.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-07-06 至 2010-06-30
关键词:
AccountingActivities of Daily LivingAddressAlgorithmsBenchmarkingBody TemperatureBreathingCaloriesCessation of lifeClinicalClinical ResearchClipCommunicationDataData CollectionDevicesDietEarEnergy MetabolismEvaluationFeasibility StudiesFeedbackGoalsHandHealthHealthcareIndirect CalorimetryIndividualLeftLifeLife StyleMarketingMeasuresMedicalModelingMonitorPerformancePersonal CommunicationPersonsPhasePhysical activityPhysiologic MonitoringPhysiologicalPreventiveProcessPulse RatesReportingRisk FactorsSmall Business Innovation Research GrantSolutionsStatistical ModelsStressTechnologyTestingTherapeuticTimeUnited States National Institutes of HealthUniversitiesconsumer demanddesigndisorder preventionempoweredenergy balancefitnessmonitoring deviceprogramsprototypepublic health relevancesedentarysensortooluser-friendly
中文摘要
描述(申请人提供):尽管市场对消费者友好型能量平衡监测器的需求日益增长,但目前还没有商业上可用的解决方案来满足消费者的需求。Valencell的长期目标是为健康和健身监测提供一个无缝、可穿戴的平台,该平台自主、用户友好、日常使用舒适、在多种生活活动中准确,并能够向用户提供可操作的反馈。这个预防保健平台将为最终用户、他们的医生和他们的培训师提供易于使用、可操作的反馈,促进健康的生活方式。Valencell此前开发了Healthset(R),并对其进行了阿尔法测试,这是一种自主可穿戴的健康和健身监测器,可以测量生命体征和体力活动,并在智能手机上以图形形式显示这些信息。虽然Healthset(R)测量不同强度水平的体力活动,但它不包含从原始体力活动数据处理能量消耗评估的算法。实验证据表明,Valencell的Healthset(R)算法可以扩展,为日常生活活动提供准确的能量消耗评估,适用于临床、学术和消费者应用。因此,这项第一阶段可行性研究的具体目标是验证Healthset(R)作为一种无缝的能源消耗监测工具。在NIH第一阶段计划中,Valencell和杜克大学的合作者将:1。)制造为测量能源消耗而优化的预先设计的Healthset单元,2.)在10人间接量热法研究中收集与时间相关的Healthset(R)数据,3.)生成能源消耗的统计模型,以及4.)在第二项临床研究中验证了这些模型。这一第一阶段计划将提供用于多种体育活动的Healthset(R)能量消耗监测器的初步性能规格。评估卡路里消耗的机会也将在最终报告中讨论,以建立一个完整的能量平衡监测平台。公共卫生相关性:可改变的健康风险因素,如高压力、不良饮食和久坐不动的生活方式,占全球所有医疗费用的25%,每年导致数百万人死亡。无缝、准确、实时的个人健康和健身反馈可以让个人过上更健康的生活,节省数万亿的医疗费用。这一期SBIR提出的能量平衡监测技术将让健康生活变得更容易、更有效、更实惠。
英文摘要
DESCRIPTION (provided by applicant): Despite the growing market demand for a consumer-friendly energy balance monitor, there are no commercially available solutions satisfying consumer needs. Valencell's long-term goal is to provide a seamless, wearable platform for health and fitness monitoring that is autonomous, user-friendly, comfortable for daily use, accurate in multiple life activities, and able to provide actionable feedback to the user. This preventive healthcare platform will provide end users, their doctors, and their trainers with easy-to-use, actionable feedback promoting a healthy lifestyle. Valencell has previously developed and alpha-tested the Healthset(R), an autonomous wearable health and fitness monitor that measures vital signs and physical activity and presents this information graphically on a smartphone. While the Healthset(R) measures physical activity of various intensity levels, it does not contain algorithms for processing energy expenditure assessments from raw physical activity data. Experimental evidence suggests that Valencell's Healthset(R) algorithms can be augmented to provide accurate energy expenditure assessments for daily life activities, suitable for clinical, academic, and consumer applications. Thus, the specific goal of this Phase I feasibility study is to validate the Healthset(R) as a seamless energy expenditure monitoring tool. In this NIH Phase I program, Valencell and collaborators at the Duke University will: 1.) fabricate pre-designed Healthset units optimized for measuring energy expenditure, 2.) collect time-correlated Healthset(R) data in a 10-person indirect calorimetry study, 3.) generate statistical models for energy expenditure, and 4.) validate these models in a second clinical study. This Phase I program will deliver the preliminary performance specifications for the Healthset(R) energy expenditure monitor used in multiple physical activities. The opportunity for assessing calories consumed will also be addressed in the final report for a complete energy balance monitoring platform. PUBLIC HEALTH RELEVANCE: Modifiable health risk factors such as high stress, poor diet, and a sedentary lifestyle account for 25% of all medical expenses and millions of deaths per year worldwide. Seamless, accurate, real-time feedback on personal health and fitness can empower individuals to live healthier lives, saving trillions in medical expenses. The energy balance monitoring technology proposed in this Phase 1 SBIR would make healthy living easier, more effective, and more affordable.
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Seamless Energy Balance Monitoring Solution for Personal Fitness and Clinical Res
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批准号:8249052
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项目类别:
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资助金额:$62.2万
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财政年份:2009
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负责人:Steven Francis LeBoeuf
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依托单位:
Seamless Energy Balance Monitoring Solution for Personal Fitness and Clinical Res
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批准号:8124091
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项目类别:
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资助金额:$44.35万
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财政年份:2009
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负责人:Steven Francis LeBoeuf
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依托单位:
Wearable Photoelectrocatalytic Personal Environmental Exposure Monitor
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批准号:7676386
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项目类别:
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资助金额:$8.82万
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财政年份:2007
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负责人:Steven Francis LeBoeuf
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依托单位:
Wearable Photoelectrocatalytic Personal Environmental Exposure Monitor
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批准号:7363054
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项目类别:
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资助金额:$28.35万
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财政年份:2007
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负责人:Steven Francis LeBoeuf
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依托单位:
海外基金