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Inexpensive Home Infrared Living/Environment Sensor with Regional Thermal Information for Infant Physical and Psychological Development

机译:廉价的家庭红外线生活/环境传感器具有区域热信息用于婴幼儿身体和心理发展

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摘要

The use of home-based image sensors for biological and environmental monitoring provides novel insight into health and development but it is difficult to evaluate people during their normal activities in their home. Therefore, we developed a low-cost infrared (IR) technology-based motion, location, temperature and thermal environment detection system that can be used non-invasively for long-term studies in the home environment. We tested this technology along with the associated analysis algorithm to visualize the effects of parental care and thermal environment on developmental state change in a non-human primate model, the common marmoset (Callithrix jacchus). To validate this system, we first compared it to a manual analysis technique and we then assessed the development of circadian rhythms in common marmosets from postnatal day 15–45. The semi-automatically tracked biological indices of locomotion velocity (BV) and body surface temperature (BT) and the potential psychological index of place preference toward the door (BD), showed age-dependent shifts in circadian phase patterns. Although environmental variables appeared to affect circadian rhythm development, principal component analysis and signal superimposing imaging methods revealed a novel phasic pattern of BD-BT correlation dayight switching in animals older than postnatal day 38 (approximately equivalent to one year of age in humans). The origin of this switch was related to earlier development of body temperature (BT) rhythms and alteration of psychological behavior rhythms (BD) around earlier feeding times. We propose that this cost-effective, inclusive sensing and analytic technique has value for understanding developmental care conditions for which continual home non-invasive monitoring would be beneficial and further suggest the potential to adapt this technique for use in humans.
机译:用于生物和环境监测的家庭图像传感器的使用提供了对健康和发展的新颖洞察力,但很难在他们家中的正常活动中进行评估。因此,我们开发了一种低成本的红外线(IR)技术的运动,位置,温度和热环境检测系统,可用于家庭环境中的长期研究。我们测试了该技术以及相关的分析算法,以可视化父母护理和热环境对非人灵长类动物模型的发育状态变化的影响,普通的MARMOSET(Callithrix Jacchus)。为了验证该系统,我们首先将其与手动分析技术进行了比较,然后我们评估了从后期15-45天的常见Marmosets中的昼夜节律的发展。半自动跟踪的机车速度(BV)和体表温度(BT)的生物索引以及对门(BD)的偏好的潜在心理指标,在昼夜相位模式下表现出年龄依赖性变化。虽然似乎环境变量影响昼夜节律发展,但主成分分析和信号叠加成像方法揭示了比产后第38天年龄较大的动物的BD-BT相关日/夜间切换的新序列模式(大约相当于人类的一年) 。该开关的起源与早期的体温(BT)节奏的早期开发和早期喂养时间的心理行为节奏的改变。我们建议这种成本效益,包容性的传感和分析技术具有理解持续家庭非侵入性监测的发展条件的价值,并进一步建议适应人类使用这种技术的可能性。

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