LED light sources with a sun-like emission spectrum for children’s institutions

Valery A. Kaptsov, V. N. Deinego
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(it includes 454 billion from the federal budget). In total, it is planned to build 1,300 educational institutions, which will have more than 1 million places. In addition to the construction of new schools, the plan provides for the implementation of a program of capital repairs and technical renovation of existing general education institutions by the end of 2026: it will include 7,300 buildings. The pace of capital renovations has also accelerated in 2022–2023: three thousand buildings will be renovated, mainly in rural areas. By 2024, all 27 thousand rural schools, according to modern requirements, will be equipped with modern equipment. In modern schools, it is planned to equip computer classes with modern computing equipment, and energy saving plans provide for the widespread use of LED lighting. The reasons for the negative effects of the light spectrum of LED lighting and personal computer monitors on the health \nof children and adolescents, in particular the increase in myopia, have not yet been sufficiently studied. \n Analytical, sociological, and statistical methods were used. \nThe relationship between physiological and behavioural factors that may lead to decreased vision is described. The restructuring of the work of the visual analyzer, associated with the selection of information in accordance with the models proposed in the social environment has been suggested to contribute to the formation \nof myopia; with a decrease in one’s own search activity with increased myopia; with an increase in the functioning of internal information processing systems and \na decrease in the systems of perception and implementation of actions. \nLimitations. The study was limited to the area of study of the subject of research, materials from the Scopus, Web of Science, MedLine, The Cochrane Library, EMBASE, Global Health, CyberLeninka, RSCI databases and our own experiments. \nConclusion. The spectral composition of artificial light and its intensity give rise to the prerequisites for the development of myopia or another functional-structural response in the variety of ganglion, amacrine cells, and receptors in the visual analyzer of multicellular animals. The narrow and incomplete spectrum of light from domestic LED lamps cannot be a good choice for the prevention of myopia in children. Considering the diversity of opsins in the human visual analyzer, we have developed and manufactured an artificial, light source using LEDs and phosphors, the spectrum of which considers the spectral photosensitivity of opsins in the human eye and is close as possible to the spectrum of sunlight at a correlated colour temperature of about 4000 and 3000 K. The first one has now been manufactured a batch of lamps, the spectral composition of the emitted light of which has no analogues and is ahead of the world’s best samples in terms of spectrum composition and efficiency level. The spectrum of this light source was demonstrated in a presentation at the Erisman Readings 2023. To elucidate the biological mechanisms of the development of myopia in children, additional efforts are needed within the framework of a new scientific direction - evolutionary hygiene. This will make it possible to establish how small changes in the composition of the light spectrum (emission in the region of 410–450 nm, dip in the region of 480 nm and absence of 380 nm) of artificial sources influenced catastrophic (chaotic) changes at the genetic level of humans and the entire living world.","PeriodicalId":13009,"journal":{"name":"Hygiene and sanitation","volume":"42 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-04-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Hygiene and sanitation","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.47470/0016-9900-2024-103-3-273-282","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0

Abstract

The article looks more like a scientific-theoretical than an experimental one, so it is proposed to remove the IMRAD structure, especially since it is given only in the summary, but not in the article itself. “In Russia, under the national project “Education”, a large-scale program for the construction of schools is underway. About 700 schools have already been built, and if in general for all programs, this is 900 schools..... Many schools have swimming pools, modern canteens...” noted the head of the relevant ministry at a meeting with the President of the Russian Federation Vladimir Putin at the beginning of 2023. In total, about 750 billion rubles were allocated to finance the program for the construction of new schools. (it includes 454 billion from the federal budget). In total, it is planned to build 1,300 educational institutions, which will have more than 1 million places. In addition to the construction of new schools, the plan provides for the implementation of a program of capital repairs and technical renovation of existing general education institutions by the end of 2026: it will include 7,300 buildings. The pace of capital renovations has also accelerated in 2022–2023: three thousand buildings will be renovated, mainly in rural areas. By 2024, all 27 thousand rural schools, according to modern requirements, will be equipped with modern equipment. In modern schools, it is planned to equip computer classes with modern computing equipment, and energy saving plans provide for the widespread use of LED lighting. The reasons for the negative effects of the light spectrum of LED lighting and personal computer monitors on the health of children and adolescents, in particular the increase in myopia, have not yet been sufficiently studied. Analytical, sociological, and statistical methods were used. The relationship between physiological and behavioural factors that may lead to decreased vision is described. The restructuring of the work of the visual analyzer, associated with the selection of information in accordance with the models proposed in the social environment has been suggested to contribute to the formation of myopia; with a decrease in one’s own search activity with increased myopia; with an increase in the functioning of internal information processing systems and a decrease in the systems of perception and implementation of actions. Limitations. The study was limited to the area of study of the subject of research, materials from the Scopus, Web of Science, MedLine, The Cochrane Library, EMBASE, Global Health, CyberLeninka, RSCI databases and our own experiments. Conclusion. The spectral composition of artificial light and its intensity give rise to the prerequisites for the development of myopia or another functional-structural response in the variety of ganglion, amacrine cells, and receptors in the visual analyzer of multicellular animals. The narrow and incomplete spectrum of light from domestic LED lamps cannot be a good choice for the prevention of myopia in children. Considering the diversity of opsins in the human visual analyzer, we have developed and manufactured an artificial, light source using LEDs and phosphors, the spectrum of which considers the spectral photosensitivity of opsins in the human eye and is close as possible to the spectrum of sunlight at a correlated colour temperature of about 4000 and 3000 K. The first one has now been manufactured a batch of lamps, the spectral composition of the emitted light of which has no analogues and is ahead of the world’s best samples in terms of spectrum composition and efficiency level. The spectrum of this light source was demonstrated in a presentation at the Erisman Readings 2023. To elucidate the biological mechanisms of the development of myopia in children, additional efforts are needed within the framework of a new scientific direction - evolutionary hygiene. This will make it possible to establish how small changes in the composition of the light spectrum (emission in the region of 410–450 nm, dip in the region of 480 nm and absence of 380 nm) of artificial sources influenced catastrophic (chaotic) changes at the genetic level of humans and the entire living world.
用于儿童机构的具有类似太阳发射光谱的 LED 光源
这篇文章看起来更像是一篇科学理论文章,而不是一篇实验文章,因此建议删除 IMRAD 结构,特别是因为它只在摘要中给出,而不是在文章本身中。"在俄罗斯,根据国家 "教育 "项目,正在实施一项大规模的学校建设计划。目前已建成约 700 所学校,如果从所有计划的总体来看,则为 900 所.....。许多学校都有游泳池、现代化食堂...... "相关部委负责人在 2023 年初与俄罗斯联邦总统弗拉基米尔-普京会晤时指出。为资助新学校建设计划总共拨款约 7500 亿卢布。(其中包括来自联邦预算的 4 540 亿卢布)。计划总共建设 1300 所教育机构,将提供 100 多万个学位。除新建学校外,该计划还规定在 2026 年底前对现有普通教育机构实施基本建设维修和技术改造计划:这将包括 7 300 栋建筑。2022-2023 年,基本建设翻新的步伐也加快了:将翻新 3 000 座建筑,主要是在农村地区。到 2024 年,所有 2.7 万所农村学校都将按照现代要求配备现代化设备。在现代化学校中,计划为计算机教室配备现代化的计算机设备,节能计划规定广泛使用 LED 照明。LED 照明和个人电脑显示器的光谱对儿童和青少年的健康产生负面影响,特别是近视度数增加的原因尚未得到充分研究。 研究采用了分析、社会学和统计学方法。描述了可能导致视力下降的生理和行为因素之间的关系。研究认为,视觉分析器工作的重组,与根据社会环境中提出的模式选择信息有关,有助于近视的形成;随着近视度数的增加,自身搜索活动减少;内部信息处理系统的功能增加,感知和行动执行系统减少。局限性。本研究仅限于研究对象的研究领域,材料来自 Scopus、Web of Science、MedLine、The Cochrane Library、EMBASE、Global Health、CyberLeninka、RSCI 数据库和我们自己的实验。结论人造光的光谱成分及其强度为多细胞动物视觉分析器中的各种神经节细胞、肾上腺素细胞和感受器产生近视或其他功能结构反应提供了先决条件。家用 LED 灯的光谱狭窄且不完整,不能很好地预防儿童近视。考虑到人类视觉分析器中光蛋白的多样性,我们利用 LED 和荧光粉开发并制造了一种人工光源,其光谱考虑了人眼中光蛋白的光谱光敏性,并尽可能接近太阳光光谱,相关色温约为 4000 和 3000 K。这种光源的光谱在 "2023 年埃里斯曼读书会"(Erisman Readings 2023)上进行了演示。为了阐明儿童近视发展的生物机制,需要在新的科学方向--进化卫生学--的框架内做出更多努力。这将有可能确定人工光源的光谱组成(410-450 纳米区域的发射、480 纳米区域的下降和 380 纳米区域的缺失)的微小变化是如何影响人类和整个生物世界基因水平的灾难性(混乱)变化的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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