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光的非视觉生理效应研究文献分析

已有 1117 次阅读 2022-5-24 05:48 |个人分类:信息分析|系统分类:科研笔记


基于视黑素EDI的非视觉光照量推荐

https://blog.sciencenet.cn/blog-1197804-1339890.html


文献分析 

http://www.pubmedplus.cn/P/SearchQuickResult?wd=227d41fd-347d-4758-91b7-da6297183b24


01.无法确认1 篇1.667%
02.20211 篇1.667%
03.20191 篇1.667%
04.20173 篇5.000%
05.20161 篇1.667%
06.20152 篇3.333%
07.20144 篇6.667%
08.20133 篇5.000%
09.20124 篇6.667%
10.20114 篇6.667%
11.20102 篇3.333%
12.20092 篇3.333%
13.20081 篇1.667%
14.20074 篇6.667%
15.20061 篇1.667%
16.20054 篇6.667%
17.20044 篇6.667%
18.20032 篇3.333%
19.20021 篇1.667%
20.20011 篇1.667%
21.19991 篇1.667%
22.19961 篇1.667%
23.19951 篇1.667%
24.19931 篇1.667%
25.19911 篇1.667%
26.19901 篇1.667%
27.19881 篇1.667%
28.19871 篇1.667%
29.19851 篇1.667%
30.19831 篇1.667%
31.19781 篇1.667%
32.19751 篇1.667%
33.19741 篇1.667%
34.19581 篇1.667%
01.j neurosci6 篇10.000%
02.j neurophysiol4 篇6.667%
03.j physiol3 篇5.000%
04.plos one3 篇5.000%
05.brain res2 篇3.333%
06.cereb cortex2 篇3.333%
07.j comp physiol a neuroethol sens neural behav physiol2 篇3.333%
08.j exp biol2 篇3.333%
09.nat neurosci2 篇3.333%
10.vis neurosci2 篇3.333%
01.美国20 篇33.333%
02.英国9 篇15.000%
03.德国4 篇6.667%
04.日本3 篇5.000%
05.法国2 篇3.333%
06.芬兰2 篇3.333%
07.加拿大2 篇3.333%
08.瑞士2 篇3.333%
09.意大利2 篇3.333%
10.中国1 篇1.667%
01.中国昆明1 篇1.667%
01.Light60 篇100.000%
02.Photic Stimulation60 篇100.000%
03.Animals48 篇80.000%
04.Retina23 篇38.333%
05.Adaptation, Physiological20 篇33.333%
06.Male17 篇28.333%
07.Female14 篇23.333%
08.Mice14 篇23.333%
09.Humans12 篇20.000%
10.Visual Pathways11 篇18.333%




精确代谢组学:迈向可持久的代谢组学至关重要的一步

https://blog.sciencenet.cn/blog-3356615-1339873.html

文献分析

http://www.pubmedplus.cn/P/SearchQuickResult?wd=4cb3bc14-e931-483c-be5e-075a393f8a30


01.无法确认1 篇1.493%
02.20221 篇1.493%
03.202115 篇22.388%
04.202012 篇17.910%
05.20195 篇7.463%
06.20186 篇8.955%
07.20173 篇4.478%
08.20168 篇11.940%
09.20155 篇7.463%
10.20145 篇7.463%
11.20132 篇2.985%
12.20122 篇2.985%
13.20092 篇2.985%
01.aging (albany ny)4 篇5.970%
02.j proteome res4 篇5.970%
03.exp gerontol3 篇4.478%
04.int j mol sci3 篇4.478%
05.sci rep3 篇4.478%
06.aging cell2 篇2.985%
07.biogerontology2 篇2.985%
08.exp eye res2 篇2.985%
09.j chromatogr b analyt technol biomed life sci2 篇2.985%
10.j clin endocrinol metab2 篇2.985%
01.美国23 篇34.328%
02.中国8 篇11.940%
03.英国7 篇10.448%
04.德国5 篇7.463%
05.丹麦4 篇5.970%
06.法国4 篇5.970%
07.加拿大4 篇5.970%
08.日本4 篇5.970%
09.韩国3 篇4.478%
10.澳大利亚2 篇2.985%
01.中国南京2 篇2.985%
02.中国北京1 篇1.493%
03.中国哈尔滨1 篇1.493%
04.中国杭州1 篇1.493%
05.中国宁波1 篇1.493%
06.中国济南1 篇1.493%
07.中国广州1 篇1.493%
01.Aging67 篇100.000%
02.Metabolome67 篇100.000%
03.Metabolomics67 篇100.000%
04.Animals39 篇58.209%
05.Male37 篇55.224%
06.Humans34 篇50.746%
07.Female27 篇40.299%
08.Biomarkers23 篇34.328%
09.Aged15 篇22.388%
10.Mice14 篇20.896%











福如瑶母三千岁

寿比彭祖八百春

传说故事中的彭祖在历史上真实存在么,是否也活了880岁?

据《太平广记》、《神仙传》等典籍记载,彭祖,姓篯名铿,是上古时期颛顼帝的玄孙,到殷朝时期,彭祖已经七百六十七岁了,还是看不到他有衰老的迹象。为何彭祖能活那么久呢?原来彭祖擅长养生之术,没事就喜欢修行打坐,辟谷服气。另外彭祖还常常服食金丹,他说:“欲举形登天,上补仙官,当用金丹,此九召太一,所以白日升天也。”服食金丹是道教修仙的一种方式,像典籍里记载的马鸣生、左慈等都是这样成仙的。

https://baijiahao.baidu.com/s?id=1732429817387695693&wfr=spider&for=pc

https://baike.baidu.com/item/%E5%BD%AD%E7%A5%96/356366?fr=aladdin

https://baike.baidu.com/item/%E5%BD%AD%E7%A5%96/16708624?fr=aladdin

https://baijiahao.baidu.com/s?id=1707889203612411069&wfr=spider&for=pc

中国古代道教炼丹术名词。包括外丹和内丹两种。外丹是用丹砂与铅、硫黄等原料烧炼而成的黄色药金(还丹)其成品叫金丹 [1]  。服食以后可以使人成仙、长生不老。唐代以前金丹多指外丹。唐宋以后多指修炼内丹即把人体作炉鼎以体内的精、气作药物用神烧炼,使精、气、神凝聚可结成圣胎即可脱胎换骨而成仙。

https://baike.baidu.com/item/%E9%87%91%E4%B8%B9/3415086?fr=aladdin

晋 葛洪 《抱朴子·金丹》:“夫金丹之为物,烧之愈久,变化愈妙;黄金入火,百鍊不消,埋之,毕天不朽。服此二物,鍊人身体,故能令人不老不死。”

https://baike.baidu.com/item/%E9%87%91%E4%B8%B9/31308?fr=aladdin

https://www.zysj.com.cn/zhongyaofang/jindan/index.html

Fu Ruyao's mother is 3000 years old

Eight hundred spring than Peng Zu

Does Peng Zu in the legend really exist in history? Did he also live 880 years old?

According to the records of Taiping Guangji, immortal biography and other ancient books, Peng Zu, surnamed Zhen and named Keng, was the great grandson of emperor Zhuanxu in ancient times. By the Yin Dynasty, Peng Zu was 767 years old, and there was still no sign of his aging. Why did Peng Zu live so long? It turned out that Peng Zu was good at the art of health preservation. He liked to practice and meditate when he had nothing to do. In addition, Peng Zu often took the golden elixir. He said, "if you want to ascend to heaven and supplement immortal officials, you should use the golden elixir. These nine summon too one, so it's necessary to ascend to heaven in the daytime." Taking the golden elixir is a way of cultivating immortality in Taoism, such as Ma Mingsheng and Zuo CI recorded in ancient books.

https://baijiahao.baidu.com/s?id=1732429817387695693&wfr=spider&for=pc

https://baike.baidu.com/item/%E5%BD%AD%E7%A5%96/356366?fr=aladdin

https://baike.baidu.com/item/%E5%BD%AD%E7%A5%96/16708624?fr=aladdin

https://baijiahao.baidu.com/s?id=1707889203612411069&wfr=spider&for=pc

Ancient Chinese Taoist alchemy terms. Including external pill and internal pill. Waidan is a yellow medicine gold (huandan) made of dansha, lead, sulfur and other raw materials. Its finished product is called Jindan [1]. After taking it, people can become immortals and live forever. Before the Tang Dynasty, golden elixirs mostly referred to external elixirs. After the Tang and Song Dynasties, it mostly refers to the cultivation of internal alchemy, that is, the human body is used as a furnace tripod, the essence and Qi in the body are used as drugs, and the spirit is burned and refined with the spirit, so that the essence, Qi and spirit can be condensed into a holy embryo, which can be reborn and become an immortal.

https://baike.baidu.com/item/%E9%87%91%E4%B8%B9/3415086?fr=aladdin

Jin Gehong's baopuzi golden elixir said, "a man's golden elixir is an object. The longer it is burned, the better the change will be. When gold is put into the fire, it will not disappear. If it is buried, it will be immortal. Taking these two objects will bind people's body, so it can make people immortal."

https://baike.baidu.com/item/%E9%87%91%E4%B8%B9/31308?fr=aladdin

https://www.zysj.com.cn/zhongyaofang/jindan/index.html




https://blog.sciencenet.cn/blog-280034-1339908.html

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