AROV LADIES ONLINE TOUR
CASTER BY Zai 'ReaperZ' Gaming
Thursday, 16 January 2020
Group A vs Group C
Round 1
Map: Erangel
Mode: TPP Squad
Check In: 9pm 🇲🇾🇵🇭
Check In: 8pm 🇲🇨
Fly: 9.15pm 🇲🇾🇵🇭
Fly: 8.15pm 🇲🇨
Round 2
Map: Miramar
Mode: TPP Squad
Check In: 10pm 🇲🇾🇵🇭
Check In: 9pm 🇲🇨
Fly: 10.15pm 🇲🇾🇵🇭
Fly: 9.15pm 🇲🇨
Round 3
Map: Vikendi
Mode: TPP Squad
Check In: 11pm 🇲🇾🇵🇭
Check In: 10pm 🇲🇨
Fly: 11.15pm 🇲🇾🇵🇭
Fly: 10.15pm 🇲🇨
1. Kroni Esports Diva 🇲🇾
2. NED Faita 🇲🇾
3. Destro MPX Femme 🇲🇾
4. Victim Ladies 🇲🇨
5. Dranix Sheyn 🇲🇨
6. Nara Celebes 🇲🇨
7. Amici Girls 🇵🇭
8. Pure Skill Selenium 🇵🇭
9. DKA 🇵🇭
10. VIPX Ladies 🇲🇾
11. Orange Hera 🇲🇾
12. LNS Babies 🇲🇾
13. Louvre Angels 🇲🇨
14. Elite10 Queen Sweetwolf 🇲🇨
15. NED Khadeejah 🇧🇳
16. 214 Racy Elites 🇵🇭
17. ZeroFcksGiven 🇵🇭
18. SAS 🇻🇳
lns group 在 中央研究院 Academia Sinica Facebook 的最讚貼文
在這個舞台上,會給你們帶來各位滿滿的大!平!台!
雖然我不知道這在說甚麼,但最近中研院細生所周雅惠助研究員的研究團隊,真的是找到了一個可以研究神經細胞的大平台,還發現特殊機制,可望為神經退化疾病設停損點。
研究團隊利用果蠅大腦中處理嗅覺的神經細胞,建立了一套基因篩選平台,透過該平台,未來將可探尋調控神經細胞發育、病變及死亡的各種分子機制。相關研究成果已登上6月份的國際學術期刊《自然通訊》(Nature Communications)。
周雅惠表示:「在研究這些神經細胞發育的過程中,我們發現大腦確實存在一套停損保護機制,防止神經細胞進行非計畫性的死亡。本次研究建置的基因篩選平台,除了讓我們日後有機會找出這個停損機制,後續也可供相關領域的科學家探索神經細胞運作的各種機制。」
[English Version]
Recently, a research team led by Dr. Ya-Hui Chou, an Assistant Research Fellow in the Institute of Cellular and Organismic Biology at Academia Sinica, has identified fly olfactory local interneurons (LNs) as a model system to investigate neural cell death control. The study systematically profiles the development of different types of fly olfactory local interneurons and identifies a group of interneurons that undergo tightly controlled cell death. The result was published in Nature Communications on June 8, 2018.
This study provides a blueprint for LN emergence and integration into the adult olfactory circuit. In addition, Chou's group builds a batch of genetic tools and establishes a novel platform for studies of LN function and dysfunction. "The most exciting finding is that a group of interneurons undergoes tightly controlled cell death without affecting the normal development of their neighbor interneurons." Dr. Ya-Hui Chou said. "They provide a great opportunity to uncover the protection mechanisms a developmental brain used to prevent unwanted neural cell death." Molecules identified in such mechanism may serve as a drug target to trigger similar protection in patients' brains that suffer uncontrolled neural degeneration.
-----
📌中研院新聞稿:https://www.sinica.edu.tw/ch/news/5915
📌As Press Release: https://www.sinica.edu.tw/en/news/5915
-----
👉其他媒體報導:
[中央社]中研院發現大腦保護機制 神經退化可望有解
http://www.cna.com.tw/news/ahel/201807170102-1.aspx
[聯合]為疾病設停損點 中研院建基因篩選平台
https://udn.com/news/story/7266/3256980
[蘋果]中研院從果蠅找到神經保護機制 新藥研發有望
https://tw.news.appledaily.com/l…/realtime/20180717/1393137/
[台視]"基因篩選平台" 有望阻帕金森氏症惡化 尋找神經細胞生死機制 阻斷擴散防病變 果蠅大腦神經細胞似人類 團隊將辨差異 (影)
https://www.ttv.com.tw/news/view/default.asp…
[自由]中研院找到大腦保護機制 有助治療神經退化疾病
http://news.ltn.com.tw/news/life/breakingnews/2490702
[央廣]中研院發現保護機制 神經退化可望有解
https://news.rti.org.tw/news/view/id/417501
[中時] 疾病可設停損點? 中研院研發基因篩選平台 尋找神經細胞生死機制
http://www.chinatimes.com/realtimenews/20180717002221-260405
#滿滿的 #大平台
#還記得嗎
中央研究院細胞與個體生物學研究所
#周雅惠助研究員