TATAELXSI(Weekly scale) A strong weekly move. Will it be sustained?
#TataElxsi #CANSLIM @MarketSmithIND @williamoneilco
More from Tataelxsilongterm
Time to update reading on #tataelxsi. Note where the last fall was supported. Perfectly near the previous arc BO level. We will make some retracements here & there but now seems to be going for 10391. 3rd arc formation in process & looks very similar to the previous one https://t.co/KwBFN6fkKk
This is line chart based arc I plotted a few days ago to see where does the target of 2nd arc completes. We got ~9200(+/- 100/-) Switch to candles. See rejection area. Arc on candles is not really ideal but on line it is. No view above 9200! MAs need to catch up. #TATAELXSI pic.twitter.com/WNJRZZedrj
— Ameya (@Finstor85) March 30, 2022
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Viruses and other pathogens are often studied as stand-alone entities, despite that, in nature, they mostly live in multispecies associations called biofilms—both externally and within the host.
https://t.co/FBfXhUrH5d
Microorganisms in biofilms are enclosed by an extracellular matrix that confers protection and improves survival. Previous studies have shown that viruses can secondarily colonize preexisting biofilms, and viral biofilms have also been described.
...we raise the perspective that CoVs can persistently infect bats due to their association with biofilm structures. This phenomenon potentially provides an optimal environment for nonpathogenic & well-adapted viruses to interact with the host, as well as for viral recombination.
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Viruses and other pathogens are often studied as stand-alone entities, despite that, in nature, they mostly live in multispecies associations called biofilms—both externally and within the host.
https://t.co/FBfXhUrH5d
Microorganisms in biofilms are enclosed by an extracellular matrix that confers protection and improves survival. Previous studies have shown that viruses can secondarily colonize preexisting biofilms, and viral biofilms have also been described.
...we raise the perspective that CoVs can persistently infect bats due to their association with biofilm structures. This phenomenon potentially provides an optimal environment for nonpathogenic & well-adapted viruses to interact with the host, as well as for viral recombination.
Biofilms can also enhance virion viability in extracellular environments, such as on fomites and in aquatic sediments, allowing viral persistence and dissemination.