[75741] in Daily_Rumour

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"It worked too well" - Tinnitus Cure Banned by the CCP Makes a Comeback

daemon@ATHENA.MIT.EDU (Ear Infections)
Fri Jun 30 17:22:41 2023

Date: Fri, 30 Jun 2023 23:22:36 +0200
From: "Ear Infections" <hearingloss@cladexli.today>
Reply-To: "Ear Infections" <hearingloss@cladexli.today>
To: <rumour-mtg@bloom-picayune.mit.edu>

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			<div><span style="font-size: 16px;">It started out innocently enough...</span></div>

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			<div><span style="font-size: 16px;">Working with limited resources in rural China, a doctor by the name of Chung T&#39;Hsu sought to <b>cure the ringing in his ears that was driving him mad.</b> </span></div>

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			<div><span style="font-size: 16px;">He turned to traditional Chinese medicines, but mixed with the exacting specifications required by modern science. </span></div>

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			<div><span style="font-size: 16px;">Finally, he did it, <b>creating a treatment that cured 322 people within 7 days!</b></span></div>
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			<div>&nbsp;</div>

			<div><span style="font-size: 16px;">But instead of allowing the treatment to go public, the Chinese government classified it as a &quot;state secret&quot; and made his life a living hell. </span></div>

			<div>&nbsp;</div>
			<span style="font-size: 16px;">Sound familiar?</span></div>

			<div>&nbsp;</div>
			<span style="font-size: 16px;">That&#39;s what happens to our best doctors here as well. They&#39;re either paid off or threatened to keep their life-saving cures buried. <b>Anything to keep the drug cartel that is modern Big Pharma happy and rich.</b></span></div>

			<div>&nbsp;</div>
			<span style="font-size: 16px;"><b><a href="http://cladexli.today/4VzRYuR_hLCAYmLB5Tvz-JD6nkHvIG6fAQYC660ZM6n625Ea">But I won&#39;t allow myself to be intimidated by them anymore</a></b>. I don&#39;t know how long I&#39;ll be able to keep this up, so click on the presentation below and find out the truth about tinnitus now! </span></div>

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Methods to infer process-based convergence fit models of selection to a phylogeny and continuous trait data to determine whether the same selective forces have acted upon lineages. This uses the Ornstein&ndash;Uhlenbeck (OU) process to test different scenarios of selection. Other methods rely on an a priori specification of w shifts in selection have occurred. Recurrent evolution is the repeated evolution of a particular trait, character, or mutation. Most evolution is the result of drift, often interpreted as the random of some alleles being passed down to the next generation and others not. Recurrent evolution is said to occur when patterns emerge from this stochastic process when looking across multiple distinct populations. These patterns are of particular interest to evolutionary biologists, as they can demonstrate the underlying forces governing evolution. Recurrent evolution is a bro term, but is usually used to describe recurring regimes of selection within or across lineages. While most comm used to describe recurring patterns of selection, it can also be used to describe recurring patterns of mutation; for example, transitions are more common than transversions. The concept encompasses both convergent evolution and parallel evolution, and can be used to describe the observation of similar repeating changes through directional selection as well as the observation of highly conserved phenotypes or genotypes across lineages through continuous purifying selection over large periods of evolutionary time. Recurrent changes may be observed at the phenotype level or the genotype level. At the phenotype level, recurrent evolution can be observed across a continuum of levels, which for simplicity can be broken down into molecular phenotype, cellular phenotype, and organismal phenotype. At the genotype level, recurrent evolution can be detected using DNA sequencing data. The same or similar sequences appearing in the genomes of different lineages indicates recurrent genomic evolution may have taken place. Recurrent genomic evolution can also occur within a lineage; an example of this would include some types of phase variation that involve highly directed changes at the DNA sequence level. The evolution of different s of phase variation in separate lineages represents convergent and recurrent evolution toward increased evolvability. In organisms with long generation times, any potential recurrent genomic evolution within a lineage would be difficult to detect. Recurrent evolution has been studied most extensively at the organismal level, but with the vent of er and faster sequencing technologies more attention is being paid to recurrent evolution at the genomic level. Convergent, parallel, and recurrent evolution The distinction between convergent and parallel evolution is somewhat unresolved in evolutionary biology. Some authors have claimed it is a false dichotomy, while others have argued that t are important distinctions. These debates are important when considering recurrent evolution because the basis for the distinction is in the degree of phylogenetic relatedness among the organisms being considered. While convergent and parallel evolution can both be interpreted as s of recurrent evolution, they involve multiple lineages was recurrent evolution can also take place within a single lineage.</p>

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