Co vše lze zjistit ze slin?


Jako hudba budoucnosti vypadají nejnovější výsledky výzkumu slin. Ty totiž naznačují, že místo rozboru krve nám bude prováděn rozbor slin a výsledky budou k dispozici na PC? Nevěříte?

Již několik let se rozbor slin ukazuje jako velice slibný zdroj informací o celkovém zdraví organizmu. Rozbor slin je totiž výhodný z mnoha důvodů. Pro odběr vzorku není třeba žádných vpichů jehlou, je tedy bezbolestný. Odběr nevyžaduje odbornou zručnost a může být proveden v klidu domova.

Sliny jsou v centru zájmu nového diagnostického trendu zvaného salivaomika (v angl. salivaomics), neboli nauka o slinách. V dubnu tohoto roku odstartovala Americká společnost pro dentální výzkum nový projekt nazvaný „Vědecká základna pro salivaomiku“ (Salivaomics Knowledge Base – SKB), který poskytuje informace rozboru slin dobrovolníků. V databázi je v současnosti 1166 různých proteinů a biomarkerů, podle kterých se dají rozpoznat nejrůznější patologické procesy v našem organizmu. Databáze se neustále rozšiřuje o nové biomarkery. Možná již brzy tedy budeme své zdraví kontrolovat podle rozboru slin na svém PC prostřednictvím internetu.



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Vloženo: 20:55 29.3. 2010
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Co vše lze zjistit ze slin?


Jako hudba budoucnosti vypadají nejnovější výsledky výzkumu slin. Ty totiž naznačují, že místo rozboru krve nám bude prováděn rozbor slin a výsledky budou k dispozici na PC? Nevěříte?

Již několik let se rozbor slin ukazuje jako velice slibný zdroj informací o celkovém zdraví organizmu. Rozbor slin je totiž výhodný z mnoha důvodů. Pro odběr vzorku není třeba žádných vpichů jehlou, je tedy bezbolestný. Odběr nevyžaduje odbornou zručnost a může být proveden v klidu domova.

Sliny jsou v centru zájmu nového diagnostického trendu zvaného salivaomika (v angl. salivaomics), neboli nauka o slinách. V dubnu tohoto roku odstartovala Americká společnost pro dentální výzkum nový projekt nazvaný „Vědecká základna pro salivaomiku“ (Salivaomics Knowledge Base – SKB), který poskytuje informace rozboru slin dobrovolníků. V databázi je v současnosti 1166 různých proteinů a biomarkerů, podle kterých se dají rozpoznat nejrůznější patologické procesy v našem organizmu. Databáze se neustále rozšiřuje o nové biomarkery. Možná již brzy tedy budeme své zdraví kontrolovat podle rozboru slin na svém PC prostřednictvím internetu.

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Jameskem 18:16 04.05.2025
Possibilities
The authors of the study, published May 6 in the journal Monthly Notices of the Royal Astronomical Society, specifically set out to search for Dyson spheres, in the form of infrared heat near stars that couldn’t be explained in any other way.
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Using historical data from telescopes that pick up infrared signatures, the research team looked at stars located within less than 1,000 light-years from Earth: “We started with a sample of 5 million stars, and we applied filters to try to get rid of as much data contamination as possible,” said lead study author Matias Suazo, a doctoral student in the department of physics and astronomy of Uppsala University in Sweden.

“So far, we have seven sources that we know are glowing in the infrared but we don’t know why, so they stand out.”
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Кракен тор
There is no conclusive evidence that the seven stars have Dyson spheres around them, Suazo cautioned.

“It’s difficult for us to find an explanation for these sources, because we don’t have enough data to prove what is the real cause of the infrared glow,” he said. “They could be Dyson spheres, because they behave like our models predict, but they could be something else as well.”

Among the natural causes that could explain the infrared glow are an unlucky alignment in the observation, with a galaxy in the background overlapping with the star, planetary collisions creating debris, or the fact that the stars may be young and therefore still surrounded by disks of hot debris from which planets would later form.
The data used by the researchers comes from two active space telescopes — the Wide-field Infrared Survey Explorer, or WISE, from NASA and Gaia from the European Space Agency — as well as an astronomical survey of the sky in infrared light called The Two Micron All Sky Survey. Also known as 2MASS, the collaboration between the University of Massachusetts and the US space agency’s Jet Propulsion Laboratory took place between 1997 and 2001.


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Look of the Week: Naomi Watts is twinning with her canine co-star
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What’s white and black and red all over? Naomi Watts and her 145lb co-star, Bing, a Great Dane, taking a dog walk on the crimson carpet for the New York premiere of “The Friend.”

Directed by Scott Mcgehee and adapted from Sigrid Nunez’s 2018 novel of the same name, the film — set to release in US theaters on March 28 and in the UK on April 25 — follows a solitary writer and teacher named Iris whose life is upended after a close friend bequeaths his giant pet dog to her following his death.

In front of the cameras Monday evening, the “Mulholland Drive” actor and Bing looked like they were cut from the same cloth — both in temperament and in their matching black polka dots. Watts was dressed in a white gown with fur-tufted spots that bore a striking resemblance to Bing’s own coat, but the Cruella de Vil comparisons ended there. Instead, Watts and Bing were captured in the throes of lots of paw-shakes, puppy kisses and head scratches.
The dress that Watts wore, titled the “Domino” and designed by Jacquemus, debuted during the Spring-Summer 2025 Paris couture shows in January. The look was both elegant and offbeat, with a high-cowl neck and open-back, asymmetrical waistline that mimicked a French tuck. It was styled with a skirt that sprouted furry black polka dots, which close up were unnervingly reminiscent of body hair. But from afar they gave the impression of soft-edged dabs of watercolor bleeding downstream.

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FrankSerut 16:28 04.05.2025
Possibilities
The authors of the study, published May 6 in the journal Monthly Notices of the Royal Astronomical Society, specifically set out to search for Dyson spheres, in the form of infrared heat near stars that couldn’t be explained in any other way.
<a href=https://kra31att.cc>кракен даркнет</a>
Using historical data from telescopes that pick up infrared signatures, the research team looked at stars located within less than 1,000 light-years from Earth: “We started with a sample of 5 million stars, and we applied filters to try to get rid of as much data contamination as possible,” said lead study author Matias Suazo, a doctoral student in the department of physics and astronomy of Uppsala University in Sweden.

“So far, we have seven sources that we know are glowing in the infrared but we don’t know why, so they stand out.”
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There is no conclusive evidence that the seven stars have Dyson spheres around them, Suazo cautioned.

“It’s difficult for us to find an explanation for these sources, because we don’t have enough data to prove what is the real cause of the infrared glow,” he said. “They could be Dyson spheres, because they behave like our models predict, but they could be something else as well.”

Among the natural causes that could explain the infrared glow are an unlucky alignment in the observation, with a galaxy in the background overlapping with the star, planetary collisions creating debris, or the fact that the stars may be young and therefore still surrounded by disks of hot debris from which planets would later form.
The data used by the researchers comes from two active space telescopes — the Wide-field Infrared Survey Explorer, or WISE, from NASA and Gaia from the European Space Agency — as well as an astronomical survey of the sky in infrared light called The Two Micron All Sky Survey. Also known as 2MASS, the collaboration between the University of Massachusetts and the US space agency’s Jet Propulsion Laboratory took place between 1997 and 2001.


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