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21 Q689507 | Inglês, Vocabulário Vocabulary, Primeiro Semestre, UECE, UECE CEV

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T E X T


Can you learn in your sleep?


Sleep is known to be crucial for learning and memory formation. What's more, scientists have even managed to pick out specific memories and consolidate them during sleep. However, the exact mechanisms behind this were unknown — until now.

Those among us who grew up with the popular cartoon "Dexter's Laboratory" might remember the famous episode wherein Dexter's trying to learn French overnight. He creates a device that helps him to learn in his sleep by playing French phrases to him. Of course, since the show is a comedy, Dexter's record gets stuck on the phrase "Omelette du fromage" and the next day he's incapable of saying anything else. This is, of course, a problem that puts him through a series of hilarious situations.

The idea that we can learn in our sleep has captivated the minds of artists and scientists alike; the possibility that one day we could all drastically improve our productivity by learning in our sleep is very appealing. But could such a scenario ever become a reality?

New research seems to suggest so, and scientists in general are moving closer to understanding precisely what goes on in the brain when we sleep and how the restful state affects learning and memory formation.

For instance, previous studies have shown that non-rapid eye movement (non-REM) sleep — or dreamless sleep — is crucial for consolidating memories. It has also been shown that sleep spindles, or sudden spikes in oscillatory brain activity that canbe seen on an electroencephalogram (EEG) during the second stage of non-REM sleep, are key for this memory consolidation. Scientists were also able to specifically target certain memories and reactivate, or strengthen, them by using auditory cues.

However, the mechanism behind such achievements remained mysterious until now. Researchers were also unaware if such mechanisms would help with memorizing new information.

Therefore, a team of researchers set out to investigate. Scott Cairney, from the University of York in the United Kingdom, co-led the research with Bernhard Staresina, who works at the University of Birmingham, also in the U.K. Their findings were published in the journal Current Biology.

Cairney explains the motivation for the research, saying, "We are quite certain that memories are reactivated in the brain during sleep, but we don't know the neural processes that underpin this phenomenon." "Sleep spindles," he continues, "have been linked to the benefits of sleep for memory in previous research, so we wanted to investigate whether these brain waves mediate reactivation. If they support memory reactivation, we further reasoned that it could be possible to decipher memory signals at the time that these spindles took place."

To test their hypotheses, Cairney and his colleagues asked 46 participants "to learn associations between words and pictures of objects or scenes before a nap." Afterward, some of the participants took a 90-minute nap, whereas others stayed awake. To those who napped, "Half of the words were [...] replayed during the nap to trigger the reactivation of the newly learned picture memories," explains Cairney.

"When the participants woke after a good period of sleep," he says, "we presented them again with the words and asked them to recall the object and scene pictures. We found that their memory was better for the pictures that were connected to the words that were presented in sleep, compared to those words that weren't," Cairney reports.

Using an EEG machine, the researchers were also able to see that playing the associated words to reactivate memories triggered sleep spindles in the participants' brains. More specifically, the EEG sleep spindle patterns "told" the researchers whether the participants were processing memories related to objects or memories related to scenes.

"Our data suggest that spindles facilitate processing of relevant memory features during sleep and that this process boosts memory consolidation," says Staresina. "While it has been shown previously," he continues, "that targeted memory reactivation can boost memory consolidation during sleep, we now show that sleep spindles might represent the key underlying mechanism."

Cairney adds, "When you are awake you learn new things, but when you are asleep you refine them, making it easier to retrieve them and apply them correctly when you need them the most. This is important for how we learn but also for how we might help retain healthy brain functions."

Staresina suggests that this newly gained knowledge could lead to effective strategies for boosting memory while sleeping.

So, though learning things from scratch à la "Dexter's Lab" may take a while to become a reality, we can safely say that our brains continue to learn while we sleep, and that researchers just got a lot closer to understanding why this happens.

From: https://www.medicalnewstoday.com/articles/Mar/2018

Another finding of the research is related to the electroencephalogram (EEG) that was done while the participants were sleeping and exposed to the replay of the words, which revealed

22 Q689784 | Inglês, Vocabulário Vocabulary, Vestibular, UNIFESP, VUNESP

No trecho do quarto parágrafo “gender stereotypes about jobs and caring have crumbled”, o termo sublinhado pode ser substituído, sem alteração de sentido, por

23 Q680461 | Inglês, Vocabulário Vocabulary, Edital n 01 2020, FIMCA, CONSULPLAN

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Science Education in the United States of America

(Audrey B. Champagne.)

Science education in the United States of America is in the midst of an unprecedented reform movement-unprecedented because the movement is driven by national standards developed with support from the federal government. The standards for science education are redefining the character of science education from kindergarten to the postgraduate education of scientists and science teachers. Unlike the education in most countries of the world, education of students in kindergarten through grade twelve in the United States is not the responsibility of the federal government but is controlled by the individual states. States have the right toregulate all elements of the curriculum-the content all students are expected to learn, the structural organization of programs across all grades, the structural organization of the yearly curriculum in each subject, teaching methods, and textbooks. Historically, and even now, the states jealously guard all their rights and resist efforts by the federal government to exercise control over matters that are the responsibility of the states. The federal government's involvement in education has been to identify matters of national priority and to provide funds and other resources to the states to meet the national priorities. So, for instance, in the late 1960s and early 1970s, when the United States felt that its perceived preeminence in scientific research and its national safety were threatened, science education was identified as a national priority. The primary purpose of the federal government's initiatives was to encourage and upgrade the science education of young people who would become practicing scientists. This effort was not perceived by the states as an erosion of their rights because it was a response to a threat to the nation and was targeted on the science education of a relatively few students. The current situation is quite different.
The federal government's underwriting of the development of national standards for education has the potential for shifting the control of the curriculum from the states to the federal government. This initiative, supported by the National Association of Governors, is the result of the concern of political, business and industrial leaders with the poor quality of education across the nation and with the effect this poor quality has on the U.S. position in the world economy. The goal of the standards movement from the prospective of political, business, and industrial leaders is to strengthen education so that the schools will produce graduates with the knowledge and skills required of them to be productive in the workplace.
The pedagogy and attitudes of many teachers and professors alike has been that science is for the few. So little concern or effort was applied to make science interesting or to make learning it easy. Consequently, only highly motivated and highly intelligent students survived science courses. Thus it appears education in the natural sciences develops individuals who reason well, are critical thinkers, are creative problem solvers-in short, are intelligent. But, we must ask, does education in the natural sciences produce smarter people or do smart people survive science as it is taught? While historically the answer to the question may well have been survival, the national standards are based on the beliefs that science is for all and can produce smarter people.

(Available: https://files.eric.ed.gov/fulltext/EJ608194.pdf. Adapted.)
Analyse the items usage in the text. Mark the one which is a modifier.
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