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Lara Cowell

Bedtime Stories for Young Brains - 3 views

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    This month, the journal Pediatrics published a study that used functional magnetic resonance imaging to study brain activity in 3-to 5-year-old children as they listened to age-appropriate stories. The researchers found differences in brain activation according to how much the children had been read to at home. Children whose parents reported more reading at home and more books in the home showed significantly greater activation of brain areas in a region of the left hemisphere called the parietal-temporal-occipital association cortex. This brain area is "a watershed region, all about multisensory integration, integrating sound and then visual stimulation," said the lead author, Dr. John S. Hutton, a clinical research fellow at Cincinnati Children's Hospital Medical Center. This region of the brain is known to be very active when older children read to themselves, but Dr. Hutton notes that it also lights up when younger children are hearing stories. What was especially novel was that children who were exposed to more books and home reading showed significantly more activity in the areas of the brain that process visual association, even though the child was in the scanner just listening to a story and could not see any pictures. "When kids are hearing stories, they're imagining in their mind's eye when they hear the story," said Dr. Hutton. "For example, 'The frog jumped over the log.' I've seen a frog before, I've seen a log before, what does that look like?" The different levels of brain activation, he said, suggest that children who have more practice in developing those visual images, as they look at picture books and listen to stories, may develop skills that will help them make images and stories out of words later on. "It helps them understand what things look like, and may help them transition to books without pictures," he said. "It will help them later be better readers because they've developed that part of the brain
jamelynmau16

A dominant hemisphere for handedness and language? - 3 views

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    Are the 10% of people who are left-handed and of those whose language is located in the brain's right hemisphere the same? Is the location of language areas in the brain correlated to handedness? Through an innovative approach using a large psychometric and brain imaging database, researchers demonstrated that the location of language areas in the brain is independent of left- or right-handedness, except for a very small proportion of left-handed individuals whose right hemisphere is dominant for both manual work and language.
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    Through an innovative approach using a large psychometric and brain imaging database, researchers have demonstrated that the location of language areas in the brain is independent of left- or right-handedness, except for a very small proportion of left-handed individuals whose right hemisphere is dominant for both manual work and language.
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    Through an innovative approach using a large psychometric and brain imaging database, researchers have demonstrated that the location of language areas in the brain is independent of left- or right-handedness, except for a very small proportion of left-handed individuals whose right hemisphere is dominant for both manual work and language.
Matt Agsalud

Anxiety May Hinder Your Sense of Danger: Scientific American - 1 views

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    Tense people may miss the subtle warning signs of danger Image: Roc Canals Photography/Getty Images Worrywarts, beware: all that fretting may be for naught. Anxiety has long been interpreted as a symptom of hyperawareness and sensitivity to danger, but a study published last December in Biological Psychology turns that logic on its head.
Lisa Stewart

The Poet Obama - It Figures - Figures of Speech - 2 views

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    "But instead of figures, the Democrats need to learn to use images. Tropes. Like the metaphor Figaro just used. If the Democrats can stop being poets and start painting pictures, they'll win. If not, they'll lose. It's that critical."
bryson wong

President Obama's State of the Union Body Language - Forbes - 2 views

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    nbsp; Image by Getty Images via @daylife When he's on his game (as was the case last night), few leaders are better than President Obama at crafting and delivering a speech. His State of the Union address was beautifully written (of course, much credit goes to head speechwriter Jon Favreau) and expertly [...]
Lara Cowell

Search ScienceDaily - 2 views

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    Science Daily is one of my favorite resources for finding current news, videos, scholarly articles, images, and books about language and its intersections with the sciences: neurology, psychology, anthropology. Try typing in keywords for your desired topic.
Ryan Catalani

How Handwriting Boosts the Brain - WSJ.com - 5 views

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    Using advanced tools such as magnetic resonance imaging, researchers are finding that writing by hand is more than just a way to communicate. The practice helps with learning letters and shapes, can improve idea composition and expression, and may aid fine motor-skill development.
Ryan Catalani

Howstuffworks "How BrainPort Works" - 1 views

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    "An array of electrodes receiving input from a non-tactile information source (a camera, for instance) applies small, controlled, painless currents...to the skin at precise locations according to an encoded pattern. The encoding of the electrical pattern essentially attempts to mimic the input that would normally be received by the non-functioning sense. ... When the encoded pulses are applied to the skin, the skin is actually receiving image data." "After training in laboratory tests, blind subjects were able to perceive visual traits like looming, depth, perspective, size and shape."
Lisa Stewart

WordsEye Login - 1 views

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    takes your words and creates a 3-D image of the scene you are describing
Ryan Catalani

MIT Scientist Captures 90,000 Hours of Video of His Son's First Words, Graphs It | Fast... - 5 views

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    "In one 40-second clip, you can hear how "gaga" turned into "water" over the course of six months. In a video clip, below, you can hear and watch the evolution of "ball." .... Unreal 3-D visualizations allowed his team to zoom through the house like a dollhouse and map the utterance of each word in its context. In a landscape-like image with peaks and valleys, you can see that the word "water" was uttered most often in the kitchen, while "bye" took place at the door."
Lisa Stewart

languages families tree - Google Images - 0 views

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    mom in many languages
Lara Cowell

Chinese Artist Xu Bing's Book Without Borders - 1 views

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    Award-winning, Chinese contemporary artist, Xu Bing, has created _Book From the Ground_, a text that speakers of any language can "read." His interest in pictorial storytelling was heightened by a bubblegum wrapper he happened upon-a series of three images connected by two arrows that instructed the chewer to put the gum back into the wrapper after chewing and throw it in the trash. This became Xu's inspiration for _Book from the Ground_. Xu's book reflects cultural literacy and modern tools and technologies, rather than traditional literacy. The author predicts that the younger generation is likely to find his icon language easier to "read" because they've been exposed to these images for as long as they can remember on the Internet. "I think it can be seen two ways," says Robert Harrist, a professor of Chinese art history at Columbia University who has taught a semester-length course on Xu's work. "It's great that everybody can communicate now and stay in touch constantly through one medium or another, a kind of shared, plugged-in visual world." But at the same time, with the "flattening and evening out in communication so much is lost," especially when it comes to tense or nuance. "The real surprising thing here and the challenge and the thing I love about it is he makes you ask yourself: What is writing?" adds Harrist, who describes Xu as "the greatest living Chinese artist, simple as that.... Everything he does is profoundly thoughtful."
Lara Cowell

The Secret Social Media Lives of Teenagers - 0 views

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    Developmentally, teens are at particular risk for reckless online behavior, including secrecy regarding social networking. Many people - adults and kids alike - view likes, loves, comments and followers as a barometer for popularity, even within a smaller, closed group. Teens can quickly get caught up in the feedback loop, posting and sharing images and videos that they believe will gain the largest reaction. Over time, teens' own values may become convoluted within an online world of instantaneous feedback, and their behavior online can become based on their "all about the likes" values rather than their real-life values. There is a very real biological basis for this behavior. The combination of social media pressure and an underdeveloped prefrontal cortex, the region of the brain that helps us rationalize decisions, control impulsivity and make judgments, can contribute to offensive online posts. In a recent study, researchers at the University of California, Los Angeles, found that the areas of teens' brains focused on reward processing and social cognition are similarly activated when they think about money and sex - and when they view a photo receiving lots of likes on social media. When teens viewed photos deemed risky, researchers found the brain regions focused on cognitive control were not activated as much, suggesting that it could be harder for them to make good decisions when viewing images or videos that are graphic in nature.
Lara Cowell

Ability to learn new words based on efficient communication between brain areas that co... - 1 views

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    Researchers from King's College London Institute of Psychiatry, in collaboration with Bellvitge Biomedical Research Institute (IDIBELL) and the University of Barcelona, mapped the neural pathways involved in word learning among humans. They found that the arcuate fasciculus, a collection of nerve fibres connecting auditory regions at the temporal lobe with the motor area located at the frontal lobe in the left hemisphere of the brain, allows the 'sound' of a word to be connected to the regions responsible for its articulation. Differences in the development of these auditory-motor connections may explain differences in people's ability to learn words. Researchers used diffusion tensor imaging to image the structure of the brain before a word learning task and functional MRI, to detect the regions in the brain that were most active during the task. They found a strong relationship between the ability to remember words and the structure of arcuate fasciculus, which connects two brain areas: the territory of Wernicke, related to auditory language decoding, and Broca's area, which coordinates the movements associated with speech and the language processing. In participants able to learn words more successfully their arcuate fasciculus was more myelinated i.e. the nervous tissue facilitated faster conduction of the electrical signal. In addition the activity between the two regions was more co-ordinated in these participants. Dr Catani concludes, "Now we understand that this is how we learn new words, our concern is that children will have less vocabulary as much of their interaction is via screen, text and email rather than using their external prosthetic memory. This research reinforces the need for us to maintain the oral tradition of talking to our children."
Ryan Catalani

Research Gives Insight into Brain Function of Adults Who Stutter - 3 views

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    "[New research] is suggesting that atypical brain function is a fundamental aspect of speech production tasks for adults who stutter. ... "Now because many speech areas are interconnected across the two hemispheres through the corpus callosum, it might suggest that hemispheric dominance for speech and language has not been established to the same degree as it has been for normally fluent adults." ... Loucks then used functional magnetic resonance imaging of brain activity to study participants who stutter and found that even brief, simple speech tasks - such as producing a single word to name a picture - is associated with altered functional activity."
Lara Cowell

Making Music Boosts Brain's Language Skills - 7 views

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    Brain-imaging studies have shown that music activates many diverse parts of the brain, including an overlap in where the brain processes music and language. Brains of people exposed to even casual musical training have an enhanced ability to generate the brain wave patterns associated with specific sounds, be they musical or spoken, said study leader Nina Kraus, director of the Auditory Neuroscience Laboratory at Northwestern University in Illinois. Musicians have subconsciously trained their brains to better recognize selective sound patterns, even as background noise goes up. In contrast, people with certain developmental disorders, such as dyslexia, have a harder time hearing sounds amid the din. Musical experience could therefore be a key therapy for children with dyslexia and similar language-related disorders. Harvard Medical School neuroscientist Gottfried Schlaug has found that stroke patients who have lost the ability to speak can be trained to say hundreds of phrases by singing them first. Schlaug demonstrated the results of intensive musical therapy on patients with lesions on the left sides of their brains, those areas most associated with language. Before the therapy, these stroke patients responded to questions with largely incoherent sounds and phrases. But after just a few minutes with therapists, who asked them to sing phrases and tap their hands to the rhythm, the patients could sing "Happy Birthday," recite their addresses, and communicate if they were thirsty. "The underdeveloped systems on the right side of the brain that respond to music became enhanced and changed structures," Schlaug said at the press briefing.
Lara Cowell

Hearing Metaphors Activates Brain Regions Involved in Sensory Experience - 2 views

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    New brain imaging research at Emory University reveals that a region of the brain important for sensing texture through touch, the parietal operculum, is also activated when someone listens to a sentence with a textural metaphor. The same region is not activated when a similar sentence expressing the meaning of the metaphor is heard.
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