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Tero Toivanen

About The Ability of Asperger Syndrome Children to Hyper-Focus | - I Teach Autism.com - - 0 views

  • The Asperger Syndrome hyper-focusing trait can be helpful in a classroom setting when educators choose to use this extreme attention span as a tool.
  • If normal classroom learning procedures are not getting through to an AS child, try working with the theme that they are already working with. As an example, a few words about their chosen object mentioned during a history lesson, can perhaps make the entire history lesson memorable.
  • the Asperger Syndrome hyper-focus ability is a learning style. AS children have the ability to hyper-focus their way into learning traditional subjects.
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    The Asperger Syndrome hyper-focusing trait can be helpful in a classroom setting when educators choose to use this extreme attention span as a tool.
Tero Toivanen

How to unleash your brain's inner genius - life - 03 June 2009 - New Scientist - 0 views

  • A flurry of research published earlier this year in the journal Philosophical Transactions of the Royal Society B paints a very different picture. It turns out that these skills are far more common than previously thought. They may even arise from traits found in the general population, implying that savants are not fundamentally different from the rest of us. What's more, these skills may only blossom after years of obsessive practice, raising the question of whether many more people might cultivate similar skills, if only they had the motivation.
  • One of the biggest clues to the origins of savant talent lies in the fact that savants are far more common within the autistic population than among people with other mental difficulties.
  • Previously, about 1 in 10 people with autism were thought to have a special ability but in April, Patricia Howlin at the Institute of Psychiatry at King's College London found a much higher figure in the autistic adults she surveyed for savant skills or an exceptional cognitive ability.
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  • Savant skills included more fully developed talents, such as being able to name the elevation of both the sun and the moon at any time of day, on any specified date; being able to name the day of the week for any date in the distant past or future (a talent known as calendrical calculation) and perfect pitch. Importantly, the abilities and the skills had to be exceptional by the standards of the general population, but also well above the individual's overall level of ability. In total, roughly 30 per cent had some kind of special ability (Philosophical Transactions of the Royal Society B, vol 364, p 1359).
  • For musical savants like Paravicini, Happé suggests that a bias towards small details might have led their developing brains to focus more on the exact notes than the overall melody, leading to perfect pitch and an exceptional musical memory. In art, a focus on small regions of a picture could lead to accurate perspective drawing.
  • Most people find this harder when they are shown an unsegmented version of the pattern versus a segmented one, but people with autism don't have this preference, demonstrating their skill at seeing a whole in terms of its parts even if there are no obvious dividing lines (see diagram). "It shows they are able to do the segmentation in their minds," says Winner. The precocious realists did not have this preference either, indicating a talent for realistic drawing may arise from this isolated trait commonly found in autism (Philosophical Transactions of the Royal Society B, vol 364, p 1449).
  • Although these results help to pinpoint exactly what it is about autism that predisposes people to talent, it's still not clear why an eye for detail is more common in autistic people in the first place. Clues might lie in the work of Simon Baron-Cohen from the University of Cambridge, which suggests that people with autism are "hypersensitive" to sensory information
  • Daniel Tammet, a prodigious savant who has memorised pi to 22,514 digits, believes his own talents have arisen from a special ability to connect different pieces of information together. "Savant abilities are linked to a highly associative type of thinking, an extreme form of a kind that everyone does - examples would include daydreaming, puns and the use of metaphors," he says.
  • The few studies of savant brains certainly suggest they are physically different from the average brain. For example, when Happé and Wallace studied the brain of a savant gifted at art, calendrical calculation and memory, they found his cortex was thicker in the areas associated with visuospatial processing and calculation and thinner in other regions associated with social cognition, compared with people who were neither savants nor autistic. But whether these differences were innate or grew with lifelong practice was still unclear.
  • The answer to that question may come from an unlikely source - a study of London taxi drivers who have acquired an encyclopedic memory of the streets of London known as "the Knowledge". Given that taxi drivers must remember the layout of 25,000 streets and the location of thousands of places of interest, and retrieve the information instantaneously, some researchers like Happé believe the Knowledge qualifies as a savant-like skill.
  • Eleanor Maguire and colleagues at the Institute of Neurology at University College London and colleagues found that drivers with the Knowledge have a bigger rear hippocampus than bus drivers and adults who do not drive taxis. In addition, the hippocampus appears to be larger the longer a taxi driver has been working, and shrinks once they retire (Philosophical Transactions of the Royal Society B, DOI: 10.1098/rstb.2008.0288).
  • In fact, it seems the remaining mystery is not so much how savants achieve their talents, but what drives them in the first place. "Motivation is a big unknown," says Wallace. "It's an enormous driving force in giftedness and in savants, but we don't know a lot about it."
  • One person who has something of an inside view on what contributes to savant ability is Paravicini's mentor, Adam Ockelford, a professor of music at Roehampton University in London who has watched Paravicini's talent blossom since the age of 4. When they first met, Paravicini was entirely self-taught and bashed at his plastic keyboard with his fists and elbows to reproduce the sounds he was hearing. It was only after years of practice that his technical skills developed.
  • But as researchers like Wallace have suggested, Paravicini seemed motivated way beyond the average music student. In fact, he seemed to be playing as if his life depended on it, and Ockelford thinks it's this that truly sets savants apart from their peers. "The survival instinct gets turned with extraordinary force into something else - in Derek's case music," says Ockelford. "When people see Derek, they think it is amazing, almost religious. But to me, it's mainly just hard work."
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    But now researchers are beginning to unearth clues as to how savants' formidable brains work, and that in turn is changing our view of what it means to be a savant.
Tero Toivanen

Autism Research Blog: Translating Autism: Vision problems in autism: Reduced convergence? - 0 views

  • The authors found that 11% of the typically developing children and 31% of the ASD had a documented visual impairment (myopia, astigmatism, etc). This difference was statistically significant. That is, children with ASD were significantly more likely than typically developing children to have these conditions. Children with autism also displayed significantly poorer visual acuity (but within normal limits), and lower convergence. Convergence refers to the process by which the eyes move towards each other to maintain focus on approaching or close-range objects.
  • The findings of reduced visual acuity in children with autism when compared to typically developing children contradict previous studies that have shown enhanced visual acuity in autism. This brings us to a major limitation of this study that was correctly noted by the authors.
  • Limited convergence therefore would be associated with more limited depth perception. I find this intriguing because the neuropsychological profile of children with high functioning autism is often very similar to what is observed in kids with non-verbal learning disabilities (including relative weaknesses in motor-visual functioning). In addition, many parents with children with ASD report that their kids have trouble with sports and other physical activities. I thus wonder how much the reduced convergence observed in ASD may affect the motor-visual functioning in autism.
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  • Clinically, I was also intrigued by the high rates of vision problems found among the ASD group. Although, as I mentioned, this may be due to a self-selection of the parents who agreed to participate, this is consistent with data suggesting that children with developmental disorders are more likely to have visual problems than typically developing children
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    Analysis of visual functioning in children with autism suggests impairment in visual convergence. A brief review of: Elizabeth Milne, Helen Griffiths, David Buckley, Alison Scope (2009). Vision in Children and Adolescents with Autistic Spectrum Disorder: Evidence for Reduced Convergence Journal of Autism and Developmental Disorders DOI: 10.1007/s10803-009-0705-8
Tero Toivanen

Autism and Parental Obsession: A Troublesome Mix - 0 views

  • But what really troubled me about both of these books is the obsessive nature of each author's focus on her child's autism - and the assumption, on the part of both authors, that all parents should be equally obsessed.
  • Not only is it fiscally, personally and physically dangerous to become obsessive about autism treatments, but the the promise of a cure is disingenuous. The probability of a child with autism being literally cured is astronomically small (though of course symptoms can lessen and all children gain new skills). By playing on parents guilt and anxiety, though, it's not too hard to push families to the brink of financial, physical and personal collapse.
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    Autism and Parental Obsession: A Troublesome Mix
Tero Toivanen

Pivotal Response Teaching - 0 views

  • Pivotal Response Teaching  is an Advanced Behavioral Treatment intervention based on the principles of Applied Behavior Analysis (ABA) and derived from the work of Drs. Koegel, Schreibman, Dunlap, Horner, Burke and other researchers.
  • PRT builds upon the older ABA paradigms and has a focus on targeting “Pivotal” skills or behaviors in order to produce more broad changes in a child’s development.
  • Pivotal Response Training (PRT) provides a guideline for teaching skills and has been most successful for language, play and social interaction skills in children with autism and related disorders. 
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    Pivotal Response Teaching is an Advanced Behavioral Treatment intervention based on the principles of Applied Behavior Analysis (ABA) and derived from the work of Drs. Koegel, Schreibman, Dunlap, Horner, Burke and other researchers.
Tero Toivanen

The Picture Exchange Communication System (PECS): What Do the Data Say? -- Sulzer-Azaro... - 0 views

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    Findings suggest that PECS is providing people around the globe who have no or impaired speech with a functional means of communication.
J B

British DVD Takes Aim At Autism: Cartoons Focus on Facial Expressions - washingtonpost.com - 0 views

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    Happy, worried, surprised, ashamed: Children with autism can find it difficult to discern from facial expressions how another person is feeling. A team of researchers at Britain's Cambridge University has created an animated DVD called "The Transporters" to help children with autism learn this...
Tero Toivanen

Autistic Aphorisms: Intelligence, Genius, and Autism - 0 views

  • Professor James Flynn has incorporated an interesting sidebar into his book What is Intelligence? In it he lists his seven choices for Western civilization’s greatest minds: Pythagoras, Plato, Aristotle, Archimedes, Newton, Gauss, and Einstein.
  • Hundreds of research teams, maybe even thousands by now, have so convinced themselves that intelligence must originate from inside our skulls, have so convinced themselves that only within networks of cranial neurons can be found the secrets to humanity’s growing mental capacity, that all have managed to overlook completely the far more plausible alternative—the one existing right before our very eyes.
  • It is time to reconsider that conventional wisdom, time to regard genius with a different set of eyes; for genius is not a function of greater intelligence, genius is the description of how intelligence grows.
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  • Look at the content of any intelligence test—language, arithmetic, patterns, designs. What we measure with the aid of those I.Q. booklets are not the abilities we inherited from out our animal past, but instead their exact counterpart; we measure only those skills the species has been adding throughout all its history since. In some sense, an intelligence test measures the modernness of an individual; an intelligence test measures an individual’s ability to appropriate for himself the same set of skills the species has been appropriating as a whole—skills that do not find their origin in our biological nature, but instead owe their existence to the strange, brewing mixture of non-biological pattern, structure and form that has been rapidly taking shape all around us.
  • The unusual characteristics of humanity’s transformational individuals are not the result of their genius, they are genius’s prerequisite
  • But counter to prevailing wisdom, there are many autistic individuals—most likely a majority—who do make substantial progress by means of an alternative perceptual course, a course that allows them not only to navigate meaningfully their surrounding world, but also to assimilate, if somewhat awkwardly and belatedly, to the human species itself (and thereby explaining how autism, estimated to be present in nearly one percent of the human population, could go entirely unrecognized until as recently as sixty-five years ago).
  • all autistic individuals must crystallize their existence by means of this alternative perceptual course—it becomes, in essence, autism’s most salient feature.
  • The unusual behaviors and interests of autistic children—lining up toys, staring at ceiling fans, twirling, flapping hands repeatedly, fascination with knobs, buttons, switches, letters, shapes and digits, watching the same video again and again, singing the same song over and over—these activities betray a form of perception completely unlike that of most other children, a perception noticeably absent in social and biological focus, but also noticeably drawn to symmetry, repetition and pattern.
  • The unusual routines of autistic children are the natural, indeed the expected, mode of expression for a form of perception engaged primarily by the structural aspects of the non-social, non-biological world.
  • Autistic individuals would have been the first to notice the inherent structure contained in the natural world—the geometry of plants, the isomorphisms of natural objects, the logic of the celestial seasons—only they would have had motivation to embrace such form, only they would have had the need to perceive nature’s symmetry, repetition and pattern in order to form their cognitive grounding.
  • We know only bits and pieces about the four Greeks on Professor Flynn’s list, but filling in with the traits from the list’s more modern members, we can reasonably summarize all the unifying characteristics: late- or strange-talking, socially awkward, irascible, obsessed with structure, compelled by form, unusually—not necessarily greatly—intelligent.
  • The continuing medicalization of autism, the insistent demonization of autism’s spontaneous effect—these carry the danger of an unforeseen consequence. For the cure of autism will not be the end of a tragic brain disorder; autism’s eradication will not see the passing of a troubling mental disease. The removal of autism from the entire human species will produce only an ironic solution to the mystery of our expanding human intelligence, it will produce the ignoble end to the Flynn effect.
  • When confronted by data that runs counter to our accustomed way of seeing things, we as humans have but two choices: we can try to explain the results away, or we can adjust our perception of the experienced world. The former choice paves the all-too-common road of modern academic science; the latter, as described above, walks the more promising path of genius.
  • Autism is not a mental illness, not a brain disorder, it is instead the source of humanity’s changing perception of its experienced world; it is, with care and understanding, genius’s fertile soil.
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    Autism is not a mental illness, not a brain disorder, it is instead the source of humanity's changing perception of its experienced world; it is, with care and understanding, genius's fertile soil.
Tero Toivanen

Sensory Friendly Classrooms with Dr. Roya Ostovar - The SPD Blogger Network - 3 views

  • Having sensory friendly settings is common sense and it benefits everyone, all students and learners as well as teachers and staff. Changing the classroom also teaches all students how to find practical and adaptive ways of making their setting work for them to allow for optimal learning and functioning, a skill that is beneficial to everyone. It also makes more sense to change the environment to fit the child’s needs and not the other way around. Changing the classroom helps the child with SPD blend in with other students, and it is not isolating, or stigmatizing.
  • A sensory friendly classroom improves attention, concentration, ability to focus for longer periods of time, learning, social functioning, and it also reduces the overall level of stress
  • For more specific and multiple examples of the accommodations that can be made, a book I authored titled “The Ultimate Guide to Sensory Processing Disorder” offers a comprehensive guide.
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  • Vision: Reduce/ eliminate clutter and visual distractions; modify assignments to be shorter; use a highlighter
  • Auditory: Reduce/eliminate distracting noise; play Mozart or calming music in the background when possible
  • Tactile: Allow students to use chalk on the board because it is more tactile rich
  • Olfactory: Use scented markers to wake kids up; have lavender lotion or soap; and avoid noxious odors in the classroom
  • Vestibular: Allow movement and breaks; offer therapy balls to sit on; Movin-Sit cushions benefit the whole classroom; stretch breaks, start class with movement activities
  • Properioception: Movement, Movin-Sit cushions, Brain Gym, Yoga, Chair push ups (i.e. sitting on hands and pushing up); chairs and tables at right height and positioned correctly
  • A sensory friendly classroom gets the kids with SPD and ASD ready to learn; improves the overall functioning of the child including learning, attention, concentration, social functioning, and behavioral presentation; and lowers their stress and anxiety levels
  • Two quick suggestions: 1) Simplify the classroom: Less is more. Take a minimalistic approach to setting up the room and; 2) Support all learning styles: Some kids learn through auditory channels, some visual, and some through kinesthetic and hands on activities. By the same token, incorporate activities that support the sensory channel and each child’s sensory profile
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