BalogBlog

Showing posts with label Aspergers. Show all posts
Showing posts with label Aspergers. Show all posts

Thursday, November 23, 2017

Autism's Puzzles



Learn brain basics in easy-to-read language.

What is autism spectrum disorder?

Autism spectrum disorder (ASD) refers to a group of complex neurodevelopment disorders characterized by repetitive and characteristic patterns of behavior and difficulties with social communication and interaction. The symptoms are present from early childhood and affect daily functioning.
The term “spectrum” refers to the wide range of symptoms, skills, and levels of disability in functioning that can occur in people with ASD. Some children and adults with ASD are fully able to perform all activities of daily living while others require substantial support to perform basic activities. The Diagnostic and Statistical Manual of Mental Disorders (DSM-5, published in 2013) includes Asperger syndrome, childhood disintegrative disorder, and pervasive developmental disorders not otherwise specified (PDD-NOS) as part of ASD rather than as separate disorders. A diagnosis of ASD includes an assessment of intellectual disability and language impairment.


ASD occurs in every racial and ethnic group, and across all socioeconomic levels. However, boys are significantly more likely to develop ASD than girls. The latest analysis from the Centers for Disease Control and Prevention estimates that 1 in 68 children has ASD.

What are some common signs of ASD?

Even as infants, children with ASD may seem different, especially when compared to other children their own age. They may become overly focused on certain objects, rarely make eye contact, and fail to engage in typical babbling with their parents. In other cases, children may develop normally until the second or even third year of life, but then start to withdraw and become indifferent to social engagement.
The severity of ASD can vary greatly and is based on the degree to which social communication, insistence of sameness of activities and surroundings, and repetitive patterns of behavior affect the daily functioning of the individual.
Social impairment and communication difficulties
Many people with ASD find social interactions difficult. The mutual give-and-take nature of typical communication and interaction is often particularly challenging. Children with ASD may fail to respond to their names, avoid eye contact with other people, and only interact with others to achieve specific goals. Often children with ASD do not understand how to play or engage with other children and may prefer to be alone. People with ASD may find it difficult to understand other people’s feelings or talk about their own feelings.
People with ASD may have very different verbal abilities ranging from no speech at all to speech that is fluent, but awkward and inappropriate. Some children with ASD may have delayed speech and language skills, may repeat phrases, and give unrelated answers to questions. In addition, people with ASD can have a hard time using and understanding non-verbal cues such as gestures, body language, or tone of voice. For example, young children with ASD might not understand what it means to wave goodbye. People with ASD may also speak in flat, robot-like or a sing-song voice about a narrow range of favorite topics, with little regard for the interests of the person to whom they are speaking.


Repetitive and characteristic behaviors
Many children with ASD engage in repetitive movements or unusual behaviors such as flapping their arms, rocking from side to side, or twirling. They may become preoccupied with parts of objects like the wheels on a toy truck. Children may also become obsessively interested in a particular topic such as airplanes or memorizing train schedules. Many people with ASD seem to thrive so much on routine that changes to the daily patterns of life — like an unexpected stop on the way home from school — can be very challenging. Some children may even get angry or have emotional outbursts, especially when placed in a new or overly stimulating environment.

What disorders are related to ASD?

Certain known genetic disorders are associated with an increased risk for autism, including Fragile X syndrome (which causes intellectual disability) and tuberous sclerosis (which causes benign tumors to grow in the brain and other vital organs) — each of which results from a mutation in a single, but different, gene. Recently, researchers have discovered other genetic mutations in children diagnosed with autism, including some that have not yet been designated as named syndromes. While each of these disorders is rare, in aggregate, they may account for 20 percent or more of all autism cases.
People with ASD also have a higher than average risk of having epilepsy. Children whose language skills regress early in life — before age 3 — appear to have a risk of developing epilepsy or seizure-like brain activity. About 20 to 30 percent of children with ASD develop epilepsy by the time they reach adulthood. Additionally, people with both ASD and intellectual disability have the greatest risk of developing seizure disorder.

How is ASD diagnosed?

ASD symptoms can vary greatly from person to person depending on the severity of the disorder. Symptoms may even go unrecognized for young children who have mild ASD or less debilitating handicaps. Very early indicators that require evaluation by an expert include:
  • no babbling or pointing by age 1
  • no single words by age 16 months or two-word phrases by age 2
  • no response to name
  • loss of language or social skills previously acquired
  • poor eye contact
  • excessive lining up of toys or objects
  • no smiling or social responsiveness
Later indicators include:
  • impaired ability to make friends with peers
  • impaired ability to initiate or sustain a conversation with others
  • absence or impairment of imaginative and social play
  • repetitive or unusual use of language
  • abnormally intense or focused interest
  • preoccupation with certain objects or subjects
  • inflexible adherence to specific routines or rituals
Health care providers will often use a questionnaire or other screening instrument to gather information about a child’s development and behavior. Some screening instruments rely solely on parent observations, while others rely on a combination of parent and doctor observations. If screening instruments indicate the possibility of ASD, a more comprehensive evaluation is usually indicated.
A comprehensive evaluation requires a multidisciplinary team, including a psychologist, neurologist, psychiatrist, speech therapist, and other professionals who diagnose and treat children with ASD. The team members will conduct a thorough neurological assessment and in-depth cognitive and language testing. Because hearing problems can cause behaviors that could be mistaken for ASD, children with delayed speech development should also have their hearing tested.
top

What causes ASD?

Scientists believe that both genetics and environment likely play a role in ASD. There is great concern that rates of autism have been increasing in recent decades without full explanation as to why. Researchers have identified a number of genes associated with the disorder. Imaging studies of people with ASD have found differences in the development of several regions of the brain. Studies suggest that ASD could be a result of disruptions in normal brain growth very early in development. These disruptions may be the result of defects in genes that control brain development and regulate how brain cells communicate with each other. Autism is more common in children born prematurely. Environmental factors may also play a role in gene function and development, but no specific environmental causes have yet been identified. The theory that parental practices are responsible for ASD has long been disproved. Multiple studies have shown that vaccination to prevent childhood infectious diseases does not increase the risk of autism in the population.
top

What role do genes play?

Twin and family studies strongly suggest that some people have a genetic predisposition to autism. Identical twin studies show that if one twin is affected, then the other will be affected between 36 to 95 percent of the time. There are a number of studies in progress to determine the specific genetic factors associated with the development of ASD. In families with one child with ASD, the risk of having a second child with the disorder also increases. Many of the genes found to be associated with autism are involved in the function of the chemical connections between brain neurons (synapses). Researchers are looking for clues about which genes contribute to increased susceptibility. In some cases, parents and other relatives of a child with ASD show mild impairments in social communication skills or engage in repetitive behaviors. Evidence also suggests that emotional disorders such as bipolar disorder and schizophrenia occur more frequently than average in the families of people with ASD.
In addition to genetic variations that are inherited and are present in nearly all of a person’s cells, recent research has also shown that de novo, or spontaneous, gene mutations can influence the risk of developing autism spectrum disorder. De novo mutations are changes in sequences of deoxyribonucleic acid or DNA, the hereditary material in humans, which can occur spontaneously in a parent’s sperm or egg cell or during fertilization. The mutation then occurs in each cell as the fertilized egg divides. These mutations may affect single genes or they may be changes called copy number variations, in which stretches of DNA containing multiple genes are deleted or duplicated.  Recent studies have shown that people with ASD tend to have more copy number de novo gene mutations than those without the disorder, suggesting that for some the risk of developing ASD is not the result of mutations in individual genes but rather spontaneous coding mutations across many genes.  De novo mutations may explain genetic disorders in which an affected child has the mutation in each cell but the parents do not and there is no family pattern to the disorder. Autism risk also increases in children born to older parents. There is still much research to be done to determine the potential role of environmental factors on spontaneous mutations and how that influences ASD risk.
top

Do symptoms of autism change over time?

For many children, symptoms improve with age and behavioral treatment. During adolescence, some children with ASD may become depressed or experience behavioral problems, and their treatment may need some modification as they transition to adulthood. People with ASD usually continue to need services and supports as they get older, but depending on severity of the disorder, people with ASD may be able to work successfully and live independently or within a supportive environment.
top

How is autism treated?

There is no cure for ASD. Therapies and behavioral interventions are designed to remedy specific symptoms and can substantially improve those symptoms. The ideal treatment plan coordinates therapies and interventions that meet the specific needs of the individual. Most health care professionals agree that the earlier the intervention, the better.
Educational/behavioral interventions: Early behavioral/educational interventions have been very successful in many children with ASD. In these interventions therapists use highly structured and intensive skill-oriented training sessions to help children develop social and language skills, such as applied behavioral analysis, which encourages positive behaviors and discourages negative ones. In addition, family counseling for the parents and siblings of children with ASD often helps families cope with the particular challenges of living with a child with ASD.
Medications: While medication can’t cure ASD or even treat its main symptoms, there are some that can help with related symptoms such as anxiety, depression, and obsessive-compulsive disorder. Antipsychotic medications are used to treat severe behavioral problems. Seizures can be treated with one or more anticonvulsant drugs. Medication used to treat people with attention deficit disorder can be used effectively to help decrease impulsivity and hyperactivity in people with ASD. Parents, caregivers, and people with autism should use caution before adopting any unproven treatments.
top

What research is being done?

The mission of the National Institute of Neurological Disorders and Stroke (NINDS) is to seek fundamental knowledge about the brain and nervous system and to use that knowledge to reduce the burden of neurological disease. The NINDS is a component of the National Institutes of Health (NIH), the leading supporter of biomedical research in the world.  NINDS and several other NIH Institutes and Centers support research on autism spectrum disorder. 

Where can I get more information?

For more information on neurological disorders or research programs funded by the National Institute of Neurological Disorders and Stroke, contact the Institute's Brain Resources and Information Network (BRAIN) at:
BRAIN
P.O. Box 5801
Bethesda, MD 20824
800-352-9424
http://ninds.nih.gov




Site Map
En EspaƱol
National Institutes of Health
Department of Health & Human Services
Download Adobe Plug-In
POLICIES
Accessibility
Freedom of Information Act
Privacy Statement
FOLLOW
Wordpress icon Facebook icon RSS feed icon Twitter icon YouTube icon
Posted by David Balog at 6:42 PM No comments:
Email ThisBlogThis!Share to XShare to FacebookShare to Pinterest
Labels: Aspergers, Autism, brain, children

Tuesday, May 23, 2017

Autism: Thinking in Pictures

In this blog we will look at topics on the brain. Learn along with a copy of our book series, Healing the Brain. Get your copy today. 



My Mind Is a Web Browser:
How People With Autism Think
By: Temple Grandin, Ph.D. (/Authors/Temple_Grandin,_Ph_D_/)
The struggle that made possible Temple Grandin’s early development, graduate education, and notable career as a professor of animal behavior, designer of animal facilities worldwide, and celebrated writer, speaker, and researcher on autism, is told in her books, Emergence: Labeled Autistic (1986) and Thinking in Pictures and Other Reports From My Life With Autism* (Vintage Books, 1996). 

Courtesy the Dana Foundation.
 
Since writing Thinking in Pictures, which described my visual way of thinking, I have gained further insights into how my thought processes are different when compared to those of people who think in language. At autism meetings, I am often asked, “How can you be effective at public speaking when you think in pictures that are like video tapes in your imagination?” It is almost as though I have two levels of consciousness that operate separately. Only by interviewing people did I learn that many of them think primarily in words, and that their thoughts are linked to emotion. In my brain, words act as a narrator for the visual images in my imagination. I can see the pictures in my memory files. 

To use a computer analogy: The language part of my brain is the computer operator, and the rest of my brain is the computer. In most people, the brain’s computer operator and the computer are
page1image14272
merged into one seamless consciousness; but in me they are separate. I hypothesize that the frontal cortex of my brain is the operator and the rest of my brain is the computer.

When I lecture, the language itself is mostly “downloaded” out of memory from files that are like tape recordings. I use slides or notes to trigger opening the different files. When I am talking about something for the first time, I look at the visual images on the “computer monitor” in my imagination, then the language part of me describes those images. After I have given the lecture several times, the new material in language is switched over into “audio tape-recording files.” When I was in high school, other kids called me “tape recorder.”

Non-autistic people seem to have a whole upper layer of verbal thinking that is merged with their emotions. By contrast, unless I panic, I use logic to make all decisions; my thinking can be done independently of emotion. In fact, I seem to lack a higher consciousness composed of abstract verbal thoughts that are merged with emotion. Researchers have learned that people with autism have a decreased metabolism in the area in the frontal cortex that connects the brain’s emotional centers with higher thinking (the anterior cingulate).1 The frontal cortex is the brain’s senior executive, like the CEO of a corporation. Brain scans indicate that people with autism use problem-solving circuits in social situations. Unlike non-autistic people, the emotion center in their amygdala is not activated, for example, when they judge expressions in another person’s eyes.

I do have the ability to control the rate at which pictures come onto the “computer screen” in my imagination. Some people with autism are not able to do this. One person with autism told me that images explode into a web of a pictures that are interrelated. The decision-making process can become “locked up” and overloaded with pictures coming in all at once.

UNMASKING TALENT
I have been fascinated with research indicating that the detailed, realistic pictures that autistic savants—autistic individuals with extraordinary talent in a specific area— make may be created by directly accessing primary memory areas deep in the brain. Researchers in Australia hypothesize that autistic savants may have privileged access to lower levels of information.3 A study with a non-autistic “human calculator,” who could solve multiplication problems twice as quickly as a normal person, indicated that his brain had enhanced low-level processing.4 EEG recordings of his brain waves showed that brain activity was greatest, as compared with a normal person, when the multiplication problem was first flashed on the screen.
When designing livestock equipment in my business, I can do three-dimensional, full-motion videos of equipment and can test-run the equipment in my imagination. I can walk around it or fly over it.
I hypothesize that I am able to access primary visual files in my brain. When designing livestock equipment in my business, I can do three-dimensional, full-motion videos of equipment and can test-run the equipment in my imagination. I can walk around it or fly over it. My ability to rotate the image is slow. I move my mind’s eye around or over the image. 

When I read an article in Neurology about frontal temporal lobe dementia, I became extremely excited. It provided a scientific foundation for the idea of hidden visual thinking under a layer of verbal thinking. Research on frontal temporal lobe dementia, an Alzheimer’s-like condition that destroys language and social areas in the brain, demonstrated that, as the condition progressed, visual skills in art emerged in people who had no interest in art.5 The increase in creativity was always visual, never verbal. Brain scans found the highest activity in the visual cortex. As the patient’s cognitive abilities deteriorated, the art became more photo realistic. Artwork published with the journal article looks like the art of autistic savants.

I SEE THE DECISION PROCESS
I see the decision-making process in my mind in a way most people do not. When I tried to explain this to a person who thinks in language, he just didn’t get it. How my decision-making works is most clearly seen in an emergency. 

On a bright, sunny day, I was driving to the airport when an elk ran into the highway just ahead of my car. I had only three or four seconds to react. During those few seconds, I saw images of my choices. The first image was of a car rear-ending me. This is what would have happened if I had made the instinctive panic response and slammed on the brakes. The second image was of an elk smashing through my windshield. This is what would have happened if I had swerved. The last image showed the elk passing by in front of my car. The last choice was the one I could make if I inhibited the panic response and braked just a little to slow the car. I mentally “clicked” on slowing down and avoided an accident. It was like clicking a computer mouse on the desired picture. 

www.healingthebrainbook.com
 
Posted by David Balog at 8:45 PM No comments:
Email ThisBlogThis!Share to XShare to FacebookShare to Pinterest
Labels: Aspergers, Autism, brain, brain structures, Temple Grandin, thinking
Older Posts Home
Subscribe to: Posts (Atom)

Blog Archive

  • ▼  2026 (2)
    • ▼  July (1)
      • Brain and Behavior Sourcebook
    • ►  May (1)
  • ►  2025 (16)
    • ►  November (2)
    • ►  October (1)
    • ►  September (1)
    • ►  August (5)
    • ►  July (1)
    • ►  June (2)
    • ►  April (1)
    • ►  February (1)
    • ►  January (2)
  • ►  2023 (1)
    • ►  July (1)
  • ►  2022 (9)
    • ►  November (1)
    • ►  June (2)
    • ►  May (2)
    • ►  April (2)
    • ►  March (2)
  • ►  2021 (29)
    • ►  December (3)
    • ►  November (3)
    • ►  October (6)
    • ►  September (10)
    • ►  June (1)
    • ►  May (3)
    • ►  April (3)
  • ►  2020 (16)
    • ►  December (2)
    • ►  November (1)
    • ►  September (1)
    • ►  August (1)
    • ►  July (3)
    • ►  June (2)
    • ►  March (2)
    • ►  February (2)
    • ►  January (2)
  • ►  2019 (22)
    • ►  December (3)
    • ►  November (6)
    • ►  October (7)
    • ►  September (2)
    • ►  August (2)
    • ►  July (1)
    • ►  June (1)
  • ►  2018 (35)
    • ►  November (1)
    • ►  September (1)
    • ►  August (3)
    • ►  July (3)
    • ►  June (3)
    • ►  May (2)
    • ►  April (3)
    • ►  March (8)
    • ►  February (6)
    • ►  January (5)
  • ►  2017 (104)
    • ►  December (12)
    • ►  November (13)
    • ►  October (13)
    • ►  September (7)
    • ►  August (6)
    • ►  July (14)
    • ►  June (14)
    • ►  May (8)
    • ►  March (3)
    • ►  February (2)
    • ►  January (12)
  • ►  2016 (68)
    • ►  December (12)
    • ►  November (24)
    • ►  October (9)
    • ►  September (10)
    • ►  August (6)
    • ►  July (6)
    • ►  January (1)
  • ►  2015 (57)
    • ►  December (3)
    • ►  November (5)
    • ►  October (7)
    • ►  September (8)
    • ►  August (10)
    • ►  July (5)
    • ►  June (4)
    • ►  May (15)
Awesome Inc. theme. Powered by Blogger.