Planning Strategies in Students with Dyscalculia

This study aims to evaluate a fundamental executive function, specifically the planning strategy, in third-grade primary students diagnosed with dyscalculia. Utilizing a case study approach, a deliberately chosen sample of five (5) students, ages 8 to 9 and identified with dyscalculia, was analyzed. For hypothesis validation, diagnostic subtests from the Zareki R battery and the complex Figure de Rey test were employed. The outcomes revealed the presence of significant planning strategy disorders among the dyscalculic students. In light of these findings, it is recommended that further research be conducted to explore executive functions, particularly the planning strategy, within dyscalculic student populations to enhance their academic resilience and address the educational challenges posed by dyscalculia

Find the study HERE

He woke up one day and started counting. They said that he has hypercalculia.

Hypercalculia is a rare developmental condition characterized by exceptionally heightened, precocious, or prodigious mathematical calculation abilities, particularly in mental arithmetic. Often associated with autism spectrum disorder (ASD) and savant syndrome, it involves skills that far exceed the individual’s general intellectual functioning

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11 Behaviors That Seem Rude But Are Actually Signs Of Neurodivergence, According To Research

There are many behviors our society typically considers to be rude, but for people whose brains are wired somewhat differently, these same actions may simply be what comes naturally. Traditionally, societal standards have been established by neurotypical people — meaning people whose brains “function in a similar way to most of their peers.” And what their standards fail to acknowledge is that there are many behaviors that may seem rude but are actually signs of neurodivergence.

We now know that somewhere between 15-20% of the world’s population is neurodivergent, with conditions such as dyslexia, dyspraxia, ADHD, autism, dyscalculia, and Tourette’s syndrome. For these individuals, some commonly disliked ways of being or speaking are far more comfortable than those society would consider more appropriate.

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When the Parietal Lobes Don’t Work as Usual

The parietal lobe, situated at the top of the brain, is a multifaceted region responsible for processing sensory information, spatial awareness, attention, and motor control. Let us take a look at more disorders arising from dysfunction of the parietal lobe.

Balint’s Syndrome

Balint’s syndrome is like having blinders on your mind, not your eyes. It’s a condition where your brain has trouble putting together the whole picture of what you’re seeing. Imagine looking at a forest but only being able to see one tree at a time. Or trying to reach for a cup but missing it completely because you can’t guide your hand correctly.

This happens because of damage to a specific part of your brain called the parietal lobe. This area is important for understanding where things are in space and how to move your body in relation to them. When it’s injured, it can cause a mix of problems with vision and movement.

People with Balint’s syndrome often have trouble focusing their eyes on things, making it hard to follow objects as they move. They might also struggle to see more than one thing at a time, like the words on a page or the people in a room. And even if they can see something, they might have trouble reaching for it or picking it up.

It’s important to remember that people with Balint’s syndrome can see clearly, but their brain is having trouble processing the information. This can make everyday life very challenging, but with the right support and therapy, people can learn to adapt and manage the condition.

Dyscalculia

Dyscalculia is like having a foggy brain when it comes to numbers. It’s a learning difficulty that makes it hard to understand and use numbers. It’s not because someone is lazy or stupid; it’s how their brain works.

Imagine trying to learn a foreign language where the grammar rules just don’t click. That’s kind of what it’s like for someone with dyscalculia and numbers. Simple things like adding, subtracting, or even telling time can be a real struggle. It’s like having a puzzle with missing pieces when it comes to math.

This difficulty comes from differences in the brain. Researchers think that certain areas involved in number processing might not work as efficiently in people with dyscalculia. It’s important to remember that everyone’s brain is different, and having dyscalculia doesn’t mean someone isn’t smart. With the right support and strategies, people with dyscalculia can learn to manage their challenges and succeed.

Read more about this HERE