
Dyscalculia Training Course
This Dyscalculia Training Course gives educators, psychologists, and specialist practitioners the knowledge and tools to accurately identify, assess, and support learners with dyscalculia. From neurological foundations to targeted intervention design, every module is grounded in current research and built for real-world application.
What you will learn:
You will develop a thorough understanding of dyscalculia, including its neurological basis, cognitive profiles, and how it differs from general math difficulty. You will learn to select and administer validated assessment tools, interpret results, and write professional diagnostic reports. The course covers evidence-based intervention principles, from explicit instruction and the Concrete-Representational-Abstract sequence to fluency-building routines. You will also gain practical strategies for classroom accommodations, emotional support, and family collaboration. Finally, you will build skills in progress monitoring, assistive technology, and culturally responsive practice.
How you study in practice Dyscalculia Training Course
How you practise Dyscalculia Training Course
For companies looking to train their teams
With Dedika for Businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Dyscalculia
Foundations of Dyscalculia
Lesson 1 • Defining Dyscalculia Accurately
Clarifies the clinical and educational definitions of dyscalculia, distinguishing it from general math difficulty. Sets the conceptual baseline for the entire course.
Lesson 2 • Dyscalculia Within the Learning Disability Spectrum
Positions dyscalculia relative to dyslexia, ADHD, and other co-occurring conditions. Prepares practitioners to manage complex, overlapping profiles.
Lesson 3 • Prevalence and Population Data
Examines global prevalence estimates and demographic patterns of dyscalculia. Grounds practitioners in evidence-based scope of the condition.
Lesson 4 • Types and Subtypes of Dyscalculia
Introduces proposed subtypes based on cognitive profiles and error patterns. Enables practitioners to recognise varied presentations in real learners.
Lesson 5 • Historical and Theoretical Background
Traces the evolution of dyscalculia research from early case studies to current cognitive models. Provides theoretical context for understanding modern assessment approaches.
Chapter 2HideHide detailsSee detailsNeurological and Cognitive Underpinnings
Neurological and Cognitive Underpinnings
Lesson 1 • Brain Regions Supporting Number Processing
Maps key neural structures involved in numerical cognition, focusing on the intraparietal sulcus and related networks. Connects neuroanatomy to observable learning difficulties.
Lesson 2 • Core Number Sense and Its Deficits
Explains the approximate number system and exact number system and how deficits in each manifest. Links core number sense theory to dyscalculia symptom profiles.
Lesson 3 • Cognitive Profiles and Individual Variation
Describes how processing speed, attention, and language interact with numerical cognition. Prepares practitioners to interpret heterogeneous learner profiles.
Lesson 4 • Working Memory and Dyscalculia
Analyzes how phonological, visuospatial, and central executive components of working memory affect math performance. Informs targeted memory-support strategies.
Lesson 5 • Neuroplasticity and Intervention Implications
Reviews evidence for brain plasticity in response to targeted numerical training. Establishes the neurological rationale for early and sustained intervention.
Chapter 3HideHide detailsSee detailsIdentifying and Assessing Dyscalculia
Identifying and Assessing Dyscalculia
Lesson 1 • Dynamic and Ongoing Assessment
Introduces dynamic assessment and progress-monitoring frameworks as complements to static testing. Supports responsive, data-driven adjustment of interventions over time.
Lesson 2 • Interpreting and Reporting Assessment Data
Teaches score interpretation, discrepancy analysis, and professional report writing. Connects assessment findings directly to actionable intervention recommendations.
Lesson 3 • Assessment Principles and Frameworks
Establishes psychometric principles—reliability, validity, and standardization—as the foundation for dyscalculia assessment. Ensures practitioners evaluate tools critically before use.
Lesson 4 • Comprehensive Diagnostic Assessment
Guides practitioners through full diagnostic evaluation including cognitive, academic, and behavioral measures. Produces a complete profile distinguishing dyscalculia from other causes of math difficulty.
Lesson 5 • Screening Tools and Early Identification
Surveys validated screening instruments suitable for classroom and clinical use across age ranges. Enables rapid, low-cost identification of at-risk learners.
Chapter 4HideHide detailsSee detailsEvidence-Based Intervention Principles
Evidence-Based Intervention Principles
Lesson 1 • Multisensory Instructional Approaches
Integrates visual, auditory, kinesthetic, and tactile channels to reinforce numerical concepts. Explains how multisensory input reduces cognitive load for learners with dyscalculia.
Lesson 2 • Retrieval Practice and Spaced Learning
Applies cognitive science principles of retrieval practice and spaced repetition to math fact fluency. Provides practitioners with scheduling and activity design guidance.
Lesson 3 • Explicit and Systematic Instruction
Defines explicit instruction components—modeling, guided practice, and corrective feedback—as the core delivery method. Demonstrates why structured sequences outperform discovery-based approaches for dyscalculia.
Lesson 4 • Concrete-Representational-Abstract Progression
Explains the CRA instructional sequence for building conceptual understanding before procedural fluency. Anchors all subsequent intervention chapters in this foundational framework.
Lesson 5 • Scaffolding and Gradual Release
Describes scaffolding techniques that temporarily support learners and are systematically faded. Ensures practitioners build learner independence rather than dependency.
Chapter 5HideHide detailsSee detailsDesigning Targeted Intervention Programs
Designing Targeted Intervention Programs
Lesson 1 • Developing Procedural and Conceptual Understanding
Balances procedural algorithm instruction with conceptual understanding of operations. Prevents rote learning without meaning, which is a common failure mode in dyscalculia support.
Lesson 2 • Building Arithmetic Fact Fluency
Sequences instruction from counting strategies through derived facts to automatic retrieval. Provides practitioners with fluency-building routines grounded in cognitive science.
Lesson 3 • Structuring Number Sense Interventions
Designs activities targeting quantity discrimination, counting principles, and number relationships. Builds the numerical foundation required for all higher-order math skills.
Lesson 4 • Setting Goals and Prioritizing Skills
Guides practitioners in writing measurable goals aligned to assessment findings and curriculum demands. Establishes a skill hierarchy that sequences intervention targets logically.
Lesson 5 • Intervention Scheduling and Intensity
Specifies session frequency, duration, and group size parameters supported by intervention research. Enables practitioners to design realistic, high-impact intervention schedules.
Chapter 6HideHide detailsSee detailsClassroom Accommodations and Universal Design
Classroom Accommodations and Universal Design
Lesson 1 • Environmental and Classroom Setup
Addresses physical and digital classroom arrangements that reduce cognitive overload for learners with dyscalculia. Connects environmental design to attention and working memory demands.
Lesson 2 • Instructional Accommodations for Dyscalculia
Catalogs evidence-supported accommodations including extended time, calculator use, and graphic organizers. Teaches practitioners to match accommodations to specific cognitive profiles.
Lesson 3 • Modifying Assessments Fairly
Distinguishes accommodations from modifications and guides practitioners in designing fair, valid assessments. Ensures assessment data remain meaningful while reducing construct-irrelevant barriers.
Lesson 4 • Differentiated Instruction Strategies
Provides frameworks for differentiating content, process, and product in math lessons. Enables teachers to serve diverse learners within a single classroom efficiently.
Lesson 5 • Universal Design for Learning in Math
Applies UDL principles—multiple means of representation, action, and engagement—to math instruction. Reduces barriers proactively rather than retrofitting accommodations after the fact.
Chapter 7HideHide detailsSee detailsSupporting Emotional and Motivational Needs
Supporting Emotional and Motivational Needs
Lesson 1 • Family and Peer Support Systems
Guides practitioners in engaging families and peers as positive influences on math attitudes. Extends the supportive environment beyond the classroom to home and social contexts.
Lesson 2 • Building Mathematical Self-Efficacy
Applies Bandura's self-efficacy framework to math learning, focusing on mastery experiences and attribution retraining. Provides concrete strategies to shift learners from helplessness to agency.
Lesson 3 • Math Anxiety: Causes and Effects
Explains the neurological and psychological mechanisms of math anxiety and its bidirectional relationship with dyscalculia. Establishes why affective support is inseparable from academic intervention.
Lesson 4 • Reducing Math Anxiety in Practice
Provides classroom-ready techniques including mindfulness, low-stakes practice, and positive framing. Directly reduces anxiety barriers that impede access to math instruction.
Lesson 5 • Motivation and Growth Mindset
Integrates growth mindset research with dyscalculia-specific motivational challenges. Equips practitioners to foster persistence and effort-based attributions in math learners.
Chapter 8HideHide detailsSee detailsMonitoring Progress and Evaluating Outcomes
Monitoring Progress and Evaluating Outcomes
Lesson 1 • Graphing and Interpreting Progress Data
Teaches practitioners to graph time-series data and apply trend analysis to judge intervention effectiveness. Converts raw data into actionable instructional decisions.
Lesson 2 • Adjusting Interventions Based on Data
Provides decision frameworks for intensifying, modifying, or discontinuing interventions based on progress data. Prevents prolonged ineffective instruction and accelerates learner growth.
Lesson 3 • Progress Monitoring Frameworks
Introduces tiered progress monitoring systems aligned to intervention intensity levels. Establishes the frequency and method of data collection appropriate to each support tier.
Lesson 4 • Communicating Progress to Stakeholders
Develops practitioner skills in translating data into clear, jargon-free reports for families, educators, and administrators. Ensures all stakeholders understand progress and next steps.
Lesson 5 • Summative Evaluation of Program Effectiveness
Guides practitioners in conducting summative evaluations of dyscalculia programs at the group and school level. Produces evidence for program continuation, scaling, or redesign.
Your valid completion certificate
This course is for you:
Special education teacher: wants structured tools for numeracy-specific learning needs.
Educational psychologist: seeks deeper specialisation in numerical cognition assessment.
School counsellor: supports students whose math struggles affect confidence and wellbeing.
Occupational therapist: addresses functional numeracy barriers in paediatric or adult clients.
Career changer entering disability services: building foundational expertise in learning differences.
Private tutor or learning coach: ready to formalise knowledge and serve complex learners.
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