The first module in the Intensive Intervention Math Course Content focuses on the mathematics content necessary to include within intensive intervention. This includes matching decisions about instruction and assessment to the mathematics content.
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Implementation Guidance and Considerations
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This module focuses on behavioral theory and is an introduction to observing and measuring behavior. By the end of this module, you should be able to: Describe the rationale and importance of behavior support Define and identify elements of basic behavioral theory including three-term contingency, reinforcement, punishment and extinction Define and describe the function of behavior
In this video, you will hear about the history of the National Center on Intensive Intervention (NCII) and its approach to intensive intervention, data-based individualization (DBI). The video shares where this worked started and how it has grown and evolved over the last 10 years
In this video, Dr. Chris Lemons shares considerations for implementing DBI to support students with intellectual and developmental disabilities. In this short video, he shares what we know, areas we need to understand better, research that is underway, and places to learn more.
In this video, Dr. Lynn Fuchs, Nicholas Hobbs Professor of Special Education and Human Development at Vanderbilt University and Senior Advisor to the National Center on Intensive Intervention, shares advice regarding access to the general education curriculum for students with disabilities.
In Module 3 of the Intensive Intervention in Mathematics Course Content we emphasize the necessity for using evidence-based interventions or strategies as the starting point of instruction within intensive intervention. In this module, educators will learn about: (1) The umbrella term of evidence-based practices and different types of evidence-based practices; (2) Where to locate evidence-based practices; (3) How to design the instructional platform for use within intensive intervention.
This video shows how to use the set model to represent the fraction 3/4 with two-colored counting chips and clips. Individual chips within the set, represent the fractional parts. It is important that students be exposed to the set model because fractions in real-world settings are often represented this way.
This video demonstrates how to use fraction circles to help students compare the value of several fractions with different numerators and denominators. The use of direct modeling with concrete manipulatives, such as fractions circles, allows students to develop conceptual understanding of fractions before they attempt to compare fractions without concrete manipulatives or pictorial representations. After students have had multiple opportunities to practice comparing fractions with concrete manipulatives, they may be ready to use other strategies such as mental images and reasoning strategies.
This lesson includes a tip sheet and a video tutorial that demonstrates how to create and implement the 5-point scale in a virtual setting.
In this Voices From the Field piece, the National Center on Intensive Intervention (NCII) talks with Amy Campbell. Mrs. Campbell has been teaching special education for 12 years in the Camas School District in southwest Washington state, working with students who experience moderate to profound impact from expressive and receptive communication barriers as well as other disabilities or conditions.