Needed independent and dependent variables in multi-element behavior support plans addressing severe behavior problems.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2022-03-25 eCollection Date: 2022-06-01 DOI:10.1007/s40614-022-00331-4
Gary W LaVigna, Elizabeth C Hughes, Geoff Potter, Matthew Spicer, Linda Hume, Thomas J Willis, Elena Huerta
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引用次数: 3

Abstract

Ethically , behavior analysts are required to use the least aversive and restrictive procedures capable of managing behaviors of concern. This article introduces and discusses a multi-element paradigm for devising support plans that include ecological, positive programming, and focused-support proactive strategies for reducing the frequency of problem behavior occurrence. It also includes reactive strategies, i.e., separate independent variables. In this paradigm, reactive strategies are aimed solely at getting rapid, safe control over the incident, thereby reducing measured and quantified episodic severity. Behavior analysts who publish in mainstream behavioral journals do not always make it explicit how they, in fact, successfully employed non-aversive reactive procedures to achieve rapid/safe control over the severity of a behavioral incident. Three examples of published studies in the behavioral literature which successfully, though only implicitly, used non-aversive reactive strategies (NARS) to reduce the severity of the behaviors of concern are described. The multi-element paradigm discussed in the present article is illustrated by the support plans that address the challenging behavior of three children in a pre-school setting, using both proactive and reactive strategies. Reactive strategies were used for the purpose of reducing episodic severity (ES) and proactive strategies were aimed at reducing the frequency of occurrence. Following a comprehensive functional analysis and assessment (CFA) and the implementation of a multi-element behavior support (MEBS) plan, results show successful outcomes without the need for any aversive or restrictive procedures. When addressing severe behaviors of concern, in addition to reducing behavioral occurrence, safety should also be improved by reducing ES as a measured outcome and as a function of the reactive strategies employed, including in many cases, the use of strategic capitulation, i.e., providing the identified reinforcer for the target behavior.

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在解决严重行为问题的多元素行为支持计划中需要自变量和因变量。
从道德上讲,行为分析师需要使用最少的厌恶和限制性程序来管理关注的行为。本文介绍并讨论了用于设计支持计划的多元素范例,其中包括减少问题行为发生频率的生态、积极规划和集中支持的主动策略。它还包括反应策略,即独立的自变量。在这个范例中,反应性策略的目的仅仅是获得对事件的快速、安全的控制,从而减少可测量和量化的事件严重程度。在主流行为期刊上发表文章的行为分析师并不总是明确说明他们实际上是如何成功地采用非厌恶反应性程序来实现对行为事件严重性的快速/安全控制的。本文描述了三个在行为文献中成功地(尽管只是含蓄地)使用非厌恶反应策略(NARS)来降低关注行为的严重程度的已发表研究的例子。本文讨论的多元素范式通过支持计划来说明,该支持计划使用主动和被动策略来解决学前环境中三个儿童的挑战性行为。反应性策略用于降低发作严重程度(ES),而主动策略旨在降低发作频率。经过全面的功能分析和评估(CFA)和多元素行为支持(MEBS)计划的实施,结果显示成功的结果,无需任何厌恶或限制性程序。在处理令人担忧的严重行为时,除了减少行为发生外,还应通过减少ES作为可测量的结果和所采用的反应性策略的功能来提高安全性,包括在许多情况下使用战略投降,即为目标行为提供已识别的强化物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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