Abstract
Importance
Individuals with disabilities may require adaptations and modifications during swimming instruction.
Objective
The purpose of this scoping review is to summarize the literature on adapted swim instruction including the following: (1) identifying adapted swim strategies; (2) determining which populations have received adapted swim instruction; and (3) identifying gaps in the research.
Data Sources
Six databases were searched for records published on or before September 29, 2025, including: PubMed, Excerpta Medica Database (EMBASE), Cumulative Index of Nursing and Allied Health Literature (CINAHL), SportDiscus, Web of Science, and Education Resources Information Center (ERIC).
Study Selection and Data Collection
Studies were included in this review if they were peer-reviewed, written in English, focused on beginner swimming skill instruction, included participants with disabilities and/or instructors/caregivers of individuals with disabilities, and consisted of original research studies. Studies were excluded if they were not peer-reviewed, not written in English, or not focused on beginning swim instruction.
Findings
Fifty-five studies met inclusion criteria and described interventions for individuals with disabilities. Studies discussed 26 adaptive strategies utilized for swimming instruction. Two studies were Oxford Level 2 studies, indicating randomized-controlled trials and definitive observational studies.
Conclusions and Relevance
There is a lack of robust, high-quality studies on adapted swim instruction, indicating a need for future studies to strengthen the evidence base.
Plain-Language Summary
Drowning is one of the leading causes of death for children ages 0 to 4, and individuals with disabilities are at an even higher risk of death by drowning. Swim lessons are an important tool for drowning prevention but may not be tailored to support the needs of people with disabilities. Adapted swim instruction is an emerging clinical practice area for occupational therapists and other rehabilitation professionals to partner with disabled individuals and their families to support independence in swimming. This review paper describes the literature to date on adapted swim instruction strategies and describes gaps in the literature for clinicians and researchers to address. This article advocates for broader accessibility of adapted swim instruction for people with a variety of disabilities to increase their safety in home and community settings. Future research should utilize rigorous study designs such as randomized controlled trials to strengthen the literature on this important topic.
Positionality
The first author is a white woman who has been working with children and adults with disabilities for nearly 14 years. She is a licensed occupational therapist whose research focuses on developmental disability and functional rehabilitation. The second author is a white woman and licensed occupational therapist who works with children with autism. The third author is a female recreational therapist, university teaching professor, and former triathlete with 15 years of professional experience serving individuals with disabilities. Her teaching and research focus on examining how adapted sports and recreational activities influence health outcomes and quality of life for individuals with disabilities. The fourth author is a white woman and licensed occupational therapist who has an autistic family member. She specializes in clinical intervention research for autistic individuals. The fifth author is a white woman and licensed occupational therapist with extensive clinical experience with children with disabilities, former swim coach, and triathlete. She is now university professor, program director, and is engaged in aquatic therapy research.
What This Article Adds
This study identifies strategies and populations most often studied in adapted swim instruction and provides suggestions for researchers and therapists looking to advance scholarship and practice in this emerging area of intervention.
Swimming is the fourth most popular sport activity in the United States, and the ability to swim can significantly reduce the risk of drowning (Centers for Disease Control and Prevention, 2024). Drowning is a major public health concern, leading to almost 236,000 deaths worldwide in 2019 (Liu et al., 2025). Furthermore, drowning deaths continue to increase in the United States (Clemens et al., 2024). In the United States, approximately 4,500 people die each year from drowning (Centers for Disease Control and Prevention & National Center for Injury Prevention and Control, 2024). Formal swimming lessons are recognized as an important preventative strategy and are widely recommended to reduce the risk of drowning (Centers for Disease Control and Prevention, 2025; Wallis et al., 2015; World Health Organization, 2017).
Several circumstances can increase a person's drowning risk such as low socioeconomic status or racial/ethnic minority status, and disabled individuals are at an especially high risk of accidental drowning (Klosky et al., 2025). While formal swimming lessons are a vital tool for drowning prevention, the approaches used in traditional learn-to-swim swimming instruction programs may require accommodations or modifications to optimize lessons for people with disabilities (American Red Cross, 2014; Gelinas & Reid, 2000). The scientific literature has devoted relatively modest attention to drowning risk and swimming instruction among individuals with disabilities (Peden et al., 2022); a group which accounts for nearly 42.5 million people, or 13% of the civilian noninstitutionalized population in the United States (Crankshaw, 2023). Adapted swimming instruction, or approaches which promote accessibility of swim lessons, can make it possible for people with disabilities to develop swim competence and reduce their risk of accidental drowning (Carson et al., 2025).
Traditional Versus Adapted Swim Instruction
Many traditional swimming instruction programs provide lessons in a controlled aquatic environment such as a pool, and lessons are designed to teach swim skills in order of increasing difficulty (Forde et al., 2020). The progression of skills can include entering the water, breath control, floatation, treading water, and fundamental strokes such as the front crawl, breaststroke, or backstroke (Forde et al., 2020; Stallman et al., 2008). Traditional swimming instruction programs focus on a bottom-up approach in which individuals gradually master simpler components before progressing to more complex components (Gelinas & Reid, 2000). Skills are presented in a linear sequence, and if a swimmer is unable to master a given skill in an early sequence, they may not be permitted to continue onto the next level of instruction (Gelinas & Reid, 2000). While this traditional approach may work well for children without disabilities, it may not be valid for children with disabilities who typically require modifications or accommodations for accessing the instructional environment or for demonstrating and mastering skills (American Red Cross, 2014; Gelinas & Reid, 2000). Teaching swimming skills to individuals with disabilities requires additional knowledge and disability-specific techniques and expertise (Conatser et al., 2000; Conatser & Block, 2001; Kraft & Leblanc, 2018). For example, working with children with diagnoses such as cerebral palsy (CP), Down syndrome (DS), or developmental coordination disorder (DCD), requires knowledge and practical experience in managing the physical aspects of these conditions (e.g., anatomical and physiological variations) (Declerck et al., 2016; Grosse, 2020; Milligan et al., 2022). Specific health factors including physical and neurological aspects of different conditions can impact children's gross motor skills, muscular strength, and endurance which are required for swimming (Forde et al., 2020).
In previous studies, swim instructors have expressed feeling under-qualified to facilitate adapted swim classes for swimmers with disabilities (Carter & Koch, 2023; Conatser et al., 2000). While the literature in adapted swim instruction is emerging, there is not a clear consensus on effective adaptations or modifications for adapted swim instruction. Thus, this scoping review aimed to map the literature-to-date on adapted swim instruction, identify which populations have received adapted swim instruction, describe the strategies used in adapted swim instruction, determine which professions have been providing adapted swim instruction, and identify gaps in the literature for future research to address.
Methods
Procedures
A five-step scoping review framework was applied as follows: (1) identifying the research question; (2) identifying relevant studies; (3) study selection; (4) charting and extracting the data from articles; and (5) collating, summarizing, and reporting the results (Arksey & O’Malley, 2005; Levac et al., 2010). The Preferred Reporting Items for Systematic Reviews and Meta-Analyses Extension for Scoping Reviews (PRISMA-ScR) guidelines were used to guide the study selection process (Tricco et al., 2018).
Inclusion/Exclusion Criteria
Articles were included if they met the following criteria: (1) peer-reviewed; (2) written in English; (3) focused on beginner swimming skill instruction, meaning basic swimming skills such as submersion, treading water, floating, swimming on front, swimming on back, etc.; (4) included participants with disabilities, instructors of individuals with disabilities, or caregivers of individuals with disabilities; and (5) consisted of original research studies. There were no limitations on the date of publication or participant age for the articles included to reflect the emergent nature of this practice and research area. Articles were excluded if they (1) addressed competitive swimming skills (e.g., breaststroke, butterfly, front crawl, and elementary backstroke) or (2) focused on the physiological effects of drowning, aquatic therapy, or benefits of the aquatic environment without addressing beginning swimming skills.
Search Strategy
Six databases were selected for their relevance to swimming and rehabilitation sciences, including: PubMed, Excerpta Medica Database (EMBASE), Cumulative Index of Nursing and Allied Health Literature (CINAHL), SportDiscus, Web of Science, and Education Resources Information Center (ERIC). A university librarian proficient in scoping reviews provided consulting services to optimize the search process, ensuring that relevant databases and results were included. Search terms encompassed the following: adapted OR adaptive OR modified AND disabilities AND swimming AND instruction. The search string for PubMed used MeSH terms to facilitate relevant article retrieval. A comprehensive list of search terms by database is included in Appendix 1. The last search was conducted on September 26, 2025.
Covidence, a web-based platform for conducting systematic and scoping reviews, was used to manage search results including data collection, automatic exclusion of duplicates, and study selection (Veritas Health Innovation, 2025). Study selection followed an iterative process of elimination based on inclusion/exclusion criteria. See Figure 1 for the PRISMA-Scr diagram. The first author, along with the third and fourth authors, independently screened all abstracts, titles, and keywords to determine whether they met inclusion criteria. Any disagreements were resolved through discussion. Abstracts marked “Yes” or “Maybe” were reviewed as full texts to determine whether they met the inclusion criteria. Excluded full-texts were agreed upon by two authors and categorized by exclusion reason (e.g., wrong study population). Hand searches of references were completed for all included full texts.

PRISMA flow diagram of the study selection process. The flowchart illustrates the stages of screening and inclusion, mapping the number of unique records identified, screened, assessed for eligibility, and ultimately included in the systematic review. Managed and generated via Covidence systematic review software.
Data Charting
A list of variables of interest was created by the research team and compiled by the first and second authors into a data extraction chart including the study's origin (location of the work), study design (methodological approach), purpose (research objective), sample size (number of participants), participants age (age of study sample in years), participant disability category (conditions/diagnosis), intervention (specific approach to swimming instruction, if any), variables measured (assessments/outcomes), summary of findings (statistical results/qualitative findings), and level of evidence (Oxford level). The first and third authors independently rated each study using Oxford levels and resolved disagreements using discussion. Adapted swim strategies were extracted from each article charted in a separate table. Numerical syntheses were used to classify the types and quantities of each study design included, and the levels of evidence represented. The extracted articles were then examined in-depth to identify any text belonging to the code “adapted strategies or equipment.” If data were missing from articles, the first author contacted study authors for clarification. Extracted data were limited to what was explicitly written in each study's text.
Strategies used in included articles were extracted by the first and second authors using an inductive approach to allow patterns, themes, and categories to emerge organically from the articles rather than applying a predetermined framework. Through repeated, systematic reading of studies, the second author coded instructional methods, learner adaptations, environmental modifications, and outcome measures as they naturally appear, gradually clustering these observations into broader thematic categories. The first author reviewed, confirmed, and revised the strategies selected by the second author. This bottom-up analytic process was followed as adapted swim instruction practices in the literature proved diverse, context-specific, or under-theorized. The approach allowed the authors to capture nuances and innovative strategies that a predefined framework might overlook.
Results
For this scoping review, 55 articles were selected and summarized (Table 1) for variables of interest including the origin, study design, purpose, sample size, participant age, participant disability, intervention, variables measured, summary of findings, and level of evidence. Adapted swim strategies used in studies were organized according to frequency in Table 2. Studies originated from a total of 18 countries, with most being from the United States (n = 21) followed by Turkey (n = 7), Canada (n = 3), the Czech Republic (n = 3), Italy (n = 3), Israel (n = 3), Taiwan (n = 3), and Serbia (n = 2). There were 11 other countries represented. The most common study design was one group pretest–posttest design (n = 13) followed by pretest–posttest with control group (n = 11), multiple case (n = 11), qualitative (n = 7), single case (n = 5), observational study (n = 2), within-participant repeated measures (n = 2), mixed methods (n = 2), and randomized controlled trials (RCTs; n = 2). Studies were determined to be the following Oxford Levels: Level 2, indicating the strongest evidence outside of systematic reviews of randomized controlled trials and consisting of randomized controlled trials or observational studies with dramatic effects (n = 2), level 3, indicating nonrandomized controlled studies (n = 35), or level 4, indicating case-series or case-control studies (n = 18). The purpose of each study, details about each intervention, variables observed, and summaries of findings for each study can be located in Table 1. While participants from a variety of diagnostic categories were represented in the literature, most studies targeted autism (n = 38) followed by CP(n = 14), DS (n = 2), intellectual disability (n = 2), spinal cord injury/spina bifida (n = 2), or other (n = 2). Most interventions were conducted by swim instructors (n = 29), followed by physical educators (n = 8), healthcare students (n = 6), occupational therapists (n = 5), physical therapists (n = 4), special educators (n = 4), physiotherapists (n = 3), recreational therapists (n = 3), adapted physical activity instructors (n = 2), educators (n = 2), speech-language pathologists (n = 2), and a medical doctor (n = 1). Studies had relatively small sample sizes, with the largest number of studies reporting a sample size of 24 participants or less (n = 41) followed by sample sizes of 25 to 49 participants (n = 10), 50 to 99 participants (n = 2), and 100 or more participants (n = 2). Most studies included samples with only one diagnosis (n = 50) although some included participants from two or more diagnostic groups (n = 5). Studies included a wide variety of ages, including 0 to 4 years (n = 4), 5 to 12 years (n = 42), 13 to 17 years (n = 12), 18 to 30 years (n = 7), and 30 + years (n = 1). Note that some studies had samples with wide age ranges and therefore were counted under more than one age group. Oxford levels: level 2, indicating the strongest evidence outside of systematic reviews of RCTs and consisting of RCTs or observational studies with dramatic effects (n = 5), level 3, indicating non-randomized controlled studies (n = 22), or level 4, indicating case-series or case-control studies (n = 28).
Data Extraction Chart.
Note: AP = adapted physical activity teacher; BMI=body mass index; CI-MAT = multisystem aquatic therapy; CP= cerebral palsy; DS = Down syndrome; E = educator; HS = healthcare student; I = swim instructor; MLP = most-to-least prompting; OT = occupational therapist; MD = medical doctor; P = physiotherapist; PE = physical education teacher; PT = physical therapist; RCT = randomized controlled trial; RT = recreational therapist; SCI = spinal cord injury; SE = special educator; SLP = speech language pathologist; YMCA = Young Men's Christian Association. N/A: indicates that due to study design, the data points are not applicable. . *In studies where participants are coaches or caregivers speaking about individuals with disabilities, ages, sample sizes, and disabilities included in the extraction chart are those of the individuals with disabilities (not caregivers or coaches). **Three corresponding authors were contacted via email for clarification regarding missing data for participants’ ages.
Data Charting Summary—Question 2: What Adapted Swim Instruction Strategies Have Been Described (and in What Populations)?
Note. ∼ = average; ADHD = attention deficit hyperactivity disorder; CI-MAT = multisystem aquatic therapy; CP = cerebral palsy; CTD= continuous time delay; DS = Down syndrome; f = frequency of articles that supported use of the strategy; LE: Lower extremity; MLP= most-to-least prompting; RA = rheumatoid arthritis; SCI = spinal cord injury; TBI = traumatic brain injury; UE: Upper extremity; VAS = visual activity schedule.
Discussion
This scoping review aimed to survey the literature on adapted swim instruction, identifying populations served and strategies utilized while also highlighting gaps in current scholarship. We identified 55 articles meeting inclusion criteria across 18 countries, underscoring the global interest in adapted swim instruction worldwide. The diagnoses studied most were autism, followed by cerebral palsy. A list of 26 strategies employed by studies was identified.
Strategies
To guide the application of these strategies in clinical practice, we draw upon the Person-Environment-Occupation Model (PEO), a foundational framework in occupational therapy practice that emphasizes the dynamic interaction among individual characteristics, contextual factors, and performance outcomes (Law et al., 1996). Within this framework, the Person refers to the individual swimmer with a disability who brings their unique emotional responses to the aquatic setting, prior experiences with swimming instruction, and disability-related factors that impact swimming participation. The adapted swim instruction strategies that were identified primarily targeted the Environment by optimizing the person–environment fit for each swimmer, such as incorporating structured opportunities for play, maintaining a low instructor to swimmer ratio, ensuring positive learning environment (e.g., positive feedback), and using instructors trained to support diverse learners, among other strategies found. By enhancing the alignment between the swimmer and the instructional environment, adapted swim instruction aims to improve occupational performance, operationalized here as the acquisition and execution of swim skills. While several strategies were reported across nearly half of all 55 studies (e.g., smaller instructor to swimmer ratios, n = 35; play-based approaches, n = 26; teaching skills through progressions, n = 25; and utilizing instructors with disability-focused training, n = 24; and individualized approaches, n = 24), it is noteworthy that no strategy was reported across all 55 studies. The heterogeneity of strategies likely reflects the client-centered nature of adapted swimming instruction, as well as the emerging state of this area of research and the current lack of empirical evidence needed to establish best practices or gold standards.
Adaptations were mentioned in each study, indicating their importance in the approach to swimming instruction for swimmers with disabilities. Presently, aquatic professionals who are interested in aquatics are expected to gain competency in and develop accommodations and modifications on their own time when asked to teach swimmers with disabilities. However, many of these strategies require extra training and education to fully master. Traditionally, swimming instructors can be as young as 16 years old and may not have the training needed to support swimmers with disabilities. Parents often report that their children do not learn to swim in typical swimming instruction lessons (Cosart et al., 2025; Lawson et al., 2019) indicating the need for greater access to instructors who have the skills necessary to provide adapted swim instruction. Questions also remain regarding standardized assessments, outcome measures, and what duration and frequency of specific approaches are optimal for different populations.
Professions
Occupational therapists, therapy assistants, and other rehabilitation professionals (e.g., recreational therapists, physical therapists, and speech and language pathologists) are highly skilled at using adaptive techniques and strategies to meet the unique learning needs of children with disabilities as described in the current adapted swim instruction research. Rehabilitation providers are well-equipped to assess individuals, match them to the environment, and instruction techniques needed to teach swimming skills to individuals with a variety of disabilities. However, rehabilitation professionals may not have formal training in swimming instruction and water safety education. Most adapted swimming lessons in the current literature were provided by swim instructors compared with rehabilitation providers such as occupational or physical therapists, meaning that rehabilitation providers are notably underrepresented in the research despite their qualifications.
Populations
While studies were conducted in a variety of countries worldwide, most studies originated in the United States, a Westernized country with significant economic and sociocultural resources. However, more information is needed where drowning rates are highest such as low-income countries with limited support structures or access to appropriate safeguards (Xie et al., 2025). In countries such as these, disability services and inclusion remain a challenge, and interventions to address learning to swim could be met with greater stigmatization (Global Disability Summit, 2025). Additionally, research has primarily focused on school-age children and individuals with autism or cerebral palsy with relatively fewer studies addressing other disabilities, or other age groups. Most studies were non-RCTs with smaller sample sizes, meaning that RCTs with larger sample sizes are sorely needed. It is vital that future research on adapted swim instruction represent the challenges faced by disabled swimmers in these contexts.
Limitations
This scoping review was limited to original research that was peer-reviewed and written in English regarding interventions focused on beginning swimming skills. The omission of gray literature limits this review to work that has been peer-reviewed and may have missed emerging strategies described in clinical magazines, blogs, conference proceedings, and other gray literature outlets of dissemination. This study was also limited to articles published in English. While the authors did contact authors from included studies with missing information for variables of interest (e.g., participant ages), this study did not seek stakeholder confirmation of the scoping review findings, and the conclusions are limited to the authors’ understanding and interpretation of the included studies.
Gaps in Current Research and Suggestions for Future Directions
Many included studies are classified as levels 3 and 4 and are considered lower levels of evidence. Studies also had wide ranges of ages and disabilities needing vastly different types and amounts of adaptations, making it difficult to generalize results across populations. This indicates a need for more RCTs, especially trials tailored to single disability groups with similar instructional needs, to strengthen the evidence base for adapted swim instruction. Future research should focus on narrowing age and/or developmental ranges to strengthen experimental control and provide improved rigor.
Data extracted from the articles regarding adapted swim instruction strategies included both strategies that were utilized in interventions being tested and strategies that were mentioned. For example, one article looked at the effectiveness of using a multisensory aquatic treatment program (Caputo et al., 2018). However, throughout the article, they also referenced other strategies that were included in untested aspects of the treatment program (e.g., swimmer to instructor/therapist ratios and play-based approaches). Therefore, the adapted swim instruction strategies summarized in this article should be interpreted with caution, as therapeutic tools reported or discussed by multiple studies rather than tools empirically tested by all of the studies.
Implications for Occupational Therapy Practice
Occupational therapists and occupational therapy assistants are distinctly qualified to contribute to drowning-prevention initiatives through the provision of therapeutic swim instruction. Guided by the Person–Environment–Occupation (PEO) model and grounded in core occupational therapy processes—including activity analysis, grading and adapting tasks, and supporting engagement in meaningful occupations—practitioners bring a uniquely holistic and client-centered approach to teaching this essential life-saving skill. By addressing individual factors, environmental demands, and occupational performance needs, occupational therapy practitioners can enhance safe and effective participation in aquatic environments for individuals with disabilities, thereby advancing health, wellbeing, and occupational participation.
Conclusions
While many studies on adapted swim instruction have been conducted worldwide, the field is still an emerging area of research and practice. There is a need for research in adapted swim instruction focused on creating RCTs with larger sample sizes that either target a specific disability population or include stratified samples for each disability represented. More research is needed on the effectiveness of individual strategies for successful swim instruction, as current evidence favors anecdotal and low level evidence as opposed to rigorous or experimental data. Adapted swim lessons for disabled individuals include strategies that require training, such as using adaptive equipment, physical support and positioning, and evaluations and assessments. Occupational therapists and other rehabilitation professionals have expertise in these strategies as well as habilitation skills necessary for swimming. By compiling adapted swim instruction strategies most often used in research studies, we hope we will provide valuable tools for rehabilitation professionals seeking to tailor the swimming environment to individual swimmers. Our aim is to increase the utility of our findings for those seeking to integrate modified swim instruction into their practice.
Footnotes
Acknowledgements
The authors would like to thank Daniela Galvez and Alexandra Palacio-Raine for assistance with literature review.
Funding
The authors declare financial support was received for the research, authorship, and/or publication of this article: This work was supported by the Office of the Assistant Secretary of Defense for Health Affairs through the Autism Research Program under Award No. HT9425-25-1-0126 (or AR240070). Opinions, interpretations, conclusions, and recommendations are those of the authors and are not necessarily endorsed by the Department of Defense.
Declaration of Conflicting Interests
The authors declared no potential conflicts of interest with respect to the research, authorship, and/or publication of this article.
Author Biographies
Appendix 1. Expanded List of Databases and Search Terms
| Database | Search Terms |
|---|---|
| PubMed | (“adapted” or “adaptive”) AND (“disability” or “disabled” or “autism” OR “asd” or “down syndrome” or “cerebral palsy” OR “asperger” or “spinal cord injury” or “intellectual disability” or “muscular dystrophy” OR “brain injury” OR “impairments” OR “persons with disabilities”[MeSH Terms]) AND (“swim” or “swimming” or “swimmers” or “water safety” or “non-swimmers” OR “Swimming”[Mesh]) AND (“construction” or “lesson” or “training” or “program” or “skill” or “education” or “classes”) |
| Embase | (‘adaptive’ OR ‘adapted’ OR ‘modified’ OR ‘tailored’) AND (‘disability'/exp OR ‘disabled person'/exp OR ‘developmental disorder'/exp OR ‘intellectual disability'/exp OR ‘autism spectrum disorder'/exp OR ‘physical disability'/exp OR ‘disability':ti,ab) AND (‘swimming'/exp OR ‘aquatic exercise'/exp OR ‘learn to swim’ OR ‘swimming lesson’ OR ‘aquatics':ti,ab OR ‘swimming':ti,ab) AND (‘instruction':ti,ab OR ‘lesson':ti,ab OR ‘training':ti,ab OR ‘program':ti,ab) NOT (‘smoking cessation'/exp OR ‘drug rehabilitation'/exp OR ‘mental health program’ OR ‘diet'/exp OR ‘weight reduction'/exp) AND [embase]/lim AND [humans]/lim AND ‘article'/it AND [english]/lim |
| CINAHL | MH “Swimming” AND (MH “Persons with Disabilities” OR MH “Children with Disabilities” OR MH “Persons with Intellectual Disabilities” OR MH “Intellectual Disability”) AND MH “Programmed Instruction” OR MH “Swimming/ED” |
| Sportdiscus | (DE “SWIMMING instruction” OR DE “SWIMMING”) AND (DE “DISABILITIES” OR DE “PEOPLE with disabilities” OR DE “PEOPLE with intellectual disabilities” OR DE “DEVELOPMENTAL disabilities” OR DE “DOWN syndrome” OR DE “CEREBRAL palsy” OR DE “PEOPLE with cerebral palsy” OR DE “AUTISTIC athletes”) AND (“adaptive” OR “adapted”) |
| Web of Science | (((((((((((((ALL=(adapted)) OR ALL=(adaptive)) OR ALL=(modified)OR ALL=(tailored) AND ALL=(disability)) OR ALL=(disabled)) OR ALL=(down syndrome)) OR ALL=(autism)) OR ALL=(ASD)) OR ALL=(cerebral palsy)) OR ALL=(persons with disabilities)) AND ALL=(swimming)) OR ALL=(water safety)) OR ALL =(learn to swim)) AND ALL=(instruction)) |
| ERIC | (“adaptive” OR “adapted” OR “modified”) AND (“swimming” OR “aquatics” OR “swimming instruction” OR “water safety” OR “learn to swim” OR “beginner swimmer” OR “non-swimmer”) AND (“disabilities” OR “disabled” OR “autistic” OR “ASD” OR “Down syndrome” OR “cerebral palsy” OR “people with disabilities” OR “intellectual disability” OR “developmental disability”) AND (“swimming instruction” OR “instruction” OR “education” OR “classes” OR “training”) |
