Autistic Employees’ Technology-Based Workplace Accommodation Preferences Survey—Preliminary Findings
Abstract
:1. Introduction
1.1. Prior Studies on Technology-Based Workplace Accommodations
1.2. The Aim of Research
2. Methods
2.1. Procedure
- (1)
- (2)
- (3)
- (4)
- Electronic forms of communication (instant messaging, chat rooms, discussion forums, chatbots);
- Speech synthesizers (text-to-speech);
- Flexible working time;
- Remote work (cloud computing, virtual teams, home office);
- Computer and mobile applications facilitating work-time control and task prioritization (clear instructions and work structure);
- Ongoing support by a job coach/consultant;
- Organization of work using solutions employing virtual reality (avatars, virtual office);
- Organization of work using gamification;
- Stress measurement combined with dynamic customization of office environment parameters (temperature, humidity, noise, smell, sunlight exposure);
- Stress level measurement with up-to-date stress level increase notifications (wrist-worn device);
- Arrangement of office space according to the needs of autistic employees (chill rooms, avoiding bright colours, working with headphones);
- Personalization of the workplace according to the individual preferences of users (furniture and office equipment; adjusting the parameters of the environment: temperature, humidity, noise, smell, sunlight exposure).
2.2. Participants
2.3. Statistical Analysis
3. Results
4. Discussion
4.1. Implications
4.2. Limitations
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Doyle, N. Neurodiversity at work: A biopsychosocial model and the impact on working adults. Br. Med. Bull. 2020, 135, 108–125. [Google Scholar] [CrossRef] [PubMed]
- Krzeminska, A.; Austin, R.; Bruy_ere, S.; Hedley, D. The advantages and challenges of neurodiversity employment in organizations. J. Manag. Organ. 2019, 25, 453–463. [Google Scholar] [CrossRef]
- Johnson, K.R.; Ennis-Cole, D.; Bonhamgregory, M. Workplace Success Strategies for Employees With Autism Spectrum Disorder: A New Frontier for Human Resource Development. Human Resour. Dev. Rev. 2020, 19, 122–151. [Google Scholar] [CrossRef]
- Brooke, V.; Brooke, A.M.; Schall, C.; Wehman, P.; McDonough, J.; Thompson, K.; Smith, J. Employees with Autism Spectrum Disorder Achieving Long-Term Employment Success: A Retrospective Review of Employment Retention and Intervention. Res. Pr. Pers. Sev. Disabil. 2018, 43, 181–193. [Google Scholar] [CrossRef]
- Anderson, A.; Moore, D.; Rausa, V.C.; Finkelstein, S.; Pearl, S.; Stevenson, M. A Systematic Review of Interventions for Adults with Autism Spectrum Disorder to Promote Employment. Rev. J. Autism Dev. Disord. 2016, 4, 26–38. [Google Scholar] [CrossRef]
- Hedley, D.; Uljarević, M.; Cameron, L.; Halder, S.; Richdale, A.; Dissanayake, C. Employment programmes and interventions targeting adults with autism spectrum disorder: A systematic review of the literature. Autism 2016, 21, 929–941. [Google Scholar] [CrossRef]
- Seaman, R.L.; Cannella-Malone, H.I. Vocational Skills Interventions for Adults with Autism Spectrum Disorder: A Review of the Literature. J. Dev. Phys. Disabil. 2016, 28, 479–494. [Google Scholar] [CrossRef]
- Chen, J.L.; Leader, G.; Sung, C.; Leahy, M.J. Trends in Employment for Individuals with Autism Spectrum Disorder: A Review of the Research Literature. Rev. J. Autism Dev. Disord. 2014, 2, 115–127. [Google Scholar] [CrossRef]
- McDonald, T.; Machalicek, W. Systematic review of intervention research with adolescents with autism spectrum disorders. Res. Autism Spectr. Disord. 2013, 7, 1439–1460. [Google Scholar] [CrossRef]
- Waisman-Nitzan, M.; Gal, E.; Schreuer, N. “It’s like a ramp for a person in a wheelchair”: Workplace accessibility for employees with autism. Res. Dev. Disabil. 2021, 114, 103959. [Google Scholar] [CrossRef]
- Khalifa, G.; Sharif, Z.; Sultan, M.; Di Rezze, B. Workplace accommodations for adults with autism spectrum disorder: A scoping review. Disabil. Rehabil. 2019, 42, 1316–1331. [Google Scholar] [CrossRef] [PubMed]
- Lindsay, S.; Osten, V.; Rezai, M.; Bui, S. Disclosure and workplace accommodations for people with autism: A systematic review. Disabil. Rehabil. 2019, 43, 597–610. [Google Scholar] [CrossRef] [PubMed]
- Patton, E. Autism, attributions and accommodations. Pers. Rev. 2019, 48, 915–934. [Google Scholar] [CrossRef]
- American Psychiatric Association. Diagnostic and Statistical Manual of Mental Disorders, DSM-5, 5th ed.; American Psychiatric Association Publishing: Washington, DC, USA, 2013. [Google Scholar]
- Petty, S.; Tunstall, L.; Richardson, H.; Eccles, N. Workplace Adjustments for Autistic Employees: What is ‘Reasonable’? J. Autism Dev. Disord. 2023, 53, 236–244. [Google Scholar] [CrossRef]
- Kim, S.Y.; Crowley, S.; Lee, Y. A Scoping Review of Technology-Based Vocational Interventions for Individuals with Autism. Career Dev. Transit. Except. Individ. 2021, 45, 44–56. [Google Scholar] [CrossRef]
- Walsh, E.; Holloway, J.; McCoy, A.; Lydon, H. Technology-Aided Interventions for Employment Skills in Adults with Autism Spectrum Disorder: A Systematic Review. Rev. J. Autism Dev. Disord. 2016, 4, 12–25. [Google Scholar] [CrossRef]
- Mpofu, E.; Cagle, R.; Chiu, C.Y.; Li, Q.; Holloway, L. Digital tools applications to occupational health and safety for people with autism. In Agile Coping in the Digital Workplace; Ferreira, N., Potgieter, I.L., Coetzee, M., Eds.; Springer: Cham, Switzerland, 2021; pp. 147–165. [Google Scholar]
- Mpofu, E.; Tomczak, M.T.; Hutson, N.; Gafford, L.; Zhan, R. Context of Digitalized Employment for Older Adults with Autism Spectrum Disorder in the New Normal. In Managing Human Resources; Ferreira, N., Potgieter, I.L., Eds.; Springer: Cham, Switzerland, 2022; pp. 269–289. [Google Scholar]
- Tomczak, M.T.; Mpofu, E.; Hutson, N. Remote Work Support Needs of Employees with Autism Spectrum Disorder in Poland: Perspectives of Individuals with Autism and Their Coworkers. Int. J. Environ. Res. Public Health 2022, 19, 10982. [Google Scholar] [CrossRef] [PubMed]
- Szulc, J.M.; McGregor, F.-L.; Cakir, E. Neurodiversity and remote work in times of crisis: Lessons for HR. Pers. Rev. 2021. [Google Scholar] [CrossRef]
- Das, M.; Tang, J.; Ringland, K.E.; Piper, A.M. Towards accessible remote work: Understanding work-from-home practices of neurodivergent professionals. Proc. ACM Hum.-Comput. Interact. 2021, 5, 1–30. [Google Scholar] [CrossRef]
- Wali, L.J.; Sanfilippo, F. A Review of the State-of-the-Art of Assistive Technology for People with ASD in the Workplace and in Everyday Life. In Conference on e-Business, e-Services and e-Society, Proceedings of the 18th IFIP Conference on e-Business, e-Services, and e-Society, Trondheim, Norway, 18–20 September 2019; Springer: Cham, Switzerland, 2019; pp. 520–533. [Google Scholar]
- Hedley, D.; Cai, R.; Uljarevic, M.; Wilmot, M.; Spoor, J.R.; Richdale, A.; Dissanayake, C. Transition to work: Perspectives from the autism spectrum. Autism 2017, 22, 528–541. [Google Scholar] [CrossRef]
- Tomczak, M.T.; Szulc, J.M.; Szczerska, M. Inclusive Communication Model Supporting the Employment Cycle of Individuals with Autism Spectrum Disorders. Int. J. Environ. Res. Public Health 2021, 18, 4696. [Google Scholar] [CrossRef] [PubMed]
- Diener, M.L.; Wright, C.A.; Taylor, C.; D’astous, V.; Lasrich, L. Dual perspectives in autism spectrum disorders and employment: Toward a better fit in the workplace. Work 2020, 67, 223–237. [Google Scholar] [CrossRef] [PubMed]
- Schreuer, N.; Dorot, R. Experiences of employed women with attention deficit hyperactive disorder: A phenomenological study. Work 2017, 56, 429–441. [Google Scholar] [CrossRef] [PubMed]
- Tomczak, M.T.; Wójcikowski, M.; Listewnik, P.; Pankiewicz, B.; Majchrowicz, D.; Jędrzejewska-Szczerska, M. Support for Employees with ASD in the Workplace Using a Bluetooth Skin Resistance Sensor—A Preliminary Study. Sensors 2018, 18, 3530. [Google Scholar] [CrossRef]
- Tomczak, M.T.; Wojcikowski, M.; Pankiewicz, B.; Lubinski, J.; Majchrowicz, J.; Majchrowicz, D.; Walasiewicz, A.; Kilinski, T.; Szczerska, M. Stress Monitoring System for Individuals With Autism Spectrum Disorders. IEEE Access 2020, 8, 228236–228244. [Google Scholar] [CrossRef]
- Black, M.H.; Mahdi, S.; Milbourn, B.; Scott, M.; Gerber, A.; Esposito, C.; Falkmer, M.; Lerner, M.D.; Halladay, A.; Ström, E.; et al. Multi-informant international perspectives on the facilitators and barriers to employment for autistic adults. Autism Res. 2020, 13, 1195–1214. [Google Scholar] [CrossRef]
- Dreaver, J.; Thompson, C.; Girdler, S.; Adolfsson, M.; Black, M.H.; Falkmer, M. Success Factors Enabling Employment for Adults on the Autism Spectrum from Employers’ Perspective. J. Autism Dev. Disord. 2019, 50, 1657–1667. [Google Scholar] [CrossRef]
- Kirchner, J.C.; Dziobek, I. Toward the Successful Employment of Adults with Autism: A First Analysis of Special Interests and Factors Deemed Important for Vocational Performance. Scand. J. Child Adolesc. Psychiatry Psychol. 2013, 2, 77–85. [Google Scholar] [CrossRef]
- Lorenz, T.; Frischling, C.; Cuadros, R.; Heinitz, K. Autism and Overcoming Job Barriers: Comparing Job-Related Barriers and Possible Solutions in and outside of Autism-Specific Employment. PLoS ONE 2016, 11, e0147040. [Google Scholar] [CrossRef]
- Tomczak, M.T. Employees With Autism Spectrum Disorders in the Digitized Work Environment: Perspectives for the Future. J. Disabil. Policy Stud. 2020, 31, 195–205. [Google Scholar] [CrossRef]
- Baldwin, S.; Costley, D.; Warren, A. Employment Activities and Experiences of Adults with High-Functioning Autism and Asperger’s Disorder. J. Autism Dev. Disord. 2014, 44, 2440–2449. [Google Scholar] [CrossRef] [PubMed]
- Morris, M.R.; Begel, A.; Wiedermann, B. Understanding the Challenges Faced by Neurodiverse Software Engineering Employees. In Proceedings of the 17th International ACM SIGACCESS Conference on Computers & Accessibility, Lisbon, Portugal, 26–28 October 2015; pp. 173–184. [Google Scholar] [CrossRef]
- Pfeiffer, B.; Braun, K.; Kinnealey, M.; Matczak, M.D.; Polatajko, H. Environmental factors impacting work satisfaction and performance for adults with autism spectrum disorders. J. Vocat. Rehabil. 2017, 47, 1–12. [Google Scholar] [CrossRef]
- Müller, E.; Schuler, A.; Burton, B.A.; Yates, G.B. Meeting the vocational support needs of individuals with Asperger syndrome and other autism spectrum disabilities. J. Vocat. Rehabil. 2003, 18, 163–175. [Google Scholar]
- North, G. Reconceptualising ‘reasonable adjustments’ for the successful employment of autistic women. Disabil. Soc. 2021, 1–19. [Google Scholar] [CrossRef]
- Waisman-Nitzan, M.; Schreuer, N.; Gal, E. Person, environment, and occupation characteristics: What predicts work performance of employees with autism? Res. Autism Spectr. Disord. 2020, 78, 101643. [Google Scholar] [CrossRef]
- Tomczak, M.T. How can the work environment be redesigned to enhance the well-being of individuals with autism? Empl. Relat. Int. J. 2022, 44, 1467–1484. [Google Scholar] [CrossRef]
- Mantzalas, J.; Richdale, A.L.; Dissanayake, C. A conceptual model of risk and protective factors for autistic burnout. Autism Res. 2022, 15, 976–987. [Google Scholar] [CrossRef]
- Tomczak, M.T.; Kulikowski, K. Toward an understanding of occupational burnout among employees with autism—The Job Demands-Resources theory perspective. Curr. Psychol. 2023, 1–13. [Google Scholar] [CrossRef]
- Piskorz-Ogórek, K.; Ogórek, S.; Cieślińska, A.; Kostyra, E. Autism in Poland in comparison to other countries. Polish Ann. Med. 2015, 22, 35–40. [Google Scholar] [CrossRef]
- Szulc, J.M.; Davies, J.; Tomczak, M.T.; McGregor, F.-L. AMO perspectives on the well-being of neurodivergent human capital. Empl. Relat. Int. J. 2021, 43, 858–872. [Google Scholar] [CrossRef]
- Hayward, S.M.; McVilly, K.R.; Stokes, M.A. Sources and impact of occupational demands for autistic employees. Res. Autism Spectr. Disord. 2020, 76, 101571. [Google Scholar] [CrossRef]
- Ortiz, L.A. Reframing neurodiversity as competitive advantage: Opportunities, challenges, and resources for business and professional communication educators. Bus. Prof. Commun. Q. 2020, 83, 261–284. [Google Scholar] [CrossRef]
- Wehman, P.; Brooke, V.; Brooke, A.M.; Ham, W.; Schall, C.; McDonough, J.; Lau, S.; Seward, H.; Avellone, L. Employment for adults with autism spectrum disorders: A retrospective review of a customized employment approach. Res. Dev. Disabil. 2016, 53–54, 61–72. [Google Scholar] [CrossRef] [PubMed]
- Howlin, P.; Alcock, J.; Burkin, C. An 8 year follow-up of a specialist supported employment service for high-ability adults with autism or Asperger syndrome. Autism 2005, 9, 533–549. [Google Scholar] [CrossRef]
- Carter, E.W.; Austin, D.; Trainor, A.A. Predictors of Postschool Employment Outcomes for Young Adults With Severe Disabilities. J. Disabil. Policy Stud. 2011, 23, 50–63. [Google Scholar] [CrossRef]
- Gerhardt, P.F.; Lainer, I. Addressing the Needs of Adolescents and Adults with Autism: A Crisis on the Horizon. J. Contemp. Psychother. 2011, 41, 37–45. [Google Scholar] [CrossRef]
- Brown, L. ‘Shocking’ Data Reveals Only One In Five Autistic People Are In Employment. Available online: https://www.peoplemanagement.co.uk/article/1742978/shocking-data-reveals-only-one-in-five-autistic-people-are-in-employment (accessed on 3 December 2021).
- Verhoef, P.C.; Broekhuizen, T.; Bart, Y.; Bhattacharya, A.; Dong, J.Q.; Fabian, N.; Haenlein, M. Digital transformation: A multidisciplinary reflection and research agenda. J. Bus. Res. 2019, 122, 889–901. [Google Scholar] [CrossRef]
- Jedynak, M.; Czakon, W.; Kuźniarska, A.; Mania, K. Digital transformation of organizations: What do we know and where to go next? J. Organ. Chang. Manag. 2021, 34, 629–652. [Google Scholar] [CrossRef]
- Weber, C.; Krieger, B.; Häne, E.; Yarker, J.; McDowall, A. Physical Workplace Adjustments to Support Neurodivergent Workers: A Systematic Review. Appl. Psychol. 2022, 1–53. [Google Scholar] [CrossRef]
- Walkowiak, E. Digitalization and inclusiveness of HRM practices: The example of neurodiversity initiatives. Human Resour. Manag. J. 2023, 1–21. [Google Scholar] [CrossRef]
- La Torre, G.; Esposito, A.; Sciarra, I.; Chiappetta, M. Definition, symptoms and risk of techno-stress: A systematic review. Int. Arch. Occup. Environ. Health 2018, 92, 13–35. [Google Scholar] [CrossRef] [PubMed]
- Parette, P.; Scherer, M. Assistive Technology Use And Stigma. Available online: https://psycnet.apa.org/record/2004-17998-003 (accessed on 6 April 2023).
- Silvers, A. Better Than New! Ethics for Assistive Technologists. In Design and Use of Assistive Technology; Oishi, M., Mitchell, I., Van der Loos, H., Eds.; Springer: New York, NY, USA, 2010; pp. 3–15. [Google Scholar]
- O’brolcháin, F.; Gordijn, B. Risks of Stigmatisation Resulting from Assistive Technologies for Persons with Autism Spectrum Disorder. Technologies 2018, 6, 27. [Google Scholar] [CrossRef]
- Braininhand. Live Your Life Your Way. Available online: https://braininhand.co.uk (accessed on 6 April 2023).
- Lifesharpa. Remote Support Done Right. Available online: https://lifesherpapp.com (accessed on 6 April 2023).
- Szczerba, R.J. IBM Watson Takes On Autism. Available online: https://www.forbes.com/sites/robertszczerba/2017/03/07/ibm-watson-takes-on-autism/?sh=38d6fdff557c (accessed on 6 April 2023).
- McDowall, A.; Doyle, N.; Kiseleva, M. Neurodiversity at Work: Demand, Supply and a Gap Analysis. Available online: https://eprints.bbk.ac.uk/id/eprint/50834/ (accessed on 6 April 2023).
- Oliver, M.; Barnes, C. The New Politics of Disablement, 2nd ed.; Palgrave Macmillan: Basingstoke, UK, 2012. [Google Scholar]
- Shakespeare, T. The Social Model Of Disability. In The Disability Studies Reader; Routledge: New York, NY, USA, 2013; pp. 214–221. [Google Scholar]
- Cunningham, T.R.; Tinc, P.J.; Guerin, R.J.; Schulte, P.A. Translation research in occupational health and safety settings: Common ground and future directions. J. Saf. Res. 2020, 74, 161–167. [Google Scholar] [CrossRef] [PubMed]
Characteristics | % of Respondents | |
---|---|---|
Gender | Female | 80.7 |
Male | 19.3 | |
Professional status | Employed | 85.7 |
Unemployed | 14.3 | |
Seniority (among employed) | Less than 1 year | 9.1 |
1 to 5 years | 26.7 | |
More than 5 years | 64.2 | |
Level of education | Higher | 65.7 |
Secondary | 30 | |
Vocational | 0.7 | |
Primary | 3.6 | |
Self-assessment of competencies in the use of digital technologies | Very bad | 0 |
Bad | 0.7 | |
Average | 10 | |
Good | 42.1 | |
Very good | 47.2 | |
Employment sector | IT | 31.6 |
Other | 68.4 |
Proposal for Improvement in a Given Area of Challenge Assessed by Respondents on a 5-Point Scale: 1—Very Bad, 2—Bad, 3—Neither Good Nor Bad, 4—Good, 5—Very Good | Means (All Participants), N = 140 | Standard Deviation | Means—Less Experienced Group; (Up to 5 Years), N = 43 | Means—More Experienced Group; (Over 5 Years), N = 77 | Spearman Correlation (rho) with Self-Assessment of Digital Competency |
---|---|---|---|---|---|
Effective Communication | |||||
Electronic forms of communication | 4.25 | 0.85 | 4.40 | 4.22 | 0.28 ** |
Speech synthesizers | 2.97 | 1.00 | 2.74 | 3.03 | −0.10 |
Time Management, Task Prioritizing and Work Organizing | |||||
Flexible working time | 4.66 | 0.72 | 4.79 | 4.65 | 0.17 * |
Remote work | 4.43 | 0.86 | 4.49 | 4.48 | 0.31 ** |
Computer and mobile applications facilitating work-time control and task prioritization | 4.31 | 0.85 | 4.63 + | 4.09 + | 0.08 |
Ongoing support by a job coach/consultant | 4.24 | 0.77 | 4.30 | 4.21 | −0.15 |
Organization of work using solutions employing virtual reality | 3.13 | 0.94 | 3.02 | 3.25 | 0.19 * |
Organization of work using gamification | 3.09 | 1.00 | 3.09 | 3.10 | −0.01 |
Stress Management and Emotion Control | |||||
Stress measurement combined with dynamic customization of office environment parameters | 3.84 | 1.16 | 3.81 | 3.77 | 0.09 |
Stress level measurement with up-to-date stress level increase notifications | 3.10 | 1.31 | 3.12 | 3.03 | 0.03 |
Sensory Sensitiveness | |||||
Arrangement of office space according to the needs of autistic employees | 4.79 | 0.47 | 4.79 | 4.79 | 0.17 * |
Personalization of the workplace according to the individual preferences of users | 4.79 | 0.51 | 4.86 | 4.78 | 0.18 * |
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Tomczak, M.T.; Ziemiański, P. Autistic Employees’ Technology-Based Workplace Accommodation Preferences Survey—Preliminary Findings. Int. J. Environ. Res. Public Health 2023, 20, 5773. https://doi.org/10.3390/ijerph20105773
Tomczak MT, Ziemiański P. Autistic Employees’ Technology-Based Workplace Accommodation Preferences Survey—Preliminary Findings. International Journal of Environmental Research and Public Health. 2023; 20(10):5773. https://doi.org/10.3390/ijerph20105773
Chicago/Turabian StyleTomczak, Michał T., and Paweł Ziemiański. 2023. "Autistic Employees’ Technology-Based Workplace Accommodation Preferences Survey—Preliminary Findings" International Journal of Environmental Research and Public Health 20, no. 10: 5773. https://doi.org/10.3390/ijerph20105773
APA StyleTomczak, M. T., & Ziemiański, P. (2023). Autistic Employees’ Technology-Based Workplace Accommodation Preferences Survey—Preliminary Findings. International Journal of Environmental Research and Public Health, 20(10), 5773. https://doi.org/10.3390/ijerph20105773