Impact of Different Types of Physical Activity in Green Urban Space on Adult Health and Behaviors: A Systematic Review
Abstract
:1. Introduction
2. Materials and Method
2.1. Search Strategy
2.2. Eligibility Criteria
2.3. Article Information
2.4. Effect Size and Treatment Effect
3. Results
3.1. Participant Characteristics
3.2. Impact of Outdoor Fitness on Participants’ Health
3.3. Impact of Green Spaces on Physical Activity Behaviors
3.4. Summary Statistics
4. Discussion
4.1. Limitations
4.2. Future Implication
5. Conclusions
6. Future Research Directions
Author Contributions
Funding
Conflicts of Interest
References
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Parameter | Inclusion Criteria | Exclusion Criteria |
---|---|---|
Population | Healthy adults (18 ≤ age ≤ 80) | People < 18 or >80 |
Unhealthy people | ||
Intervention | PA in green urban spaces and gym equipment installation | PE indoors or in different natural environments such as beaches or blue areas |
Comparator | Control group (if presented); baseline observation; park with no gym equipment | Participants receiving different protocol from PA |
Outcome | Impact of PE in green urban spaces and/or PA and health indicators and behavior characteristics of park users | No information about PA |
Study design | Observational or experimental with original primary data | Study protocols or other papers without original data |
English language | Not in English language | |
Timing | No time restrictions until 10 June 2020 | After 10 June 2020 |
Study | Country | Participants | Age (yrs.) | Gender |
---|---|---|---|---|
Veitch et al. (2012) | Australia | 1309 | ≥18 | M and F |
Cohen et al. (2012) | USA | 2636 | 40 ± 12.5 * | F = 61%; M = 39% |
Wu et al. (2015) | Taiwan | 86 | 31.28 ± 4.93 * | F = 50%; M = 50% |
Johnson et al. (2019) | Sweden | 6 | 41.2 ± 6.5 * | F = 33%; M = 67% |
Apaychev et al. (2018) | Ukraine | 60 | 40–50 | M |
Schoffman et al. (2015) | USA | 295 | 49.4 ± 13.3 * | F = 86%; M = 14% |
Marselle et al. (2015) | UK | 127 | 55–74 | F = 55.5%; M = 44.5% |
Astell-Burt et al. (2013) | Australia | 203883 | 61.5 * | F = 53.2%; M = 46.8% |
Cranney et al. (2015) | Australia | 796 | ≥18 | F = 47.6%; M = 52.4% |
Kim et al. (2018) | Korea | 35 | 73.2 ± 4.95 | F = 91.5%; M = 8.5% |
Study | Design | EG | CG | Other Group | Treatment | Duration | Cohen’s d | Hedge’s g | p-Value | Measurements | Analysis |
---|---|---|---|---|---|---|---|---|---|---|---|
Wu et al. (2015) | RCT | 41 | 45 | no | Walking program | 8 weeks | 1.325 | 1.313 | 0.0005 | Overall fatigue | Stand. Mean diff. |
Schoffman et al. (2015) | CT | Cross-sectional | Walking program | 6 months | 1.036 | 1.02 | 0.007 | %Weekly MVPA | Correlation coefficient | ||
194 | no | 6.08 | 5.99 | >0.001 | Self-efficacy | ||||||
Marselle et al. (2015) | CT | Pre | Post | Walking program | 13 weeks | 2 | 1.99 | >0.001 | Walk happiness | Correlation coefficient | |
127 | 127 | no | |||||||||
Apaychev et al. (2018) | CT | EC | CG | Outdoor activity | 6 months | 4.02 | 3.03 | >0.001 | Motor activity | Stand. Mean diff. | |
20 | 20 | no | |||||||||
Johnson et al. (2019) | CT | Pre | Post | Outdoor activity | 10 weeks | 1.08 | 0.99 | 0.004 | Number of steps | Stand. Mean diff. | |
6 | 6 | no | 0.83 | 0.76 | 0.02 | Cardiovascular fitness | |||||
Kim et al. (2018) | RCT | EG1 | CG | EG2 | Outdoor activity | 6 weeks | 0.4 | 0.385 | 0.017 | Number of push-ups | Stand. Mean diff. |
12 | 10 | 13 | 0.41 | 0.395 | 0.0003 | 6-min walk |
Study | Design | Participants | Exercise Type | Duration | Cohen’s d | Hedge’s g | p-Value | Outcome | Measurements | Analysis |
---|---|---|---|---|---|---|---|---|---|---|
Astell-Burt et al. (2013) | OBS | 203883 | Walking and MVPA | not specified | 1.98 | 1.98 | >0.001 | Impact of distance on park usage | Walking near green space | Odds ratio difference |
1.97 | 1.97 | >0.001 | MVPA near green space | |||||||
Cranney et al. (2015) | OBS | 358 | Outdoor gym | 12 months | 2.63 | 2.63 | >0.03 | Impact of gym installation on park usage | MVPA frequency pre–post | Proportion difference |
Cohen et al. (2012) | OBS | 958 | Outdoor gym | 16 months | 0.61 | 0.61 | >0.0001 | Exercise in gym park vs. no gym park | Exercise frequency | Proportion difference |
Veitch et al. (2012) | OBS | 609 | Outdoor gym | 12 months | <7 | <7 | >0.0001 | Impact of gym installation on park usage | Usage frequency pre–post | Proportion difference |
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Grigoletto, A.; Mauro, M.; Maietta Latessa, P.; Iannuzzi, V.; Gori, D.; Campa, F.; Greco, G.; Toselli, S. Impact of Different Types of Physical Activity in Green Urban Space on Adult Health and Behaviors: A Systematic Review. Eur. J. Investig. Health Psychol. Educ. 2021, 11, 263-275. https://doi.org/10.3390/ejihpe11010020
Grigoletto A, Mauro M, Maietta Latessa P, Iannuzzi V, Gori D, Campa F, Greco G, Toselli S. Impact of Different Types of Physical Activity in Green Urban Space on Adult Health and Behaviors: A Systematic Review. European Journal of Investigation in Health, Psychology and Education. 2021; 11(1):263-275. https://doi.org/10.3390/ejihpe11010020
Chicago/Turabian StyleGrigoletto, Alessia, Mario Mauro, Pasqualino Maietta Latessa, Vincenzo Iannuzzi, Davide Gori, Francesco Campa, Gianpiero Greco, and Stefania Toselli. 2021. "Impact of Different Types of Physical Activity in Green Urban Space on Adult Health and Behaviors: A Systematic Review" European Journal of Investigation in Health, Psychology and Education 11, no. 1: 263-275. https://doi.org/10.3390/ejihpe11010020
APA StyleGrigoletto, A., Mauro, M., Maietta Latessa, P., Iannuzzi, V., Gori, D., Campa, F., Greco, G., & Toselli, S. (2021). Impact of Different Types of Physical Activity in Green Urban Space on Adult Health and Behaviors: A Systematic Review. European Journal of Investigation in Health, Psychology and Education, 11(1), 263-275. https://doi.org/10.3390/ejihpe11010020