Habitual Diets Are More Expensive than Recommended Healthy Diets
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Design
2.2. Survey Tools
2.3. Store Locations and Sampling
2.4. Data Collection
2.5. Calculation of Household Income
2.6. Data Analysis
3. Results
3.1. Food Outlets Surveyed
3.2. The Costs of Recommended and Habitual Diets, and Food Groups in NW Tasmania
3.3. Affordability of the Recommended and Habitual Diets in Northwest Tasmania
4. Discussion
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Forouzanfar, M.H.; Afshin, A.; Alexander, L.T.; Anderson, H.R.; Bhutta, Z.A.; Biryukov, S.; Brauer, M.; Burnett, R.; Cercy, K.; Charlson, F.J.; et al. GBD 2015 Risk Factors Collaborators. Global, regional, and national comparative risk assessment of 79 behavioural, environmental and occupational, and metabolic risks or clusters of risks, 1990-2015: A systematic analysis for the Global Burden of Disease Study 2015. Lancet 2016, 388, 1659–1724. [Google Scholar] [CrossRef]
- Hambleton, I.R.; Caixeta, R.; Jeyaseelan, S.M.; Luciani, S.; Hennis, A.J.M. The rising burden of non-communicable diseases in the Americas and the impact of population aging: A secondary analysis of available data. Lancet Reg. Health Am. 2023, 21, 100483. [Google Scholar] [CrossRef] [PubMed]
- Allen, L. Are we facing a noncommunicable disease pandemic? J. Epidemiol. Glob. Health 2017, 7, 5–9. [Google Scholar] [CrossRef]
- Ayomoh, F. The rising global tide of non-communicable diseases: A call for decisive action. J. Health Policy Econ. 2021, 1, 1. [Google Scholar]
- Powell-Wiley, T.M.; Poirier, P.; Burke, L.E.; Després, J.-P.; Gordon-Larsen, P.; Lavie, C.J.; Lear, S.A.; Ndumele, C.E.; Neeland, I.J.; Sanders, P.; et al. Obesity and Cardiovascular Disease: A Scientific Statement from the American Heart Association. Circulation 2021, 143, e984–e1010. [Google Scholar] [CrossRef]
- Lopez-Jimenez, F.; Almahmeed, W.; Bays, H.; Cuevas, A.; Di Angelantonio, E.; le Roux, C.W.; Sattar, N.; Sun, M.C.; Wittert, G.; Pinto, F.J.; et al. Obesity and cardiovascular disease: Mechanistic insights and management strategies. A joint position paper by the World Heart Federation and World Obesity Federation. Eur. J. Prev. Cardiol. 2022, 29, 2218–2237. [Google Scholar] [CrossRef]
- Kyle, T.K.; Dhurandhar, E.J.; Allison, D.B. Regarding Obesity as a Disease: Evolving Policies and Their Implications. Endocrinol. Metab. Clin. N. Am. 2016, 45, 511–520. [Google Scholar] [CrossRef]
- De Lorenzo, A.; Gratteri, S.; Gualtieri, P.; Cammarano, A.; Bertucci, P.; Di Renzo, L. Why primary obesity is a disease? J. Transl. Med. 2019, 17, 169. [Google Scholar] [CrossRef]
- World Obesity Federation. World Obesity Atlas 2023. Available online: https://data.worldobesity.org/publications/?cat=19 (accessed on 25 May 2023).
- Australian Institute of Health and Welafare. Overweight and Obesity. Available online: https://www.aihw.gov.au/reports/overweight-obesity/overweight-and-obesity/ (accessed on 26 May 2023).
- World Health Organisation. Noncommunicable Diseases. Available online: https://www.emro.who.int/noncommunicable-diseases/causes/unhealthy-diets.html (accessed on 25 May 2023).
- Olatona, F.A.; Onabanjo, O.O.; Ugbaja, R.N.; Nnoaham, K.E.; Adelekan, D.A. Dietary habits and metabolic risk factors for non-communicable diseases in a university undergraduate population. J. Health Popul. Nutr. 2018, 37, 21. [Google Scholar] [CrossRef]
- Al-Jawaldeh, A.; Abbass, M.M.S. Unhealthy Dietary Habits and Obesity: The Major Risk Factors beyond Non-Communicable Diseases in the Eastern Mediterranean Region. Front. Nutr. 2022, 9, 817808. [Google Scholar] [CrossRef]
- Różańska, D.; Kujawa, K.; Szuba, A.; Zatońska, K.; Regulska-Ilow, B. Dietary Patterns and the Prevalence of Noncommunicable Diseases in the PURE Poland Study Participants. Nutrients 2023, 15, 3524. [Google Scholar] [CrossRef] [PubMed]
- National Health and Medical Research Council. Australian Dietary Guidelines—Providing the Scientific Evidence for Healthier Australian Diets. Available online: https://www.nhmrc.gov.au/adg (accessed on 6 May 2023).
- Pitt, E.; Gallegos, D.; Comans, T.; Cameron, C.; Thornton, L. Exploring the influence of local food environments on food behaviours: A systematic review of qualitative literature. Public Health Nutr. 2017, 20, 2393–2405. [Google Scholar] [CrossRef] [PubMed]
- Andrew, M.; Anna, D.S.; Birgit, M.; Renata, M.; Dariush, M. How income and food prices influence global dietary intakes by age and sex: Evidence from 164 countries. BMJ Glob. Health 2017, 2, e000184. [Google Scholar] [CrossRef]
- Chen, P.J.; Antonelli, M. Conceptual Models of Food Choice: Influential Factors Related to Foods, Individual Differences, and Society. Foods 2020, 9, 1898. [Google Scholar] [CrossRef]
- Zorbas, C.; Palermo, C.; Chung, A.; Iguacel, I.; Peeters, A.; Bennett, R.; Backholer, K. Factors perceived to influence healthy eating: A systematic review and meta-ethnographic synthesis of the literature. Nutr. Rev. 2018, 76, 861–874. [Google Scholar] [CrossRef] [PubMed]
- Rao, M.; Afshin, A.; Singh, G.; Mozaffarian, D. Do healthier foods and diet patterns cost more than less healthy options? A systematic review and meta-analysis. BMJ Open 2013, 3, e004277. [Google Scholar] [CrossRef]
- Giacobone, G.; Tiscornia, M.V.; Guarnieri, L.; Castronuovo, L.; Mackay, S.; Allemandi, L. Measuring cost and affordability of current vs. healthy diets in Argentina: An application of linear programming and the INFORMAS protocol. BMC Public Health 2021, 21, 891. [Google Scholar] [CrossRef]
- Lewis, M.; Herron, L.M.; Chatfield, M.D.; Tan, R.C.; Dale, A.; Nash, S.; Lee, A.J. Healthy Food Prices Increased More Than the Prices of Unhealthy Options during the COVID-19 Pandemic and Concurrent Challenges to the Food System. Int. J. Environ. Res. Public Health 2023, 20, 3146. [Google Scholar] [CrossRef]
- Lee, A.J.; Kane, S.; Lewis, M.; Good, E.; Pollard, C.M.; Landrigan, T.J.; Dick, M. Healthy diets ASAP—Australian Standardised Affordability and Pricing methods protocol. Nutr. J. 2018, 17, 88. [Google Scholar] [CrossRef]
- Lee, A.J.; Kane, S.; Herron, L.M.; Matsuyama, M.; Lewis, M. A tale of two cities: The cost, price-differential and affordability of current and healthy diets in Sydney and Canberra, Australia. Int. J. Behav. Nutr. Phys. Act. 2020, 17, 80. [Google Scholar] [CrossRef]
- Lee, A.; Patay, D.; Herron, L.M.; Parnell Harrison, E.; Lewis, M. Affordability of current, and healthy, more equitable, sustainable diets by area of socioeconomic disadvantage and remoteness in Queensland: Insights into food choice. Int. J. Equity Health 2021, 20, 153. [Google Scholar] [CrossRef]
- Lewis, M.; Lee, A. Costing ‘healthy’ food baskets in Australia—A systematic review of food price and affordability monitoring tools, protocols and methods. Public Health Nutr. 2016, 19, 2872–2886. [Google Scholar] [CrossRef] [PubMed]
- Tasmanian Government. The Perfect Location for Food and Agriculture Production; Tasmanian Government: Hobart, TAS, Australia, 2023. Available online: https://www.stategrowth.tas.gov.au/__data/assets/pdf_file/0010/394363/Tasmania_Delivers_-_Food_and_Agriculture.pdf (accessed on 30 May 2023).
- Discover North West Tasmania. Produce of North West Tasmania. Available online: https://www.discovernorthwesttasmania.com.au/produce/ (accessed on 25 May 2023).
- Australian Institute of Health and Welfare. Australia’s Health 2018. Available online: https://www.aihw.gov.au/getmedia/6bc8a4f7-c251-4ac4-9c05-140a473efd7b/aihw-aus-221-chapter-3-3.pdf.aspx (accessed on 25 May 2023).
- Australian Bureau of Statistics. Microdata and TableBuilder: Australian Health Survey: Nutrition and Physical Activity; Australian Bureau of Statistics: Canberra, Australia, 2013. [Google Scholar]
- Australian Bureau of Statistics. Statistical Area Level 2: Australian Statistical Geography Standard (ASGS) Edition 3. Available online: https://www.abs.gov.au/statistics/standards/australian-statistical-geography-standard-asgs-edition-3/jul2021-jun2026/main-structure-and-greater-capital-city-statistical-areas/statistical-area-level-2 (accessed on 27 July 2023).
- Australian Bureau of Statistics. Census Community Profiles. Available online: https://www.abs.gov.au/census/find-census-data/community-profiles/2021/POA7330 (accessed on 24 May 2023).
- Australian Bureau of Statistics. Wage Price Index, Australia. Available online: https://www.abs.gov.au/statistics/economy/price-indexes-and-inflation/wage-price-index-australia/latest-release (accessed on 24 May 2023).
- Services Australia. Payment and Service Finder. 2019. Available online: https://www.servicesaustralia.gov.au/ (accessed on 26 May 2023).
- WorldAtlas. Tasmania. Available online: https://www.worldatlas.com/webimage/countrys/oceania/australia/ts.htm (accessed on 5 August 2023).
- Murray, S.; Ahuja, K.D.K.; Auckland, S.; Ball, M.J. The 2014 Tasmanian Healthy Food Access Basket (HFAB) Survey. School of Health Sciences. University of Tasmania. Available online: https://www.healthyfoodaccesstasmania.org.au/wp-content/uploads/2017/09/Healthy-Food-Access-Basket-study.pdf (accessed on 2 May 2023).
- Palermo, C.; Wilson, A. Development of a healthy food basket for Victoria. Aust. N. Z. J. Public Health 2007, 31, 360–363. [Google Scholar] [CrossRef] [PubMed]
- Commonwealth Department of Health. The Australian Guide to Healthy Eating. Available online: https://www.eatforhealth.gov.au/guidelines/australian-guide-healthy-eating (accessed on 17 July 2023).
- Zorbas, C.; Brooks, R.; Bennett, R.; Lee, A.; Marshall, J.; Naughton, S.; Lewis, M.; Peeters, A.; Backholer, K. Costing recommended (healthy) and current (unhealthy) diets in urban and inner regional areas of Australia using remote price collection methods. Public Health Nutr. 2022, 25, 528–537. [Google Scholar] [CrossRef]
- Alexander, P.; Arneth, A.; Henry, R.; Maire, J.; Rabin, S.; Rounsevell, M.D.A. High energy and fertilizer prices are more damaging than food export curtailment from Ukraine and Russia for food prices, health and the environment. Nat. Food 2023, 4, 84–95. [Google Scholar] [CrossRef] [PubMed]
- Australian Bureau of Statistics. Consumer Price Index, Australia. Available online: https://www.abs.gov.au/statistics/economy/price-indexes-and-inflation/consumer-price-index-australia/latest-release#main-contributors-to-change (accessed on 3 June 2023).
- Janssen, H.G.; Davies, I.G.; Richardson, L.D.; Stevenson, L. Determinants of takeaway and fast food consumption: A narrative review. Nutr. Res. Rev. 2018, 31, 16–34. [Google Scholar] [CrossRef] [PubMed]
- Miura, K.; Giskes, K.; Turrell, G. Socioeconomic differences in takeaway food consumption and their contribution to inequalities in dietary intakes. J. Epidemiol. Community Health 2009, 63, 820–826. [Google Scholar] [CrossRef] [PubMed]
- Hartmann, C.; Dohle, S.; Siegrist, M. Importance of cooking skills for balanced food choices. Appetite 2013, 65, 125–131. [Google Scholar] [CrossRef] [PubMed]
- Duffey, K.J.; Gordon-Larsen, P.; Steffen, L.M.; Jacobs, D.R.; Popkin, B.M. Regular Consumption from Fast Food Establishments Relative to Other Restaurants Is Differentially Associated with Metabolic Outcomes in Young Adults12. J. Nutr. 2009, 139, 2113–2118. [Google Scholar] [CrossRef] [PubMed]
- Kant, A.K.; Whitley, M.I.; Graubard, B.I. Away from home meals: Associations with biomarkers of chronic disease and dietary intake in American adults, NHANES 2005–2010. Int. J. Obes. 2015, 39, 820–827. [Google Scholar] [CrossRef]
- Smith, K.J.; Blizzard, L.; McNaughton, S.A.; Gall, S.L.; Dwyer, T.; Venn, A.J. Takeaway food consumption and cardio-metabolic risk factors in young adults. Eur. J. Clin. Nutr. 2012, 66, 577–584. [Google Scholar] [CrossRef] [PubMed]
- Peng, W.; Dernini, S.; Berry, E.M. Coping with Food Insecurity Using the Sociotype Ecological Framework. Front. Nutr. 2018, 5, 107. [Google Scholar] [CrossRef] [PubMed]
- Loopstra, R. Interventions to address household food insecurity in high-income countries. Proc. Nutr. Soc. 2018, 77, 270–281. [Google Scholar] [CrossRef]
- Doustmohammadian, A.; Mohammadi-Nasrabadi, F.; Keshavarz-Mohammadi, N.; Hajjar, M.; Alibeyk, S.; Hajigholam-Saryazdi, M. Community-based participatory interventions to improve food security: A systematic review. Front. Nutr. 2022, 9, 1028394. [Google Scholar] [CrossRef]
- Story, M.; Kaphingst, K.M.; Robinson-O’Brien, R.; Glanz, K. Creating healthy food and eating environments: Policy and environmental approaches. Annu. Rev. Public Health 2008, 29, 253–272. [Google Scholar] [CrossRef]
- Sun, Y.; Dong, D.; Ding, Y. The Impact of Dietary Knowledge on Health: Evidence from the China Health and Nutrition Survey. Int. J. Environ. Res. Public Health 2021, 18, 3736. [Google Scholar] [CrossRef] [PubMed]
- Kowalkowska, J.; Lonnie, M.; Wadolowska, L.; Czarnocinska, J.; Jezewska-Zychowicz, M.; Babicz-Zielinska, E. Health- and Taste-Related Attitudes Associated with Dietary Patterns in a Representative Sample of Polish Girls and Young Women: A Cross-Sectional Study (GEBaHealth Project). Nutrients 2018, 10, 254. [Google Scholar] [CrossRef] [PubMed]
- Conklin, A.I.; Forouhi, N.G.; Surtees, P.; Khaw, K.T.; Wareham, N.J.; Monsivais, P. Social relationships and healthful dietary behaviour: Evidence from over-50s in the EPIC cohort, UK. Soc. Sci. Med. 2014, 100, 167–175. [Google Scholar] [CrossRef]
- Higgs, S.; Thomas, J. Social influences on eating. Curr. Opin. Behav. Sci. 2016, 9, 1–6. [Google Scholar] [CrossRef]
- Deslippe, A.L.; Soanes, A.; Bouchaud, C.C.; Beckenstein, H.; Slim, M.; Plourde, H.; Cohen, T.R. Barriers and facilitators to diet, physical activity and lifestyle behavior intervention adherence: A qualitative systematic review of the literature. International Int. J. Behav. Nutr. Phys. Act. 2023, 20, 14. [Google Scholar] [CrossRef]
Recommended Diet * | Habitual Diet * |
---|---|
|
|
Food Groups | 2021 | 2023 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
Recommended | Habitual | Recommended | Habitual | |||||||||
Mean | (SD) | Proportion of Total Cost (%) | Mean | (SD) | Proportion of Total Cost (%) | Mean | (SD) | Proportion of Total Cost (%) | Mean | (SD) | Proportion of Total Cost (%) | |
Water | 22.66 | (3.31) | 3.13% | 22.66 | (3.31) | 2.62% | 18.24 | (1.21) | 2.47% | 18.24 | (1.21) | 1.93% |
Fruit | 101.78 | (5.57) | 14.06% | 57.57 | (5.04) | 6.65% | 96.77 | (3.38) | 13.10% | 64.46 | (3.13) | 6.81% |
Vegetables and legumes | 116.99 | (7.89) | 16.17% | 46.58 | (2.64) | 5.38% | 131.22 | (7.07) | 17.77% | 52.54 | (2.3) | 5.55% |
Grain foods (cereals) | 129.28 | (2.47) | 17.87% | 52.45 | (1.4) | 6.06% | 119.25 | (4.76) | 16.15% | 50.31 | (4.91) | 5.32% |
Lean meat, poultry, fish, eggs, and alternatives | 223.94 | (7.01) | 0.31% | 116.26 | (3.78) | 13.43% | 240.99 | (3.77) | 32.64% | 126.03 | (3.46) | 13.32% |
Milk, yoghurt, cheese, and alternatives | 119.05 | (4.22) | 16.45% | 55.56 | (0.99) | 6.42% | 120.86 | (5.78) | 16.37% | 59.81 | (2.3) | 6.32% |
Unsaturated oils and spreads | 9.96 | (0.26) | 1.38% | 1.49 | (0.2) | 0.17% | 11.09 | (1.01) | 1.50% | 1.85 | (0.11) | 0.20% |
Sugar-sweetened soft drinks | 29.98 | (5.94) | 3.46% | 33.13 | (3.44) | 3.50% | ||||||
Artificially sweetened soft drinks | 5.77 | (0.86) | 0.67% | 6.59 | (0.69) | 0.70% | ||||||
Discretionary choices—other | 194.35 | (26.92) | 22.45% | 215.49 | (2.04) | 22.78% | ||||||
Take-away foods * | 166.01 | 19.18% | 194.68 | 20.58% | ||||||||
Alcoholic drinks * | 117.06 | 13.52% | 122.86 | 12.99% | ||||||||
Total | 723.66 | (12.26) | 865.75 | (39.26) | 738.42 | (16.95) | 945.99 | (14.67) |
Income Type | 2021 | 2023 | ||||
---|---|---|---|---|---|---|
Income | Proportion for Recommended Diet | Proportion for Habitual Diet | Income | Proportion for Recommended Diet | Proportion for Habitual Diet | |
Median gross | 2500.00 | 28.95% | 34.63% | 2625.00 | 28.13% | 36.04% |
Minimum wage disposable | 2679.10 | 27.01% | 32.31% | 2806.31 | 26.31% | 33.71% |
Welfare dependent | 1873.27 | 38.63% | 46.22% | 1986.19 | 37.18% | 47.63% |
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Herath, M.P.; Murray, S.; Lewis, M.; Holloway, T.P.; Hughes, R.; Jayasinghe, S.; Soward, R.; Patterson, K.A.E.; Byrne, N.M.; Lee, A.J.; et al. Habitual Diets Are More Expensive than Recommended Healthy Diets. Nutrients 2023, 15, 3908. https://doi.org/10.3390/nu15183908
Herath MP, Murray S, Lewis M, Holloway TP, Hughes R, Jayasinghe S, Soward R, Patterson KAE, Byrne NM, Lee AJ, et al. Habitual Diets Are More Expensive than Recommended Healthy Diets. Nutrients. 2023; 15(18):3908. https://doi.org/10.3390/nu15183908
Chicago/Turabian StyleHerath, Manoja P., Sandra Murray, Meron Lewis, Timothy P. Holloway, Roger Hughes, Sisitha Jayasinghe, Robert Soward, Kira A. E. Patterson, Nuala M. Byrne, Amanda J. Lee, and et al. 2023. "Habitual Diets Are More Expensive than Recommended Healthy Diets" Nutrients 15, no. 18: 3908. https://doi.org/10.3390/nu15183908
APA StyleHerath, M. P., Murray, S., Lewis, M., Holloway, T. P., Hughes, R., Jayasinghe, S., Soward, R., Patterson, K. A. E., Byrne, N. M., Lee, A. J., Hills, A. P., & Ahuja, K. D. K. (2023). Habitual Diets Are More Expensive than Recommended Healthy Diets. Nutrients, 15(18), 3908. https://doi.org/10.3390/nu15183908