Adherence to a Mediterranean Diet Pattern, Physical Activity, and Physical Self-Concept in Spanish Older Adults
Abstract
:1. Introduction
2. Materials and Methods
2.1. Design and Subjects
2.2. Outcomes
2.3. Statistics
3. Results
4. Discussion
Strength and Limitations
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Bhardwaj, R.; Amiri, S.; Buchwald, D.; Amram, O. Environmental correlates of reaching a centenarian age: Analysis of 144,665 deaths in Washington State for 2011–2015. Int. J. Environ. Res. Public Health 2020, 17, 2828. [Google Scholar] [CrossRef] [PubMed]
- Rudnicka, E.; Napierala, P.; Podfigurna, A.; Męczekalski, B.; Smolarczyk, R.; Grymowicz, M. The World Health Organization (WHO) approach to healthy ageing. Maturitas 2020, 139, 6–11. [Google Scholar] [CrossRef] [PubMed]
- Conde-Pipó, J.; Melguizo-Ibáñez, E.; Mariscal-Arcas, M.; Zurita-Ortega, F.; Ubago-Jiménez, J.L.; Ramírez-Granizo, I.; González-Valero, G. Physical Self-Concept changes in adults and older adults: Influence of emotional intelligence, intrinsic motivation and sports habits. Int. J. Environ. Res. Public Health 2021, 18, 1711. [Google Scholar] [CrossRef] [PubMed]
- Bonaccio, M.; Di Castelnuovo, A.; Costanzo, S.; Gialluisi, A.; Persichillo, M.; Cerletti, C.; Donati, M.B.; de Gaetano, G.; Iacoviello, L. Mediterranean diet and mortality in the elderly: A prospective cohort study and a meta-analysis. Br. J. Nutr. 2018, 120, 841–854. [Google Scholar] [CrossRef] [PubMed]
- Hajat, C.; Selwyn, A.; Harris, M.; Yach, D. Preventive interventions for the second half of life: A systematic review. Am. J. Health Promot. 2018, 32, 1122–1139. [Google Scholar] [CrossRef]
- Barrea, L.; Muscogiuri, G.; Di Somma, C.; Tramontano, G.; De Luca, V.; Illario, M.; Colao, A.; Savastano, S. Association between Mediterranean diet and hand grip strength in older adult women. Clin. Nutr. 2019, 38, 721–729. [Google Scholar] [CrossRef]
- Scarmeas, N.; Anastasiou, C.A.; Yannakoulia, M. Nutrition and prevention of cognitive impairment. Lancet Neurol. 2018, 17, 1006–1015. [Google Scholar] [CrossRef]
- Kehoe, L.; Walton, J.; Flynn, A. Nutritional challenges for older adults in Europe: Current status and future directions. Proc. Nutr. Soc. 2019, 78, 221–233. [Google Scholar] [CrossRef]
- Cano-Ibáñez, N.; Gea, A.; Ruiz-Canela, M.; Corella, D.; Salas-Salvadó, J.; Schröder, H.; Navarrete-Muñoz, E.M.; Romaguera, D.; Martínez, J.A.; Barón-López, F.J.; et al. Diet quality and nutrient density in subjects with metabolic syndrome: Influence of socioeconomic status and lifestyle factors. A cross-sectional assessment in the PREDIMED-Plus study. Clin. Nutr. 2020, 39, 1161–1173. [Google Scholar] [CrossRef]
- Mariscal-Arcas, M.; Caballero-Plasencia, M.L.A.; Monteagudo, C.; Hamdan, M.; Pardo-Vasquez, M.I.; Olea-Serrano, F. Validation of questionnaires to estimate adherence to the Mediterranean diet and life habits in older individuals in Southern Spain. J. Nutr. Health Aging 2011, 15, 739–743. [Google Scholar] [CrossRef]
- Whitelock, E.; Ensaff, H. On your own: Older adults’ food choice and dietary habits. Nutrients 2018, 10, 413. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bullón-Vela, V.; Abete, I.; Tur, J.A.; Pintó, X.; Corbella, E.; Martínez-González, M.A.; Toledo, E.; Corella, D.; Macías, M.; Tinahones, F.; et al. Influence of lifestyle factors and staple foods from the Mediterranean diet on non-alcoholic fatty liver disease among older individuals with metabolic syndrome features. Nutrition 2020, 71, 110620. [Google Scholar] [CrossRef] [PubMed]
- Chacón-Cuberos, R.; Castro-Sánchez, M.; Muros-Molina, J.J.; Espejo-Garcés, T.; Zurita-Ortega, F.; Linares-Manrique, M. Adhesión a la dieta mediterránea en estudiantes universitarios y su relación con los hábitos de ocio digital. Nutr. Hosp. 2016, 33, 405–410. [Google Scholar] [CrossRef] [PubMed]
- Mendes, J.; Afonso, C.; Borges, N.; Santos, A.; Moreira, P.; Padrão, P.; Negrão, R.; Amaral, T.F. Adherence to a Mediterranean dietary pattern and functional parameters: A cross-sectional study in an older population. J. Nutr. Health Aging 2020, 24, 138–146. [Google Scholar] [CrossRef]
- Sánchez, E.; Betriu, À.; Salas-Salvadó, J.; Pamplona, R.; Barbé, F.; Purroy, F.; Farràs, C.; Fernández, E.; López-Cano, C.; Mizab, C.; et al. Mediterranean diet, physical activity and subcutaneous advanced glycation end-products’ accumulation: A cross-sectional analysis in the ILERVAS project. Eur. J. Nutr. 2020, 59, 1233–1242. [Google Scholar] [CrossRef]
- Masana, M.F.; Haro, J.M.; Mariolis, A.; Piscopo, S.; Valacchi, G.; Bountziouka, V.; Anastasiou, F.; Zeimbekis, A.; Tyrovola, D.; Gotsis, E.; et al. Mediterranean diet and depression among older individuals: The multinational MEDIS study. Exp. Gerontol. 2018, 110, 67–72. [Google Scholar] [CrossRef]
- Rolandi, E.; Dodich, A.; Galluzzi, S.; Ferrari, C.; Mandelli, S.; Ribaldi, F.; Munaretto, G.; Ambrosi, C.; Gasparotti, R.; Violi, D.; et al. Randomized controlled trial on the efficacy of a multilevel non-pharmacologic intervention in older adults with subjective memory decline: Design and baseline findings of the E.Mu.N.I. study. Aging Clin. Exp. Res. 2020, 32, 817–826. [Google Scholar] [CrossRef]
- Bach-Faig, A.; Berry, E.M.; Lairon, D.; Reguant, J.; Trichopoulou, A.; Dernini, S.; Medina, F.X.; Battino, M.; Belahsen, R.; Miranda, G.; et al. Mediterranean diet pyramid today. Science and cultural updates. Public Health Nutr. 2011, 14, 2274–2284. [Google Scholar] [CrossRef] [Green Version]
- Malakou, E.; Linardakis, M.; Armstrong, M.E.G.; Zannidi, D.; Foster, C.; Johnson, L.; Papadaki, A. The combined effect of promoting the Mediterranean diet and physical activity on metabolic risk factors in adults: A systematic review and meta-analysis of randomised controlled trials. Nutrients 2018, 10, 1577. [Google Scholar] [CrossRef] [Green Version]
- Boulton, E.; Hawley-Hague, H.; French, D.P.; Mellone, S.; Zacchi, A.; Clemson, L.; Vereijken, B.; Todd, C. Implementing behaviour change theory and techniques to increase physical activity and prevent functional decline among adults aged 61–70: The PreventIT project. Prog. Cardiovasc. Dis. 2019, 62, 147–156. [Google Scholar] [CrossRef]
- Partearroyo, T.; Laja, A.; Varela-Moreiras, G. Strengths and weaknesses of food and diet in the Spanish population of the 21st century. Nutr. Hosp. 2019, 36, 3–6. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bangsbo, J.; Blackwell, J.; Boraxbekk, C.J.; Caserotti, P.; Dela, F.; Evans, A.B.; Jespersen, A.P.; Gliemann, L.; Kramer, A.F.; Lundbye-Jensen, J.; et al. Copenhagen Consensus statement 2019: Physical activity and ageing. Br. J. Sports Med. 2019, 53, 856–858. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Saint-Maurice, P.F.; Coughlan, D.; Kelly, S.P.; Keadle, S.K.; Cook, M.B.; Carlson, S.A.; Fulton, J.E.; Matthews, C.E. Association of leisure-time physical activity across the adult life course with all-cause and cause-specific mortality. JAMA Netw. Open 2019, 2, e190355. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- World Health Organization. WHO Guidelines on Physical Activity and Sedentary Behaviour; WHO: Geneva, Switzerland, 2020. [Google Scholar]
- Li, Y.C.; Chirico, D.; Graham, J.D.; Kwan, M.Y.W.; Cairney, J. Motor coordination and moderate-to-vigorous physical activity in emerging adults: Mediating effect of physical self-concept. Int. J. Environ. Res. Public Health 2020, 17, 3748. [Google Scholar] [CrossRef] [PubMed]
- González-Valero, G.; Zurita-Ortega, F.; Ubago-Jiménez, J.L.; Puertas-Molero, P. Motivation, self-concept and discipline in young adolescents who practice rhythmic gymnastics. An intervention. Children 2020, 7, 135. [Google Scholar] [CrossRef]
- Babic, M.J.; Morgan, P.J.; Plotnikoff, R.C.; Lonsdale, C.; White, R.L.; Lubans, D.R. Physical activity and physical self-concept in youth: Systematic review and meta-analysis. Sports Med. 2014, 44, 1589–1601. [Google Scholar] [CrossRef]
- Fox, K.R.; Corbin, C.B. The physical self-perception profile: Development and preliminary validation. J. Sport Exerc. Psychol. 1989, 11, 408–430. [Google Scholar] [CrossRef]
- Shavelson, R.J.; Hubner, J.J.; Stanton, G. Self-concept: Validation of construct interpretations. Rev. Educ. Res. 1976, 46, 407–441. [Google Scholar] [CrossRef]
- Grao-Cruces, A.; Nuviala, A.; Fernández-Martínez, A.; Pérez-Turpin, J.A. Association of physical self-concept with physical activity, life satisfaction and Mediterranean diet in adolescents. Kinesiology 2014, 46, 3–11. [Google Scholar]
- Jekauc, D.; Wagner, M.O.; Herrmann, C.; Hegazy, K.; Woll, A. Does physical self-concept mediate the relationship between motor abilities and physical activity in adolescents and young adults? PLoS ONE 2017, 12, e0168539. [Google Scholar] [CrossRef] [Green Version]
- González-Valero, G.; Nobari, H.; Badicu, G.; López-Gutiérrez, C.J.; Moreno-Rosa, G.; Castro-Sánchez, M. Relationship of physical activity and sleep duration with self-concept, Mediterranean Diet and problematic videogame use in children: Structural equation analysis as a function of gender. Appl. Sci. 2022, 12, 2878. [Google Scholar] [CrossRef]
- Zurita-Ortega, F.; Román-Mata, S.S.; Chacón-Cuberos, R.; Castro-Sánchez, M.; Muros, J.J. Adherence to the Mediterranean diet is associated with physical activity, self-concept and sociodemographic factors in university student. Nutrients 2018, 10, 966. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Guillén-Alcolea, F.; López-Gil, J.F.; Tárraga-López, P.J. Adherencia a la dieta mediterránea, nivel de actividad física e insatisfacción corporal en sujetos de 16 a 50 años de la Región de Murcia. Clínica Investig. Arterioscler. 2021, 33, 10–18. [Google Scholar] [CrossRef] [PubMed]
- Shankar-Krishnan, N.; Fornieles Deu, A.; Sánchez-Carracedo, D. Associations between food insecurity and psychological wellbeing, body image, disordered eating and dietary habits: Evidence from Spanish adolescents. Child Indic. Res. 2021, 14, 163–183. [Google Scholar] [CrossRef]
- Olavarria, D.R.; Delgado-Floody, P.; Martínez-Salazar, C. Foods habits, body image and physical fitness in chilean schoolchildren according to physical activity level and weight status. Nutr. Hosp. 2020, 37, 443–449. [Google Scholar] [CrossRef]
- Bouzas, C.; Bibiloni, M.D.M.; Julibert, A.; Ruiz-Canela, M.; Salas-Salvadó, J.; Corella, D.; Zomeño, M.D.; Romaguera, D.; Vioque, J.; Alonso-Gómez, A.M.; et al. Adherence to the Mediterranean lifestyle and desired body weight loss in a Mediterranean adult population with overweight: A predimed-plus study. Nutrients 2020, 12, 2114. [Google Scholar] [CrossRef]
- Monteagudo, C.; Dijkstra, S.C.; Visser, M. Self-perception of body weight status in older Dutch adults. J. Nutr. Health Aging 2015, 19, 612–618. [Google Scholar] [CrossRef]
- Instituto Nacional de Estadística. Data on Data on Populations above 55 Years Old. Available online: https://www.ine.es (accessed on 4 June 2022).
- Conde-Pipo, J.; Bouzas, C.; Mariscal-Arcas, M.; Tur, J.A. Association between functional fitness and health-related quality of life in the Balearic Islands’ old adults with metabolic syndrome. Nutrients 2022, 14, 1798. [Google Scholar] [CrossRef]
- Vega-López, S.; Chavez, A.; Farr, K.J.; Ainsworth, B.E. Validity and reliability of two brief physical activity questionnaires among Spanish-speaking individuals of Mexican descent. BMC Res. Notes 2014, 7, 29. [Google Scholar] [CrossRef] [Green Version]
- Greco, A.; Brugnera, A.; Adorni, R.; D’ Addario, M.; Fattirolli, F.; Franzelli, C.; Giannattasio, C.; Maloberti, A.; Zanatta, F.; Steca, P. Protein intake and physical activity in newly diagnosed patients with acute coronary syndrome: A 5-year longitudinal study. Nutrients 2021, 13, 634. [Google Scholar] [CrossRef]
- Goñi, A.; Ruiz, S.; Liberal, I. Propiedades psicométricas de un nuevo cuestionario para la medida del autoconcepto físico. Rev. Psicol. Deporte 2004, 13, 195–213. Available online: https://archives.rpd-online.com/article/view/199.html (accessed on 8 June 2022).
- Schröder, H.; Fitó, M.; Estruch, R.; Martínez-González, M.A.; Corella, D.; Salas-Salvadó, J.; Lamuela-Raventós, R.; Ros, E.; Salaverría, I.; Fiol, M.; et al. A short screener is valid for assessing mediterranea diet adherence among older spanish men and women. J. Nutr. 2011, 141, 1140–1145. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Estruch, R.; Ros, E.; Salas-Salvadó, J.; Covas, M.I.; Corella, D.; Arós, F.; Gómez-Gracia, E.; Ruiz-Gutiérrez, V.; Fiol, M.; Lapetra, J.; et al. Primary prevention of cardiovascular disease with a Mediterranean diet supplemented with extra-virgin olive oil or nuts. N. Engl. J. Med. 2018, 378, e34. [Google Scholar] [CrossRef] [PubMed]
- Martínez-González, M.Á.; Corella, D.; Salas-Salvadó, J.; Ros, E.; Covas, M.I.; Fiol, M.; Wärnberg, J.; Arós, F.; Ruíz-Gutiérrez, V.; Lamuela-Raventós, R.M.; et al. Cohort profile: Design and methods of the PREDIMED study. Int. J. Epidemiol. 2012, 41, 377–385. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Muros, J.J.; Cofre-Bolados, C.; Arriscado, D.; Zurita, F.; Knox, E. Mediterranean diet adherence is associated with lifestyle, physical fitness, and mental wellness among 10-y-olds in Chile. Nutrition 2017, 35, 87–92. [Google Scholar] [CrossRef] [Green Version]
- Zaragoza-Martí, A.; Ferrer-Cascales, R.; Hurtado-Sánchez, J.A.; Laguna-Pérez, A.; Cabañero-Martínez, M.J. Relationship between adherence to the Mediterranean diet and health-related quality of life and life satisfaction among older adults. J. Nutr. Health Aging 2018, 22, 89–96. [Google Scholar] [CrossRef]
- Ensrud-Skraastad, O.K.; Haga, M. Associations between motor competence, physical self-perception and autonomous motivation for physical activity in children. Sports 2020, 8, 120. [Google Scholar] [CrossRef]
- Cárdenas-Fuentes, G.; Subirana, I.; Martinez-Gonzalez, M.A.; Salas-Salvadó, J.; Corella, D.; Estruch, R.; Fíto, M.; Muñoz-Bravo, C.; Fiol, M.; Lapetra, J.; et al. Multiple approaches to associations of physical activity and adherence to the Mediterranean diet with all-cause mortality in older adults: The PREvención con DIeta MEDiterránea study. Eur. J. Nutr. 2019, 58, 1569–1578. [Google Scholar] [CrossRef]
- Jodra, P.; Maté-Muñoz, J.L.; Domínguez, R. Percepción de salud, autoestima y autoconcepto físico en personas mayores en función de su actividad física. Rev. Psicol. Deporte 2019, 28, 127–134. [Google Scholar]
- Mariscal-Arcas, M.; Jimenez-Casquet, M.J.; Saenz de Buruaga, B.; Delgado-Mingorance, S.; Blas-Diaz, A.; Cantero, L.; Padial, M.; Matas, M.E.; Mohamed Martinez, N.; Salas, P.; et al. Use of social media, network avenues, blog and scientific information systems through the website promoting the Mediterranean diet as a method of a health safeguarding. Front. Commun. 2021, 6, 55. [Google Scholar] [CrossRef]
- Roura, E.; Milà-Villarroel, R.; Pareja, S.L.; Adot Caballero, A. Assessment of eating habits and physical activity among Spanish adolescents. The «Cooking and Active Leisure» TAS program. PLoS ONE 2016, 11, e0159962. [Google Scholar] [CrossRef] [PubMed]
- Nowson, C.A.; Service, C.; Appleton, J.; Grieger, J.A. The impact of dietary factors on indices of chronic disease in older people: A systematic review. J. Nutr. Health Aging 2018, 22, 282–296. [Google Scholar] [CrossRef] [PubMed]
- García-Esquinas, E.; Rahi, B.; Peres, K.; Colpo, M.; Dartigues, J.F.; Bandinelli, S.; Feart, C.; Rodríguez-Artalejo, F. Consumption of fruit and vegetables and risk of frailty: A dose-response analysis of 3 prospective cohorts of community-dwelling older adults. Am. J. Clin. Nutr. 2016, 104, 132–142. [Google Scholar] [CrossRef] [PubMed]
- Lauretani, F.; Semba, R.D.; Bandinelli, S.; Dayhoff-Brannigan, M.; Giacomini, V.; Corsi, A.M.; Guralnik, J.M.; Ferrucci, L. Low plasma carotenoids and skeletal muscle strength decline over 6 years. J. Gerontol. 2008, 63, 76–383. [Google Scholar] [CrossRef] [Green Version]
All Sample (n = 342) | Physical Activity Level | Mediterranean Dietary Pattern | ||||||||
---|---|---|---|---|---|---|---|---|---|---|
M | W | p * | Active | Non-active | p † | AMD | NAMD | p † | ||
Distribution | n | 258 | 84 | - | 222 | 120 | 144 | 198 | ||
% | 75.44 | 24.56 | 0.001 | 64.91 | 35.09 | 0.001 | 42.11 | 57.89 | 0.001 | |
Age (years) | Mean | 61.31 | 62.36 | 0.119 | 61.84 | 61.05 | 0.081 | 61.56 | 61.57 | 0.417 |
SD | 5.69 | 5.87 | - | 5.67 | 5.87 | - | 5.36 | 6.02 | - | |
Median | 60 | 60 | - | 60.00 | 59.00 | - | 60.00 | 60.00 | - | |
IQR | 6.00 | 9.25 | - | 9.00 | 6.00 | - | 8.00 | 8.00 | - | |
Height (m) | Mean | 1.73 | 1.59 | 0.001 | 1.71 | 1.68 | 0.120 | 1.70 | 1.69 | 0.387 |
SD | 7.98 | 7.78 | - | 9.13 | 10.95 | - | 9.39 | 10.21 | - | |
Median | 1.75 | 1.60 | - | 1.72 | 1.70 | - | 1.73 | 1.70 | - | |
IQR | 10.00 | 9.00 | - | 13.00 | 18.00 | - | 12.25 | 15.00 | - | |
Weight (kg) | Mean | 80.68 | 66.07 | 0.001 | 75.89 | 79.04 | 0.153 | 76.24 | 77.60 | 0.677 |
SD | 11.36 | 12.25 | - | 11.22 | 15.93 | - | 11.86 | 14.06 | - | |
Median | 79.00 | 63.00 | - | 75.00 | 78.00 | - | 75.00 | 77.00 | - | |
IQR | 15.50 | 11.75 | - | 15.50 | 22.50 | - | 17.00 | 18.00 | - | |
BMI (kg/m2) | Mean | 26.88 | 25.89 | 0.014 | 25.95 | 27.83 | 0.009 | 26.13 | 26.98 | 0.845 |
SD | 4.34 | 4.94 | - | 3.54 | 5.67 | - | 3.87 | 4.90 | - | |
Median | 25.95 | 24.60 | - | 25.24 | 26.43 | - | 20.69 | 21.82 | - | |
IQR | 4.61 | 5.02 | - | 4.27 | 5.40 | - | 4.18 | 5.19 | - | |
Hypertension | n | 47 | 13 | - | 36 | 24 | 0.558 | 24 | 36 | 0.826 |
% | 18.21 | 15.47 | 0.682 | 16.21 | 20.00 | - | 18.18 | 16.66 | - | |
Diabetes | n | 14 | 2 | - | 9 | 7 | 0.635 | 8 | 8 | 0.692 |
% | 5.42 | 0.23 | 0.391 | 4.05 | 5.83 | - | 4.04 | 5.55 | - | |
Cholesterol | n | 58 | 28 | - | 40 | 22 | 1.000 | 20 | 42 | 0.111 |
% | 15.50 | 26.10 | 0.040 | 18.01 | 18.33 | - | 13.88 | 21.12 | - |
Variable | PSC | PC | AT | SC | ST | MDP |
---|---|---|---|---|---|---|
PC | 0.50 ** | |||||
(0.42, 0.50) | ||||||
AT | 0.60 ** | 0.64 ** | ||||
(0.52, 0.66) | (0.58, 0.70) | |||||
SC | 0.56 ** | 0.72 ** | 0.52 ** | |||
(0.48, 0.62) | (0.66, 0.77) | (0.44, 0.60) | ||||
ST | 0.53 ** | 0.66 ** | 0.60 ** | 0.59 ** | ||
(0.45, 0.61) | (0.59, 0.72) | (0.52, 0.66) | (0.52, 0.66) | |||
MDP | 0.27 ** | 0.21 ** | 0.14 * | 0.13 | 0.19 ** | |
(0.07, 0.37) | (0.10, 0.30) | (0.14, 0.24) | (0.03, 0.20) | (0.09, 0.29) | ||
PA | 0.23 ** | 0.46 ** | 0.31 ** | 0.31 ** | 0.26 ** | 0.08 |
(0.12, 0.33) | (0.37, 0.54) | (0.21, 0.40) | (0.21, 0.41) | (0.16, 0.35) | (−0.03, 0.18) |
Variable and Groups | Very Low | Low | High | Very High | ||
---|---|---|---|---|---|---|
% | % | % | % | p * | Cramer´s V | |
General Physical Self-Concept | ||||||
Physical Activity Level | ||||||
Active | 25.00 | 66.67 | 59.74 | 80.37 | 0.001 | 0.414 |
Non-active | 75.00 | 33.33 | 40.26 | 19.63 | ||
Mediterranean Diet | ||||||
AMD | 16.67 | 41.67 | 38.53 | 42.06 | 0.001 | 0.221 |
NAMD | 83.33 | 58.33 | 61.47 | 57.94 | ||
Physical Condition | ||||||
Physical Activity Level | ||||||
Active | 29.55 | 49.14 | 80.46 | 89.71 | 0.001 | 0.497 |
Non-active | 70.45 | 50.86 | 19.54 | 10.29 | ||
Mediterranean Diet | ||||||
AMD | 22.73 | 38.86 | 42.53 | 43.38 | 0.007 | 0.173 |
NAMD | 77.27 | 61.14 | 57.47 | 56.62 | ||
Physical Attractiveness | ||||||
Physical Activity Level | ||||||
Active | 48.39 | 52.38 | 74.18 | 82.24 | 0.001 | 0.298 |
Non-active | 51.61 | 47.62 | 25.82 | 17.76 | ||
Mediterranean Diet | ||||||
AMD | 29.03 | 33.33 | 42.62 | 45.79 | 0.049 | 0.140 |
NAMD | 70.97 | 66.67 | 57.38 | 54.21 | ||
Sport Competence | ||||||
Physical Activity Level | ||||||
Active | 41.18 | 59.09 | 83.85 | 77.46 | 0.001 | 0.351 |
Non-active | 58.82 | 40.91 | 16.15 | 22.54 | ||
Mediterranean Diet | ||||||
AMD | 29.41 | 38.89 | 43.23 | 43.66 | 0.136 | 0.118 |
NAMD | 70.59 | 61.11 | 56.77 | 56.34 | ||
Strength | ||||||
Physical Activity Level | ||||||
Active | 43.48 | 57.36 | 70.68 | 78.91 | 0.001 | 0.278 |
Non-active | 56.52 | 42.64 | 29.32 | 21.09 | ||
Mediterranean Diet | ||||||
AMD | 30.43 | 30.23 | 41.77 | 47.66 | 0.022 | 0.155 |
NAMD | 69.57 | 69.77 | 58.23 | 52.34 |
MEDAS Questionnaire | Physical Self Concept by Level-Groups | |||||||
---|---|---|---|---|---|---|---|---|
All Sample | Very Low | Low | High | Very High | ||||
Item | Question | % Yes | % Yes | % Yes | % Yes | % Yes | p * | Cramer´s V |
1 | Use of EVOO as main culinary lipid | 98.48 | 100 | 98.61 | 99.57 | 97.20 | 0.256 | 0.101 |
2 | EVOO > 4 tablespoons | 50.47 | 33.33 | 52.78 | 51.52 | 61.68 | 0.001 | 0.206 |
3 | Vegetables ≥ 2 servings/day | 40.07 | 8.33 | 37.50 | 38.53 | 44.39 | 0.001 | 0.300 |
4 | Fruits ≥ 3 servings/day | 45.74 | 41.67 | 45.83 | 41.99 | 50.00 | 0.604 | 0.068 |
5 | Red/processed meats < 1/day | 80.71 | 75.00 | 68.06 | 81.82 | 84.11 | 0.029 | 0.150 |
6 | Butter, cream, margarine < 1/day | 95.08 | 100 | 94.44 | 94.37 | 95.79 | 0.128 | 0.119 |
7 | Soda drinks < 1/day | 89.79 | 91.67 | 90.28 | 90.04 | 89.25 | 0.950 | 0.030 |
8 | Wine glasses ≥ 7/week | 18.90 | 8.33 | 16.67 | 22.08 | 16.82 | 0.065 | 0.134 |
9 | Legumes ≥ 3/week | 48.58 | 25.00 | 59.72 | 45.02 | 50.00 | 0.001 | 0.255 |
10 | Fish/seafood ≥ 3/week | 42.91 | 16.67 | 44.44 | 41.13 | 45.79 | 0.001 | 0.246 |
11 | Commercial sweets < 2/week | 78.07 | 58.33 | 80.56 | 81.82 | 74.30 | 0.001 | 0.212 |
12 | Tree nuts ≥ 3/week | 55.38 | 33.33 | 52.78 | 51.52 | 61.68 | 0.001 | 0.206 |
13 | Poultry more than red meats | 75.42 | 83.33 | 80.56 | 76.19 | 72.43 | 0.256 | 0.101 |
14 | Use of sofrito sauce ≥ 2/week | 71.83 | 66.67 | 65.28 | 71.43 | 74.77 | 0.439 | 0.082 |
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Conde-Pipó, J.; Bouzas, C.; Zurita-Ortega, F.; Olea-Serrano, F.; Tur, J.A.; Mariscal-Arcas, M. Adherence to a Mediterranean Diet Pattern, Physical Activity, and Physical Self-Concept in Spanish Older Adults. Nutrients 2022, 14, 2404. https://doi.org/10.3390/nu14122404
Conde-Pipó J, Bouzas C, Zurita-Ortega F, Olea-Serrano F, Tur JA, Mariscal-Arcas M. Adherence to a Mediterranean Diet Pattern, Physical Activity, and Physical Self-Concept in Spanish Older Adults. Nutrients. 2022; 14(12):2404. https://doi.org/10.3390/nu14122404
Chicago/Turabian StyleConde-Pipó, Javier, Cristina Bouzas, Félix Zurita-Ortega, Fátima Olea-Serrano, Josep A. Tur, and Miguel Mariscal-Arcas. 2022. "Adherence to a Mediterranean Diet Pattern, Physical Activity, and Physical Self-Concept in Spanish Older Adults" Nutrients 14, no. 12: 2404. https://doi.org/10.3390/nu14122404