Literature DB >> 30189607

The Association between US Adolescents' Weight Status, Weight Perception, Weight Satisfaction, and Their Physical Activity and Dietary Behaviors.

Furong Xu1, Steven A Cohen2, Mary L Greaney3, Geoffrey W Greene4.   

Abstract

Background: It remain unclear that the association between weight status, weight perception, weight satisfaction and the clustering of physical activity (PA) and dietary behaviors in adolescents. Method: A cross-sectional analysis of National Health and Nutrition Examination Survey and the US Department of Agriculture's Food Patterns Equivalents 2007⁻2014 data from adolescents aged 12⁻17 years (n = 2965) was conducted. Multivariable logistic regression models adjusted for demographic characteristics examined the association between weight status, weight perception, weight satisfaction, and the four created lifestyle groups (healthier behaviors, healthier diet only, physically active only, unhealthier behaviors).
Results: Males with obesity were more likely to be in the healthier diet only group than males with a normal weight (OR = 1.90, 95% CI: 1.02, 3.52). Similar patterns were found in males who perceived themselves as being overweight or having obesity (OR = 2.09, 95% CI: 1.09, 3.99) and males with obesity who perceived their weight status accurately (OR = 2.33, 95% CI: 1.12, 4.88). Female respondents who were satisfied with their weight were 59% less likely to be in the healthier diet only group than healthier behaviors group compared with females who were weight dissatisfied (OR = 0.41, 95% CI: 0.23, 0.75). This pattern was not observed in males. Conclusions: Clustering PA and dietary behaviors were associated with weight status and weight perception for males but not females. Weight satisfaction was associated with clustered PA and dietary behaviors for females. These findings are important for obesity prevention policies and programs to better address adolescents' obesity and reduce health disparities in this population.

Entities:  

Keywords:  diet quality; physical activity; weight perception; weight satisfaction

Mesh:

Year:  2018        PMID: 30189607      PMCID: PMC6163799          DOI: 10.3390/ijerph15091931

Source DB:  PubMed          Journal:  Int J Environ Res Public Health        ISSN: 1660-4601            Impact factor:   3.390


1. Introduction

Currently 20.6% of US adolescents aged 12–19 have obesity [1]. This high prevalence of obesity and its associated short- and long-term health risks [1,2] make addressing obesity in this population a public health priority. Obesity among adolescents is often attributed to inadequate physical activity (PA) and a poor diet [3,4,5,6,7,8], and obesity prevention efforts often focus on increasing PA and promoting healthy diets to promote energy balance [7,8,9,10,11]. However, most available studies examining the relationships between lifestyle behaviors and obesity among adolescents focus on either PA or dietary behaviors [4,5,6,7,8]. Although an understanding of factors associated with both PA and dietary behaviors is needed to inform obesity prevention efforts for adolescents, research examining these behaviors simultaneously is lacking. Weight perception, the way in which individuals view their body weight, may be associated with adolescents PA and dietary behaviors [12]. Some evidence suggests that adolescents with self-perceived overweight or obesity, regardless of weight perception accuracy, are less physically active than those who perceive themselves as being normal weight [6,13,14,15]. They also are more likely to make unhealthier dietary choices [15,16,17]. However, other studies have had inconsistent results [18,19]. For example, Wong & Leatherdale found that adolescents who perceived themselves as being overweight or having obesity are not necessarily physically inactive when compared with their normal weight counterparts [18], and Fredrickson and colleagues found that adolescents’ awareness of being overweight was not associated with their dietary choices [19]. Weight satisfaction, how one feels about his/her weight, also maybe associated with adolescents’ PA and dietary behaviors [20]. Research examining the relationship between weight satisfaction, PA and dietary behaviors among adolescents is limited and inconsistent [19,21,22]. Therefore, there is a need to examine this relationship among a nationally representative sample of US adolescents. Thus, the purpose of the present study was to examine the association between adolescents’ weight status, weight perception, weight satisfaction and the clustering of PA and dietary behaviors. Given that associations could differ by sex, we examined these relationships in males and females respectively.

2. Methods

The current study was a cross-sectional analysis of data from the National Health and Nutrition Examination Survey (NHANES) and the US Department of Agriculture’s Food Patterns Equivalents (USDA-FPE) 2007–2014 datasets. NHANES data were collected via questionnaires (e.g., demographics, weight perception or satisfaction, 24-h dietary recall) or measured (e.g., height and weight) with response rates vary from 70–80% [23,24]. The USDA-FPE data examined in this study were the dietary components assessed via 24-h dietary recalls [24,25]. The two datasets were merged using participants’ study identification numbers and days of 24-h recalled dietary data. The present study was exempted by University of Rhode Island Institutional Review Board as the data used for the study are de-identified.

2.1. Analytic Sample

A total of 40,617 respondents were abstracted from NHANES and the USDA-FPE 2007–2014 datasets. Of these respondents, 3920 were 12–17 years of age. Of these, 3041 had complete data for all examined variables including two days of dietary recalls. Of the 3041 respondents, 2.5% (n = 76) were underweight based on body mass index (BMI, <5th percentile for BMI), and were excluded due to possible underweight-related psychological or physical pathology issues [26] as well as the small sample size. The final analytic sample included 2965 adolescents.

2.2. Weight Status

BMI was calculated using height and weight that was measured at the Mobile Examination Center (MEC). BMI was used to determine weight status according to 2000 Centers for Disease Control and Prevention growth charts (0–20 years): obesity (≥95th percentile), overweight (≥85th percentile but <95th percentile), normal weight (≥5th percentile but normal <85th percentile, and underweight (<5 the percentile) [27].

2.3. Weight Perception and Weight Perception Accuracy

Respondents’ weight perception was measured by a single-item question that asked them how they considered their weight with the response options of fat or overweight, about right weight, and thin [23]. Weight perception accuracy (accurate, inaccurate) was determined by comparing perceived and measured weight status (normal, overweight, obese). If the two measures were concordant, weight perception accuracy was considered to be accurate and if the two measures were discordant weight perception accuracy was deemed inaccurate [6].

2.4. Weight Satisfaction

Weight satisfaction was measured one of two ways depending on respondents’ age. For respondents aged 12–15 years, it was assessed by a single item that asked what they would like to do about their weight with the response options of: (1) lose weight, (2) gain weight, (3) stay the same or (4) not trying to do anything about weight [23]. Respondents who wanted to “gain or lose weight” were classified as being weight dissatisfied while those who reported that they were trying to “stay the same or were not trying to do anything about their weight” were reported as being weight satisfied. Respondents aged 16–17 were asked whether they would like to change their weight with the response options of: (1) weigh more, (2) weigh less or (3) weigh the same [23], and those who reported that they would like to weigh more or less were classified as being weight dissatisfied while those who reported that they would like to weigh same were classified as being weight satisfied.

2.5. Physical Activity

PA was measured in three domains (work, travel, and recreational) using the Global Physical Activity Questionnaire [23]. The metabolic equivalent of task (MET) minutes of moderate to vigorous PA per week in each domain was determined and then summed to calculate total PA time per week [23,28]. Respondents who participated in ≥1680 MET-minutes of PA per week were classified as meeting current PA recommendations, all others were classified as not meeting PA recommendations [29].

2.6. Diet Quality

Diet quality was determined using the National Cancer Institute’s simple Healthy Eating Index 2015 (HEI-2015) scoring algorithm [30,31], which is a reliable and valid measure of diet quality [24,30]. The HEI-2015 uses information from two 24-h dietary recalls conducted by NHANES to assess 13 dietary components (e.g., saturated fats, whole grains, etc.) [30]. The 13 components were summed to create total diet quality scores (range 0 to 100) with a higher score indicating better diet quality and greater adherence to the 2015–2020 Dietary Guidelines for Americans [31]. Participants were stratified into tertiles based on their total dietary quality scores: (1) lower quality diet (scores <42.1); (2) intermediate quality diet (scores 42.1–51.7); (3) healthier diet (scores >51.7). The top tertile was viewed as being indicative of a healthier diet whereas another two tertiles (lower quality diet and intermediate quality diet) were considered to indicate eating a less healthful diet.

2.7. Lifestyle Groups

Respondents were classified into four lifestyle groups based on their PA and dietary behaviors [29,31]: Group 1, healthier behaviors: meeting PA recommendations and eating a healthier diet; Group 2, healthier diet only: eating a healthier diet but not meeting PA recommendations; Group 3, physically active only: meeting PA recommendations but eating a less healthful diet; and Group 4, unhealthier behaviors: not meeting PA recommendations and eating a less healthful diet.

2.8. Demographic Characteristics

Examined demographic characteristics included age, sex, race/ethnicity (non-Hispanic White, non-Hispanic Black, Mexican American, other Hispanic, others) and parental education levels (high school or less, college or above) [25]. Family income and family size was used to calculate the poverty-to-income ratio that was then used to determine if the household income was at/above (≥1) or below (<1) federal poverty level [32]. NHANES has sampling design to assure reliable estimates of various US population subgroups thus participants are representative of the US population [24,33].

2.9. Statistical Analysis

The MEC exam 2-year weights were used for all analyses [33]. Descriptive results were obtained for the sample and are presented as mean ± standard error for continuous variables and frequencies and proportions for categorical variables. For the sex-specific prevalence of weight status, weight perception, weight perception accuracy, and weight satisfaction by the lifestyle groups, p-values for continuous variables were obtained by performing PROC SURVEYREG, and p-values for categorical variable were obtained by performing PROC SURVEYLOGISTC to perform the adjusted analyses, adjusting for age, race/ethnicity, parental education levels, and whether respondents lived at/above or below the poverty line. Bonferroni corrections were conducted for all multiple comparisons. To examine the association between weight status, weight perception, weight perception accuracy, and weight satisfaction (independent variables) and the four lifestyle groups (dependent variable), multivariable logistic regression models were performed with the use of PROC SURVEYLOGISTIC, with GLOGIT link (multinomial logistic model) with Group 1, healthier behaviors group, being the reference category to estimate the adjusted odds ratios. All models were adjusted for age, race/ethnicity, parental education level, and poverty status, and stratified by sex. All analyses were conducted using SAS version 9.4 (SAS Institute Inc., Cary, NC, USA) and significance was set at p < 0.05.

3. Results

Respondents’ mean age was 14.5 years, approximately half (49.7%) were females, 42.3% were racial/ethnic minorities, 39.6% had a parent with a high school education or less, 19.4% lived below the poverty line (see Table 1). About a quarter (20.8%) of respondents were classified as having obesity, 21.9% perceived themselves as being overweight or having obesity, 26% accurately perceived their weight as being overweight or obese, 55.8% were dissatisfied with their weight, 85.2% of respondents with obesity were dissatisfied with their weight.
Table 1

Sample characteristics stratified by sex (n = 2965).

TotalMalesFemalesp Value
n = 2965n = 1504n = 1461
Gender, n (weighted %)
        Males1504 (50.3)---
        Females1461 (49.7)---
Age (years) (mean ± SE)14.5 ± 0.014.5 ± 0.114.6 ± 0.10.409
Ethnicity, n (weighted %)
        Non-Hispanic White827 (57.7)435 (57.4)392 (57.9)0.804
        Non-Hispanic Black748 (14.1)378 (14.0)370 (14.2)0.856
        Mexican American695 (13.7)346 (13.8)349 (13.5)0.787
        Other Hispanic342 (6.5)171 (6.6)171 (6.4)0.772
        Others353 (8.0)174 (8.1)179 (7.9)0.857
Parent education level, n (weighted %)
        High school or less1420 (39.6)719 (38.9)701 (40.3)0.524
        College or above1451 (60.4)736 (61.1)715 (59.7)0.524
Poverty to income ratio, n (weighted %)
        <1.0793 (19.4)394 (19.0)399 (19.9)0.589
        ≥1.01941 (80.6)994 (81.0)947 (80.1)0.589
BMI (kg/m2)23.5 ± 0.123.4 ± 0.223.6 ± 0.20.446
Weight status, n (weighted %)
        Normal weight1765 (62.1)905 (60.6)860 (63.6)0.308
        Overweight521 (17.1)254 (17.6)267 (16.6)0.604
        Obesity679 (20.8)345 (21.8)334 (19.8)0.291
Perceived weight status, n (weighted %)
        Thin196 (5.5)128 (7.3)68 (3.6)<0.001 *
        Normal2055 (72.6)1093 (75.6)962 (69.6)<0.001 *
        Overweight/Obese714 (21.9)283 (17.1)431 (26.8)<0.001 *
Accurate weight perception #
        Normal1481 (74.1)760 (76.3)721 (72.0)0.072
        Overweight148 (6.4)46 (4.3)102 (8.3)0.012 *
        Obese471 (19.6)217 (19.4)254 (19.7)0.898
Weight satisfaction, n (weighted %)
        Satisfied938 (44.2)471 (46.0)467 (42.6)0.191
        Dissatisfied1358 (55.8)634 (54.0)724 (57.4)0.191
Weight satisfaction by weight category, n (weighted %)
        Normal weight
            Satisfied727(61.6)343(61.6)384(61.6)0.993
            Dissatisfied474(38.4)225(38.4)249(38.4)0.993
        Overweight
            Satisfied134(33.8)80(45.0)54(21.9)<0.001 *
            Dissatisfied313(66.2)132(55.0)181(78.1)<0.001 *
        Obesity
            Satisfied77(14.8)48(18.7)29(10.6)0.079
            Dissatisfied571(85.2)277(81.3)294(89.4)0.079
Physical activity (PA)
        Total PA (MET-minutes/week)2798.1 ± 85.23350.7 ± 121.72239.8 ± 92.1<0.001 *
        Met PA recommendation $, n (weighted %)1491 (54.9)900 (63.8)591 (45.9)<0.001 *
        Sedentary (sitting) in minutes/day498.1 ± 5.5489.1 ± 7.1507.1 ± 6.40.026 *
Diet quality score (HEI 2015)
        Total diet quality (mean ± SE)47.5 ± 0.346.9 ± 0.448.1 ± 0.40.016 *
        Tertile classification of total diet quality score, n (weighted %)
            First tertile (<42.1)978 (34.3)517 (34.7)461 (34.0)0.741
            Second tertile (42.1–51.7)978 (32.7)518 (34.6)460 (30.8)0.108
            Third tertile (>51.7)1009 (32.9)469 (30.7)540 (35.2)0.023 *

Note: Data are present as weighted mean ± standard error (SE) unless otherwise specified; $ accumulated ≥1680 MET minutes/week for 12–17 years old, HEI = Health Eating Index; # weigh perception accuracy defined as consistency of perceived and measured weight status. If the two measures were concordant, weight perception accuracy was considered to be accurate; * p < 0.05.

In regards to the examined behaviors, 32.9% had diets that were classified as being a healthier diet and 54.9% met current PA recommendations. About one-fifth (18.6%) of respondents were classified as being in Group 1, the healthier behaviors group, indicating that they met current PA recommendations and ate a healthier diet (see Table 2). More females than males were in Group 2, healthier diet only group (17.2% females vs. 11.4% males, p < 0.001), and Group 4, unhealthier behaviors group (36.9% vs. 24.7%, p < 0.001), whereas more males were in Group 3, physically active only group (44.5% males vs. 27.9% females, p < 0.001) (see Table 2).
Table 2

Lifestyle groups stratified by sex (n = 2965).

TotalMalesFemalesProportion Difference between Females and Males (95% CI)p Value
Groups, n (weighted %)n = 2965n = 1504n = 1461n = 2965
Group 1: Healthier behaviors515 (18.6)282 (19.3)233 (18.0)−1.27 (−4.84, 2.31)0.481
Group 2: Healthier diet only494 (14.3)187 (11.4)307 (17.2)5.75 (2.56, 8.94)<0.001 *
Group 3: Physically active only976 (36.3)618 (44.5)358 (27.9)−16.63 (−20.1, −13.15)<0.001 *
Group 4: Unhealthier behaviors980 (30.8)417 (24.7)563 (36.9)12.14 (8.48, 15.81)<0.001 *

Note: Data are present as weighted mean ± standard error unless otherwise specified; CI = confidence interval; * p < 0.05.

As shown in Table 3, Figure 1 and Figure 2, there were differences in weight status by lifestyle groups. A greater proportion of normal measured/perceived weight males as well as weight satisfied females were in Group 1, the healthier behaviors group, than Group 2, healthier diet only group, while males who perceived themselves as being overweight or having obesity and females who were weight dissatisfied were more likely to be in Group 2, the healthier diet only group, than Group 1, healthier behaviors group. Moreover, males with self-perceived overweight or obesity and females with obesity were more likely to be in Group 2, the healthier diet only group, than Group 3, the physically active only group.
Table 3

Associations between weight perception, weight satisfaction and lifestyle groups (n = 2965).

Group 1: Healthier BehaviorsGroup 2: Healthier Diet Only Group 3: Physically Active Only Group 4: Unhealthier BehaviorsOverall p Value
Males (n = 1504) n = 282 (19.3%) n = 187 (11.4%) n = 618 (44.5%) n = 417 (24.7%)
Weight status
       Normal weight173 (65.9)92 (48.7) a386 (62.1)254 (59.2) c0.017 *
       Overweight43 (12.8)37 (20.6)109 (20.1)65 (15.6)0.041 *
       Obese66 (21.4)58 (30.7)123 (17.7)98 (25.2)0.038 *
Perceived weight status
       Thin18 (5.0)16 (7.8)58 (7.9)36 (7.9)0.258
       Normal210 (78.1)121 (66.4) a466 (79.3)296 (71.0)0.022 *
Overweight/Obese54 (16.9)50 (25.8) a94 (12.8) b85 (21.1)0.005 *
Accurate weight perception
       Normal150 (79.3)73 (61.7) a323 (81.5) b214 (71.4)0.007 *
       Overweight7 (3.2)9 (6.9)13 (2.5)17 (6.9)0.048 *
       Obese41 (17.5)38 (31.5)75 (16.0)63 (21.7)0.045 *
Weight satisfaction
       Satisfied94 (53.0)54 (43.8)193 (44.7)130 (43.9)0.468
       Dissatisfied119 (47.0)94 (56.2)255 (55.3)166 (56.1)0.468
Females (n = 1461) n = 233 (18.0%) n = 307 (17.2%) n = 358 (27.9%) n = 563 (36.9%)
Weight status
       Normal weight145 (68.0)165 (56.3)216 (68.8)334 (60.9)0.222
       Overweight42 (16.7)58 (15.7)74 (17.0)93 (16.6)0.956
       Obese46 (15.3)84 (28.1)68 (14.2) b136 (22.5)0.007 *
Perceived weight status
       Thin9 (3.4)16 (4.7)15 (2.8)28 (3.8)0.538
       Normal168 (73.7)181 (59.2)250 (75.4) b363 (68.1)0.023 *
       Overweight/Obese56 (23.0)110 (36.1)93 (21.8) b172 (28.1)0.049 *
Accurate weight perception
       Normal132 (76.4)132 (60.6)182 (78.7) b275 (69.7)0.036 *
       Overweight15 (8.2)30 (11.1)25 (7.8)32 (7.4)0.863
       Obese35 (15.5)63 (28.3)49 (13.5)107 (22.9)0.011 *
Weight satisfaction
       Satisfied88 (52.0)80 (29.1) a110 (43.5)189 (43.8) c0.009 *
       Dissatisfied103 (48.0)175 (70.9) a178 (56.5)268 (56.2) c0.009 *

Note: Data are presented as n (weighted %); p-value for continuous variables was obtained by performing PROC SURVEYREG, and p-value for category variable was obtained by performing PROC SURVEYLOGISTC to perform the adjusted analyses, adjusted for age, race, parental education level and poverty status; Bonferroni corrections were used for all multiple comparisons; a Group 1 differed from Group 2 with a p < 0.05; b Group 2 differed from Group 3 with a p < 0.05; c Group 2 differed from Group 4 with a p < 0.05; * p < 0.05.

Figure 1

Lifestyle groups by weight status in males (n = 1504). Group 1: healthier behaviors; Group 2: healthier diet only; Group 3: physically active only; Group 4: unhealthier behaviors; a. Group 1 differed from Group 2 with a p < 0.05; b. Group 2 differed from Group 4 with a p < 0.05.

Figure 2

Lifestyle groups by weight status in females (n = 1461). Group 1: healthier behaviors; Group 2: healthier diet only; Group 3: physically active only; Group 4: unhealthier behaviors; a. Group 2 differed from Group 3 with a p < 0.05.

Comparing Group 1, the healthier behaviors group, to the other three lifestyle groups by weight categories, males with overweight or obesity were more likely to be in Group 2, the healthier diet only group, than males with normal weight (see Table 4). More specifically, males with obesity were 90% more likely to be in Group 2, the healthier diet only group, than Group 1, healthier behaviors group, compared to males of normal weight (OR = 1.90, 95% CI: 1.02, 3.52). Similarly, males who perceived themselves as being overweight or having obesity (OR = 2.09, 95% CI: 1.09, 3.99) and those who accurately perceived themselves as having obesity (OR = 2.33, 95% CI: 1.12, 4.88) were more likely to be in Group 2 than Group 1. Males who accurately perceived themselves as being overweight were more likely to be in Group 2, the healthier diet only group (OR = 3.87, 95% CI: 1.01, 15.69) or Group 4, unhealthier behaviors group (OR = 3.15, 95% CI: 1.00, 10.04) than males who accurately perceived themselves as being normal weight (Table 4). No statistical difference was observed between males who were satisfied with their weight and those who were weight dissatisfied.
Table 4

Adjusted odd ratios of lifestyle groups related to weight status, weight perception, and weight satisfaction (n = 2965).

Group 2: Healthier Diet Only vs. Group 1: Healthier BehaviorsGroup 3: Physically Active Only vs. Group 1: Healthier BehaviorsGroup 4: Unhealthier Behaviors vs. Group 1: Healthier Behaviors
Males (n = 1504) Adjusted ORs (95% CI) p Value Adjusted ORs (95% CI) p Value Adjusted ORs (95% CI) p Value
Weight status
        Normal weight1.0 (REF)1.0 (REF)1.0 (REF)
        Overweight2.33 (1.15, 4.68)0.016*1.73 (1.00, 3.00)0.046 *1.21 (0.67, 2.19)0.528
        Obese1.90 (1.02, 3.52)0.038*0.85 (0.50, 1.44)0.5371.14 (0.69, 1.86)0.605
Perceived weight status
        Normal1.0 (REF)1.0 (REF)1.0 (REF)
        Thin0.89 (0.34, 2.32)0.8051.43 (0.71, 2.88)0.3081.45 (0.71, 2.95)0.301
        Overweight/Obese2.09 (1.09, 3.99)0.024*0.82 (0.49, 1.38)0.4441.37 (0.87, 2.16)0.164
Accurate weight perception
        Normal1.0 (REF)1.0 (REF)1.0 (REF)
        Overweight3.87 (1.01, 15.69)0.047 *1.09 (0.33, 3.63)0.8863.15 (1.00, 10.04)0.048 *
        Obese2.33 (1.12, 4.88)0.022 *0.90 (0.48, 1.68)0.741.18 (0.66, 2.10)0.571
Weight satisfaction
        Dissatisfied1.0 (REF)1.0 (REF)1.0 (REF)
        Satisfied0.69 (0.40, 1.19)0.1740.73 (0.46, 1.15)0.1650.75 (0.45, 1.24)0.256
Females (n = 1461)
Weight status
        Normal weight1.0 (REF)1.0 (REF)1.0 (REF)
        Overweight1.05 (0.51, 2.17)0.8851.02 (0.51, 2.05)0.9531.06 (0.56, 2.00)0.856
        Obese1.97 (0.96, 4.04)0.0580.92 (0.51, 1.66)0.7791.52 (0.85, 2.73)0.153
Perceived weight status
        Normal1.0 (REF)1.0 (REF)1.0 (REF)
        Thin1.47 (0.37, 5.80)0.5760.54 (0.13, 2.19)0.3831.04 (0.27, 3.98)0.949
        Overweight/Obese1.53 (0.83, 2.84)0.1670.84 (0.51, 1.38)0.4721.25 (0.75, 2.10)0.378
Accurate weight perception
        Normal1.0 (REF)1.0 (REF)1.0 (REF)
        Overweight1.41 (0.48, 4.20)0.5250.86 (0.39, 1.87)0.690.94 (0.37, 2.36)0.889
        Obese1.80 (0.87, 3.72)0.1050.79 (0.41, 1.53)0.4771.42 (0.74, 2.70)0.28
Weight satisfaction
        Dissatisfied1.0 (REF)1.0 (REF)1.0 (REF)
        Satisfied0.41 (0.23, 0.75)0.003 *0.74 (0.43, 1.27)0.2690.74 (0.41, 1.34)0.307

Note: ORs = odds ratios; REF = reference; Adjusted ORs were obtained by PROC SURVEYLOGISTIC using the generalized logit model with the LINKG = LOGIT option (multinomial logistic model), adjusted for age, race/ethnicity, parental education level, poverty status; * p < 0.05.

For females, there was no significant association between weight status, weight perception or weight perception accuracy by lifestyle groups. Females who were satisfied with their weight were 59% less likely to be in Group 2, healthier diet only group, than Group 1, the healthier behaviors group, compared with those who were dissatisfied with their weight (OR = 0.41, 95% CI: 0.23, 0.75).

4. Discussion

The present study used a nationally representative sample of adolescents to examine differences in four lifestyle groups characterized by the clustering of PA and dietary behaviors by weight status, weight perception, and weight satisfaction. Study results extended previous research findings by documenting that males with overweight or obesity or self-perceived overweight or obesity were less likely to meet PA recommendations than males with normal weight but diet quality did not differ [34]. Results of the current study also determined that females who were satisfied with their weight were more likely to meet PA recommendations and have a healthful diet than those who were dissatisfied with their weight. These findings indicate that lifestyle behaviors for males differ by weight status and weight perception whereas lifestyle behaviors for females differ by weight satisfaction. In the present study, 54.9% of respondents were classified as meeting current PA recommendations, 32.9% had healthier diets. However, only 18.6% of the sample met PA recommendations and ate a more healthful diet. Although these finding are consistent with previous studies examining PA and/or diet quality among adolescents [4,11,35,36], no prior studies to our knowledge, examined the clustering of PA and dietary behaviors using a representative sample of US adolescents. Moreover, no identified studies assessed diet quality using the HEI-2015, which examines adherence to 2015–2020 dietary Guidelines for Americans [30]. The HEI-2015 differs from prior versions in assessed components and scoring, but, the average diet quality score of 47.5 in the current study is comparable to HEI-2010 mean score of 48.4 found in adolescents aged 12–18 from NHANES 2011–2012 [37]. Although the upper tertile (HEI-2015 scores >51.7) was defined as being a healthier diet for this study, according to the original HEI rating system, scores 51–80 indicate a diet that needs improvement [38]. Furthermore, the present study revealed sex differences across lifestyle groups: more females than males were in the healthier diet only group and the unhealthier behaviors group whereas more males than females were in the physically active only group. This finding is consistent with prior research that had found males to be more physically active than females [6,14] but differs from findings from other research who found that males had better dietary quality than females [35,39]. However, such results should be interpreted with caution because the clustering of PA and dietary behaviors were not examined in these studies [6,14,35,39]. Study findings indicate that males with overweight or obesity or who perceived themselves as being overweight or having obesity were more likely to consume a healthier diet but less likely to meet the PA recommendations than males with a normal weight or perceived their weight to be normal. However, similar results were not found among females. This finding differs from that of prior studies who have found that adolescents with self-perceived overweight or obesity were physically inactive [6,14,15] but not related to dietary choices [40], although comparisons between these studies should be made with caution considering that the current study examined individuals’ PA and dietary behavior cluster. Moreover, the present study found that males who accurately perceived themselves as being overweight were more likely have unhealthier lifestyle behaviors. These findings suggest that for males recognizing oneself as being overweight may be a barrier to participating in PA and eating a healthier diet but this might not the case for males with obesity. These findings also suggest that sex differences in the relationship of weight status, weight perception and lifestyle behaviors should be considered while tailoring suitable obesity prevention or intervention strategies to address the unique needs of males and females with obesity in different lifestyle behavior groups. Additionally, although the percentage of adolescents who were weight satisfied in this study is comparable to other studies [19,40], no difference in weight satisfaction by sex were observed as other studies have found [19,40]. This could be due to the use of a single item assessing weight satisfaction in the current study compared to other research [19,40]. Furthermore, differences in weight satisfaction by lifestyle groups were observed only among females. Females who satisfied with their weight were more likely in the healthier behaviors group, meeting PA recommendations and eating a healthier diet, than females who dissatisfied with their weight. Fredrickson and colleagues also have found that weight satisfaction is associated with healthy behaviors such as meeting the daily fruit recommendations but not related to daily servings of vegetables or PA [19]. Nevertheless, the present study extends previous research by examining PA and overall diet quality in tandem, which provides important insights for obesity prevention efforts and support the idea that weight satisfaction may serve as motivating factor for females engaging in healthy behaviors. Study strengths include the use of a nationally representative sample that is racially/ethnically diverse (42.3% identifying as racial/ethnic minorities) and parents with less than a college education (39.6%), to examine the association of weight status, weight perception, weight satisfaction, and the clustering of PA and dietary behaviors. An additional study strength is use of measured height and weight to determine weight status as well as the use of 24-h recall methodology instead of a food frequency questionnaire. This also is the first study using HEI-2015 as an overall measure of dietary quality in adolescents. Study limitations include its cross-sectional design which does not allow for causality evaluation, weight satisfaction assessed using a single-item, and PA measured using a self-reported instrument. In addition, healthier PA was defined as meeting guidelines but since no guidelines exist for HEI-2015, healthier was defined as the upper tertile. This resulted in a greater proportion of adolescents meeting the PA cutoff for healthier than the dietary cutoff for healthier, thus results must be interpreted with caution. Nevertheless, all the measures are widely used and the study utilized validated instruments [24,28,29,30].

5. Conclusions

There were differences in weight status and weight perception by lifestyle group, and these differences were largely driven by PA for males and diet quality for females. Males with overweight or obesity were more likely not to meet PA recommendations but tended to have a higher quality diet than males with normal weight. Similar pattern was also observed in males with self-perceived overweight or obesity. Whereas females who were weight satisfied were more likely to meet the PA recommendation and eat a healthier diet than females who were dissatisfied with their weight. These results indicate that the importance of weight status, weight perception, and weight satisfaction in the adoption of healthier lifestyle behaviors particularly for individuals with overweight or obesity. Our findings also suggest that examining PA and dietary behavior cluster instead of either/or in the present study provides important insights on lifestyle behaviors difference that can be used to frame future research or interventions.
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2.  Religion, weight perception, and weight control behavior.

Authors:  Karen Hye-cheon Kim
Journal:  Eat Behav       Date:  2006-04-19

3.  Diet quality, nutrition and physical activity among adolescents: the Web-SPAN (Web-Survey of Physical Activity and Nutrition) project.

Authors:  Kate E Storey; Laura E Forbes; Shawn N Fraser; John C Spence; Ronald C Plotnikoff; Kim D Raine; Rhona M Hanning; Linda J McCargar
Journal:  Public Health Nutr       Date:  2009-06-23       Impact factor: 4.022

4.  Weight perception in overweight adolescents: Associations with body change intentions, diet and physical activity.

Authors:  Julia Fredrickson; Peter Kremer; Boyd Swinburn; Andrea de Silva; Marita McCabe
Journal:  J Health Psychol       Date:  2015-06

5.  Differences in body esteem by weight status, gender, and physical activity among young elementary school-aged children.

Authors:  Lenka H Shriver; Amanda W Harrist; Melanie Page; Laura Hubbs-Tait; Michelle Moulton; Glade Topham
Journal:  Body Image       Date:  2012-11-24

6.  Estimating the energy gap among US children: a counterfactual approach.

Authors:  Y Claire Wang; Steven L Gortmaker; Arthur M Sobol; Karen M Kuntz
Journal:  Pediatrics       Date:  2006-12       Impact factor: 7.124

Review 7.  Systematic review of diet quality indices and their associations with health-related outcomes in children and adolescents.

Authors:  S Marshall; T Burrows; C E Collins
Journal:  J Hum Nutr Diet       Date:  2014-02-13       Impact factor: 3.089

8.  The validity of self-reported vs. measured body weight and height and the effect of self-perception.

Authors:  Mehmet Enes Gokler; Necati Bugrul; Ahu Ozturk Sarı; Selma Metintas
Journal:  Arch Med Sci       Date:  2016-07-22       Impact factor: 3.318

Review 9.  Dynamic Energy Balance: An Integrated Framework for Discussing Diet and Physical Activity in Obesity Prevention-Is it More than Eating Less and Exercising More?

Authors:  Melinda M Manore; D Enette Larson-Meyer; Anne R Lindsay; Nobuko Hongu; Linda Houtkooper
Journal:  Nutrients       Date:  2017-08-19       Impact factor: 5.717

10.  Body Weight Perception and Weight Control Practices among Teenagers.

Authors:  Darshini Devi Bhurtun; Rajesh Jeewon
Journal:  ISRN Nutr       Date:  2013-08-18
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1.  Accuracy of Body Size Estimation in Youth with Cystic Fibrosis and Association with Health-Related Quality of Life.

Authors:  Stacey L Simon; Kaitlyn A Ferris; Kristine Durkin; Kristin Riekert; Christina Duncan
Journal:  J Clin Psychol Med Settings       Date:  2020-09

2.  Determining the effective factors in predicting diet adherence using an intelligent model.

Authors:  Hediye Mousavi; Majid Karandish; Amir Jamshidnezhad; Ali Mohammad Hadianfard
Journal:  Sci Rep       Date:  2022-07-19       Impact factor: 4.996

3.  Mediating role of body-related shame and guilt in the relationship between weight perceptions and lifestyle behaviours.

Authors:  K M Lucibello; C M Sabiston; E K O'Loughlin; J L O'Loughlin
Journal:  Obes Sci Pract       Date:  2020-03-25

4.  Results of a Family-Based Intervention Promoting Healthy Weight Strategies in Overweight Hispanic Adolescents and Parents: An RCT.

Authors:  Guillermo Prado; Alejandra Fernandez; Sara M St George; Tae K Lee; Cynthia Lebron; Maria I Tapia; Maria Rosa Velazquez; Sarah E Messiah
Journal:  Am J Prev Med       Date:  2020-10-01       Impact factor: 5.043

5.  Sociodemographic characteristics are associated with prevalence of high-risk waist circumference and high-risk waist-to-height ratio in U.S. adolescents.

Authors:  Felicia J Setiono; Laura A Guerra; Cindy Leung; Tashara M Leak
Journal:  BMC Pediatr       Date:  2021-05-03       Impact factor: 2.125

6.  Sex-Related Difference in the Association Between Child Neglect and the Accuracy of Body Weight Perception Among Chinese Primary Schoolchildren.

Authors:  Hong-Jie Yu; Xiangxiang Liu; Ming-Wei Liu; Min-Zhe Zhang; Miaobing Zheng; Qi-Qiang He
Journal:  Front Public Health       Date:  2021-11-23

7.  Prevalence of body weight dissatisfaction among adolescents: a systematic review.

Authors:  Mariana Contiero San Martini; Daniela de Assumpção; Marilisa Berti de Azevedo Barros; Josiemer Mattei; Antônio de Azevedo Barros Filho
Journal:  Rev Paul Pediatr       Date:  2022-09-12

8.  Feasibility of a Theory-Based, Online Tailored Message Program to Motivate Healthier Behaviors in College Women.

Authors:  Patrice A Hubert; Holly Fiorenti; Valerie B Duffy
Journal:  Nutrients       Date:  2022-09-27       Impact factor: 6.706

9.  Racial/Ethnic Disparities in US Adolescents' Dietary Quality and Its Modification by Weight-Related Factors and Physical Activity.

Authors:  Furong Xu; Steven A Cohen; Mary L Greaney; Disa L Hatfield; Geoffrey W Greene
Journal:  Int J Environ Res Public Health       Date:  2019-11-29       Impact factor: 3.390

  9 in total

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