Showing posts with label Obesity. Show all posts
Showing posts with label Obesity. Show all posts

Wednesday, May 10, 2017

Polfuss M, Bandini LG, Sawin KJ. (2017) Obesity Prevention for Individuals with Spina Bifida.
Current Obesity Reports. 2017 Apr 28. doi: 10.1007/s13679-017-0254-y. [Epub ahead of print] Review. PMID: 28455677
 

Abstract

PURPOSE OF REVIEW:

Obesity is a common comorbidity in individuals with spina bifida. Carrying excess weight exacerbates the inherent health challenges associated with spina bifida, impedes the individual's ability to self-manage their condition, and creates further challenges for family members and caregivers. This manuscript provides a narrative review of key issues for understanding and prevention of obesity in persons with spina bifida within the context of the social ecological model.

RECENT FINDINGS:

Specific variables related to obesity and spina bifida include individual factors (i.e., body composition and measurement issues, energy needs, eating patterns, physical activity, and sedentary activity) family factors (i.e., parenting/family, peers), community factors (i.e., culture, built environment, healthcare and healthcare providers, and school), and societal factors (i.e., policy issues). Due to the complex etiology of obesity and its increased prevalence in individuals with spina bifida, it is critical to initiate prevention efforts early with a multifactorial approach for this at-risk population. Increased research is warranted to support these efforts.

Thursday, July 18, 2013

Galluzzi F, Bindi G, Poggi G, Rossi S, Danti DA, Salti R. [Precocious puberty, Gh deficiency and obesity can affect final height in patients with myelomeningocele: comparison of males and females].
Pediatr Med Chir. 1999 Mar-Apr;21(2):73-8.
[Article in Italian]

Source

Clinica Pediatrica II, Università di Firenze, Italia.

Abstract

Patients with myelomeningocele show an increased incidence of endocrinological disorders during their childhood. These disorders can ulteriorly affect the adult height of these patients who are already extremely short. In the present study we determined the final height in 21 patients (11 females aged 20.55 +/- 3.54 years; 10 males aged 20.99 +/- 2.94 years) with myelomeningocele. The endocrinological implications were investigated by clinical and laboratory assessment at control and an accurate retrospective evaluation of individual clinical history. Auxological data indicated that in male patients mean final height was significantly less (P < 0.05) than target height, but in females the difference between final height and target height was even more marked (P < 0.001). Comparison of SDS for adult height between males (-2.04 +/- 1.89) and females (-4.36 +/- 2.24) evidenced a statistically significant difference (P < 0.05). The analysis of endocrinological data showed that 7 females had had precocious puberty not treated; no case of precocious puberty was evidenced in males. In 4 females we observed plasmatic IGF-1 and IGFBP-3 concentrations significantly reduced either for chronological age and pubertal stage; this finding emerged in only 1 male. Plasmatic thyroid hormone and adrenal steroid concentrations resulted normal in both groups. Finally, obesity, considered as BMI > 90%, resulted present since childhood in 4 females and 2 males. Our data show that females with myelomeningocele have a statistically greater decrease of their adult stature respect to males. This difference is probably due to a more significant incidence in females of endocrinological diseases. Thus, we believe that a better statural prognosis may be joined in these patients (particularly in girls), through a careful endocrinological follow-up, performed from their births, in order to ensure a prompt identification and treatment of the cases of precocious puberty, impaired GH secretion or obesity.
PMID: 10570785

Monday, October 1, 2007

Aerobic fitness and upper extremity strength in patients aged 11 to 21 years with spinal cord dysfunction as compared to ideal weight and overweight c

Widman LM, Abresch RT, Styne DM, McDonald CM. Aerobic fitness and upper extremity strength in patients aged 11 to 21 years with spinal cord dysfunction as compared to ideal weight and overweight controls. Journal of Spinal Cord Medicine. 2007;30 Suppl 1:S88-96.

OBJECTIVE: To determine whether the aerobic fitness, upper extremity strength, and body composition in groups of adolescents with mobility impairment due to thoracic and upper lumbar spinal cord injury (SCI) or spina bifida (SB) are significantly different from those in groups of adolescents without mobility impairment who are of normal weight (CTRL) or overweight (OW).

SUBJECTS: One hundred fifteen total subjects were evaluated including 59 female (19 SB, 9 SCI, 17 OW, and 14 CTRL) and 56 male (18 SB, 10 SCI, 8 OW, and 20 CTRL) participants aged 11 to 21 years.

METHODS: Aerobic fitness was assessed using a ramp protocol with a magnetically braked arm ergometer. Heart rate and oxygen uptake (VO2) were recorded. Peak isokinetic upper arm and shoulder strength values were determined with a dynamometer. Body composition was estimated using dual energy x-ray absorptiometry (DEXA). Male and female subjects were categorized as overweight if their percent body fat by DEXA exceeded 25% and 30%, respectively. Results were analyzed with an ANOVA using the Bonferroni correction. Significance was accepted at P < 0.05.

RESULTS: The percent body fat of both the male and female SB and SCI subjects was significantly higher than CTRL but was not different than OW. In general, the shoulder extension and flexion strength in both the SB and SCI males and females was significantly lower than that of the CTRL and OW. The SCI and SB subjects had significantly reduced aerobic capacity (VO2/kg) compared to the CTRL subjects but were not different than the OW subjects. During the maximal exercise test, the SB and SCI subjects reached exhaustion at significantly lower workloads than the CTRL and OW subjects.

CONCLUSIONS: Patients age 11 to 21 years with SB and SCI had reduced aerobic capacity that was associated with being overweight and having reduced upper extremity strength. These data suggest that interventions to increase strength and fitness and to manage weight should be recommended in this population.

PMID: 17874693

Body composition and resting energy expenditure in patients aged 11 to 21 years with spinal cord dysfunction compared to controls: comparisons and rel

Liusuwan RA, Widman LM, Abresch RT, Styne DM, McDonald CM. Body composition and resting energy expenditure in patients aged 11 to 21 years with spinal cord dysfunction compared to controls: comparisons and relationships among the groups.
Journal of Spinal Cord Medicine. 2007;30 Suppl 1:S105-11.


OBJECTIVES: To compare body composition in patients aged 11 to 21 years with spinal dysfunction due to spinal cord injury (SCI) and spina bifida (SB) vs. able-bodied control (CTRL) and able-bodied overweight (OW) groups and to examine the relationships between resting energy expenditure (REE) and total lean mass (TLM) in the SCI, SB, CTRL, and OW groups.

METHODS: Two hundred fifteen subjects, including 85 CTRL, 31 OW, 33 SCI, and 66 SB, were evaluated. Body composition was estimated by dual energy x-ray absorptiometry (DXA). Measurements included height, weight, total lean mass (TLM), fat tissue mass (FTM), body mass index (BMI), BMI percentile (BMI%tile), and % fat. Resting energy measurements were obtained in fasting subjects with an open-circuit indirect calorimeter.

RESULTS: There were gender differences in height, weight, BMI, TLM, fat mass, % fat, and REE. The REE in the SCI and SB groups was significantly different from that in the CTRL and OW groups, but no significant difference was found between the SCI and SB groups. The SB group had significantly higher REE/TLM ratios than did the other groups. The % fat was significantly higher in the SB and OW groups as compared to the CTRL and SCI groups. TLM was significantly higher in CTRL and OW groups as compared to SCI and SB groups, with the lowest TLM found in the SB group.

CONCLUSION: Patients aged 11 to 21 years with SB or SCI have significant lean tissue mass deficits by DXA as compared to able-bodied CTRL and OW groups, with the greatest deficits in total lean mass measured in SB. The absolute REE values were significantly reduced in both SCI and SB groups in association with their lean tissue deficits. Interestingly, REE/TLM ratios were remarkably constant in the CTRL, OW, and SCI groups but significantly elevated in the SB group. One would expect an even greater degree of adiposity in the SB group if their REE/TLM ratios were not elevated relative to those without congenital paralysis.

PMID: 17874695

Impact of spinal cord dysfunction and obesity on the health-related quality of life of children and adolescents.

Abresch RT, McDonald DA, Widman LM, McGinnis K, Hickey KJ. Impact of spinal cord dysfunction and obesity on the health-related quality of life of children and adolescents. Journal of Spinal Cord Medicine. 2007;30 Suppl 1:S112-8.

OBJECTIVES: The objectives of this study were: (1) to compare the health-related quality of life (HRQOL) of children and adolescents with mobility impairments due to spinal cord injury (SCI) and spina bifida (SB) to the HRQOL of children and adolescent controls without mobility impairments (CTRL); and (2) to examine the impact of of obesity on the HRQOL of these subjects.

METHODS: The Pediatric Quality of Life Inventory (PedsQL) was administered to 42 SB, 71 SCI and 60 able-bodied subjects who were 8-20 years of age. Subjects were categorized as obese if their BMI exceeded the 95th percentile for age. Twenty-one CTRL, 26 SB and 26 SCI subjects were obese.

RESULTS: The SCI and SB subjects had significantly lower subscores than the control subjects on the physical (p < 0.001), emotional (p < .01), social (p < .001), and school (p < .001) domains of the PedsQL. The obese (CTRL) group had lower subscores on the physical (p < 0.001), social (p < 0.001), and psychosocial (p < 0.001) domains of the PedsQL as compared to the non-obese CTRL group, while there were no significant differences in subscores from the emotional and school domains. In contrast to the subjects without mobility impairment, there were no significant differences between the sub-scores of the obese and non-obese subjects with spinal cord dysfunction secondary to SCI or SB. The mean total PedsQL score of the non-obese control group (87.7 +/- 2.1) was significantly higher than the obese control group (75.2 +/- 3.4, p < 0.02), which in turn was significantly higher than the SCI group (63.7 +/- 2.2, p < 0.02), and the SB group (63.0 +/- 2.2, p < 0.02).

CONCLUSION: Patients with SCI and SB have significantly lower HRQOL than children and adolescents without mobility impairments. Whereas obesity significantly reduces the quality of life scores of adolescents without mobility impairments, it has no significant incremental effect on subjects with SCI or SB.

17874696

Metabolic syndrome in adolescents with spinal cord dysfunction

Nelson MD, Widman LM, Abresch RT, Stanhope K, Havel PJ, Styne DM, McDonald CM.
Metabolic syndrome in adolescents with spinal cord dysfunction.
Journal of Spinal Cord Medicine. 2007;30 Suppl 1:S127-39.

OBJECTIVE: The purpose of this study was to determine the prevalence of components of the metabolic syndrome in adolescents with spinal cord injury (SCI) and spina bifida (SB), and their associations with obesity in subjects with and without SCI and SB.

METHODS: Fifty-four subjects (20 SCI and 34 SB) age 11 to 20 years with mobility impairments from lower extremity paraparesis were recruited from a hospital-based clinic. Sixty able-bodied subjects who were oversampled for obesity served as controls (CTRL). Subjects were categorized as obese if their percent trunk fat measured by dual x-ray absorptiometry (DXA) was > 30.0% for males and > 35.0% for females. Ten SCI, 24 SB, and 19 CTRL subjects were classified as obese. Fasting serum samples were collected to determine serum glucose, insulin, and lipid concentrations. Metabolic syndrome was defined as having > or =3 of the following components: (a) obesity; (b) high-density lipoprotein (HDL) <45 mg/dL for males; <50 mg/dL for females; (c) triglycerides 2100 mg/dL; (d) systolic or diastolic blood pressure > or =95th percentile for age/ height/gender, and (e) insulin resistance determined by either fasting serum glucose 100-125 mg/dL; fasting insulin > or =20 microU /mL; or homeostasis model assessment of insulin resistance > or = 4.0.

RESULTS: Metabolic syndrome was identified in 32.4% of the SB group and 55% of the SCI group. Metabolic syndrome occurred at a significantly higher frequency in obese subjects (SB = 45.8%, SCI = 100%, CTRL = 63.2%) than nonobese subjects (SB = 0%, SCI = 10%, CTRL = 2.4%).

CONCLUSIONS: The prevalence of metabolic syndrome in adolescents with SB/SCI is quite high, particularly in obese individuals. These findings have important implications due to the known risks of cardiovascular diseases and diabetes mellitus associated with metabolic syndrome in adults, particularly those with spinal cord dysfunction.

PMID: 17874698