824 resultados para Weight-loss Program
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The thermal and hydrolytic degradation of electrospun gelatin membranes cross-linked with glutaraldehyde in vapor phase has been studied. In vitro degradation of gelatin membranes was evaluated in phosphate buffer saline solution at 37 ºC. After 15 days under these conditions, a weight loss of 68 % was observed, attributed to solvation and depolymerization of the main polymeric chains. Thermal degradation kinetics of the gelatin raw material and as-spun electrospun membranes showed that the electrospinning processing conditions do not influence polymer degradation. However, for cross-linked samples a decrease in the activation energy was observed, associated with the effect of glutaraldehyde cross-linking reaction in the inter- and intra-molecular hydrogen bonds of the protein. It is also shown that the electrospinning process does not affect the formation of the helical structure of gelatin chains.
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Given the heterogeneity of effect sizes within the population for any treatment, identifying moderators of outcomes is critical [1]. In weight management programs, there is a high individual variability in terms of weight loss and an overall modest success [2]. Some people will adopt and sustain attitudes and behaviors associated with weight loss, while others won’t [3]. To predict weight loss outcome just from the subject’s baseline information would be very valuable [4,5]. It would allow to: - Better match between treatments and individuals - Identify the participants with less probability of success (or potential dropouts) in a given treatment and direct them to alternative therapies - Target limited resources to those most likely to succeed - Increase cost-effectiveness and improve success rates of the programs Few studies have been dedicated to describe baseline predictors of treatment success. The Healthy Weight for Life (USA) study is one of the few. Its findings are now being cross-validated in Portuguese samples. This paper describes these cross-cultural comparisons.
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Liver transplantation is used as a only therapy so far, that stop the progression of some aspects of familial amyloidotic polyneuropathy disease (FAP) an autossomic neurodegenerative disease. FAP often results in severe functional limitations. Transplantation requires aggressive medication which impairs bone and muscle metabolism. Malnutrition plus weight loss is already one feature of FAP patients. All this may produce negative consequences on body composition. The effect of exercise training in FAP patients after a liver transplant (FAPTX) is currently unknown. The purpose of this study is to evaluate the effects of a six months exercise training program on body composition in FAPTX patients.
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Sendo, o exercício físico uma parte importante na Reabilitação de pacientes com patologia cardíaca, o presente estudo tem por Objectivo: verificar se um programa de exercícios aeróbios, mesmo quando associadas a patologias crónicas poderão ter efeito nas variáveis da capacidade funcional, ansiedade e depressão e qualidade de vida. Tipo de estudo: série de estudos de caso prospectivo. Métodos: O programa de exercício realizou-se em 8 semanas tendo cada um dos doentes cardíacos sido avaliados no início do plano e no fim das 8 semanas sobre os seguintes aspectos: a composição corporal (massa magra, massa gorda, Taxa metabólica basal e água), o teste dos 6 minutos de marcha, em termos de ansiedade /depressão e percepção do estados de saúde. Resultados: Em relação à composição corporal, destacase a perda de peso no caso clínico 4 com uma variação de -4.54%; aumento de massa magra de 46.6% e uma diminuição de massa gorda de -41 .1% no caso clínico 2 e um aumento de 4,78% da taxa de metabolismo basal no caso clínico 1 . Na capacidade funcional de exercício houve uma variação média positiva de 16,8% na distância percorrida; verifica-se também um aumento gradual de tempo de exercício ao longo das 8 semanas de tratamento. Por último, uma variação média negativa nos níveis de ansiedade de -28,5% e depressão de -40%; um aumento de 30% na percepção subjectiva do estado de saúde nos 4 casos clínicos deste estudo. Conclusão: O programa de exercícios teve efeitos positivos nos 4 casos clínicos estudados. No entanto, pelas características individuais de cada caso, os seus efeitos tiveram impacto diferente em cada caso, devendo por isso, ser prescrito exercício de forma individualizada.
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Solid polymer electrolytes (SPEs) were obtained from chitosan plasticized with glycerol and contained europium (III) trifluoromethanesulfonate salt. The transparent samples were characterized by thermal analysis (DSC and TGA), impedance spectroscopy and electron paramagnetic resonance (EPR). The sample with 55.34 wt.% of europium triflate showed the best ionic conductivity of 1.52 × 10−6 and 7.66 × 10−5 S cm−1 at 30°C and 80°C, respectively. The thermal analysis revealed that the degradation started at around 130–145°C and the weight loss ranged from 20 to 40%. The DSC of the samples showed no Tg, but only a large endothermic peak that was centered between 160 and 200 °C. The EPR analysis showed a broadening of the EPR resonance lines with increasing europium contents in the chitosan membranes due to the magnetic dipole–dipole coupling and spin–spin exchange between the Eu2+ ions. Moreover, the electrolytes based on chitosan and europium triflate presented good flexibility, homogeneity, and transparency.
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OBJECTIVE: To compare the heart weight and the heart weight/body weight coefficient of adults with and without chronic malnutrition. METHODS: In an initial case series of 210 autopsies performed in adults, we recorded body and heart weights and calculated the heart weight/body weight coefficients (HW/BW x 100). The exclusion criteria were as follows: positive serology for Chagas' disease, edema, obesity, heart diseases, hepatopathies, nephropathies, and systemic arterial hypertension. Malnutrition was characterized as a body mass index <18.5kg/m². Differences with p<0.05 were considered significant. RESULTS: Individuals in the malnourished (n=15) and control (n=21) groups were statistically different, respectively, in regard to body mass index (15.9±1.7 versus 21.3±2.5kg/m²), heart weight (267.3±59.8 versus 329.1±50.4g), and the HW/BW coefficient (0.64±0.12 versus 0.57±0.09%). A positive and significant correlation was observed between heart weight and body mass index (r=0.52), and between heart weight and body weight (r=0.65). CONCLUSION: Malnourished individuals have lighter hearts and a greater HW/BW coefficient than non-malnourished individuals do. These findings indicate a possible preservation of the myocardium in relation to the intensity of weight loss associated with the probable relative increase in cardiac connective tissue and heart blood vessels.
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This poster encourages people to become more physically active by promoting walking as a means of losing weight.
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Weight loss of 10%, increase PA and consumption of fruit and veg and reduce co morbidities
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The aims of this intervention are: - To observe a weekly weight loss of 0.5-1 kg, over the 12 weeks, in those completing the weight management intervention - To sustain behavioural changes achieved at 12 weeks for the long term, at 6, 12 and 24 month after course completion - To increase average daily consumption of fruit and vegetables by 20 percent, from baseline, after 12 weeks of intervention - To decrease consumption of foods high in fat and sugar, by 20 percent, from baseline, after 12 weeks of intervention - To increase number of minutes individuals spend doing moderate physical activity each week by at least 60 minutes from baseline, after 12 weeks of intervention - To reduce number of minutes individuals spend sedentary each week by at least 60 minutes from baseline, after 12 weeks of intervention
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This service Aims: To provide a multi-component weight management service that supports sustainable behaviour change and weight loss in adults 16 years and over with a BMI 28. To enable patients to develop the necessary personal attributes for their own long term weight management and to understand the impact of their weight on their health and co-morbidities. Objectives: To provide an evidence based, multi-component tier 2 weight management service that improves patients knowledge and skills for effective and sustainable weight loss helps patients identify their own facilitators for positive behaviour change and to address underlying barriers to long-term behaviour changeincreases patients self-efficacy and confidence in their ability to address their weight To be an integral part of the tiered approach to weight management services for the population of Stockton. To ensure equitable service provision across Stockton-on-Tees. To provide intensive group based service, one-to-one support and maintenance support. To support the service user to develop and review a personalised goal setting plan phase 2 and at discharge after phase 2. To ensure a smooth transition from the service (tier2) to tier 1 services to ensure continuity of care for service users.Recruit referrals using a variety of and appropriate methods. To establish a single point of contact for referrals into the service.Continually promote the service across a range of mediums and liaise and work in partnership with key interdependencies (refer to 2.4) To establish a robust database and data collection system in line with information governance. To ensure the access criteria, care pathway and referral process is clearly understood by all health care professionals and those who may refer into the service. To establish close links with, and signpost and/or enable service users to access suitable services where patient needs indicate this. This may include access to Tees Time to Talk (IAPT) for psychological therapies; Specialist Weight Management Service; physical activity programmes; Tier 1 services; and primary care. To provide the necessary venues, equipment and assets needed to deliver the programme, ensuring due regard is given to the quality and safety of all materials used. To collect and provide data in quarterly reports to the Commissioner to allow for continued monitoring and evaluation of the service in line with the Standard Evaluation Framework (available at www.noo.org.uk/core/SEF) and as specified by the Commissioner.
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To support the achivement of 5 and 10% weight loss
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The aims of this intervention are 1) To be a targeted intervention: BMI >30 or > 28 for patients with comorbidities provided with support to lose weight. 2) To help patients achieve weight loss (with an initial 5% goal over the 12 week intervention period) 3) To establish primary care weight management services in thecounty 4) To train the primary care workforce in weight managementintervention 5)To help patients make sustainable lifestyle changes in terms ofhealthy eating and physical activity 6)To ensure an appropriate exit strategy was in place
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The aim of this intervention is to: i) help primary care patients with a BMI of 30 or above or 28 with co-morbidities achieve a weight loss of 5 per cent or more using a computerised lifestyle protocol within a 12 week period ii) establish primary care weight management services in the county and train primary care workforce in weight management intervention iii)help patients make sustainable lifestyle changes in terms of healthy eating and physical activity
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Tier 3 weight management service for clients with BMI>40, or >30 plus co-morbidities. The service aims for 5% weight loss in 6 months, and to increase fruit and vegetable intake and activity levels. It also aims to set up hub and spoke model with 3 satellite sites to deliver local services in a rural area, and to develop a North Norfolk Obesity Pathway and to make only appropriate bariatric surgery referrals as per East of England guidelines.
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The aims of this intervention are: To observe a weekly weight loss of 0.51 kg, over the 8 weeks, in those completing the weight management intervention To sustain behavioural changes achieved at 8 weeks for the long term, at 6, 12 and 24 month after course completion Objectives: To increase average daily consumption of fruit and vegetables by 15 percent, from baseline, after 8 weeks of intervention To decrease consumption of foods high in fat and sugar, by 15 percent, from baseline, after 8 weeks of intervention To increase number of minutes individuals spend doing moderate physical activity each week by at least 30 minutes from baseline, after 8 weeks of intervention To reduce number of minutes individuals spend sedentary each week by at least 30 minutes from baseline, after 8 weeks of intervention