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Sökning: WFRF:(Johansson C) > Gymnastik- och idrottshögskolan

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1.
  • Enqvist, Jonas K, et al. (författare)
  • Energy turnover during 24 hours and 6 days of adventure racing.
  • 2010
  • Ingår i: Journal of Sports Sciences. - : Routledge. - 0264-0414 .- 1466-447X. ; 28:9, s. 947-955
  • Tidskriftsartikel (refereegranskat)abstract
    • Energy turnover was assessed in two conditions of mixed ultra-endurance exercise. In Study 1, energy expenditure and intake were measured in nine males in a laboratory over 24 h. In Study 2, energy expenditure was assessed in six males during an 800-km Adventure race (mean race time 152.5 h). Individual correlations between heart rate and oxygen uptake ([Vdot]O(2)) were established during pre-tests when kayaking, cycling, and running. During exercise, energy expenditure was estimated from continuous heart rate recordings. Heart rate and [Vdot]O(2) were measured regularly during fixed cycling work rates to correct energy expenditure for drift in oxygen pulse. Mean energy expenditure was 18,050 +/- 2,390 kcal (750 +/- 100 kcal . h(-1)) and 80,000 +/- 18,000 kcal (500 +/- 100 kcal . h(-1)) in Study 1 and Study 2 respectively, which is higher than previously reported. Energy intake in Study 1 was 8,450 +/- 1,160 kcal, resulting in an energy deficit of 9,590 +/- 770 kcal. Body mass decreased in Study 1 (-2.3 +/- 0.8 kg) but was unchanged in Study 2. Fat mass decreased in Study 2 (-2.3 +/- 1.5 kg). In Study 1, muscle glycogen content decreased by only 60%. Adventure racing requires a high energy expenditure, with large inter-individual variation. A large energy deficit is caused by inadequate energy intake, possibly due to suppressed appetite and gastrointestinal problems. The oxygen pulse, comparing start to 12 h of exercise and beyond, increased by 10% and 5% in Study 1 and Study 2 respectively. Hence, estimations of energy expenditure from heart rate recordings should be corrected according to this drift.
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2.
  • Johansson, K., et al. (författare)
  • Risk of symptomatic gallstones and cholecystectomy after a very-low-calorie diet or low-calorie diet in a commercial weight loss program : 1-year matched cohort study
  • 2014
  • Ingår i: International Journal of Obesity. - : Nature Publishing Group. - 0307-0565 .- 1476-5497. ; 38:2, s. 279-284
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Concern exists regarding gallstones as an adverse event of very-low-calorie diets (VLCDs; <800 kcal per day). OBJECTIVE: To assess the risk of symptomatic gallstones requiring hospital care and/or cholecystectomy in a commercial weight loss program using VLCD or low-calorie diet (LCD). DESIGN: A 1-year matched cohort study of consecutively enrolled adults in a commercial weight loss program conducted at 28 Swedish centers between 2006 and 2009. A 3-month weight loss phase of VLCD (500 kcal per day) or LCD (1200-1500 kcal per day) was followed by a 9-month weight maintenance phase. Matching (1: 1) was performed by age, sex, body mass index, waist circumference and gallstone history (n = 3320: 3320). Gallstone and cholecystectomy data were retrieved from the Swedish National Patient Register. RESULTS: One-year weight loss was greater in the VLCD than in the LCD group (-11.1 versus -8.1 kg; adjusted difference, -2.8 kg, 95% CI -3.1 to -2.4; P<0.001). During 6361 person-years, 48 and 14 gallstones requiring hospital care occurred in the VLCD and LCD groups, respectively, (152 versus 44/10 000 person-years; hazard ratio, 3.4, 95% CI 1.8-6.3; P<0.001; number-needed-to-harm, 92, 95% CI 63-168; P<0.001). Of the 62 gallstone events, 38 (61%) resulted in cholecystectomy (29 versus 9; hazard ratio, 3.2, 95% CI 1.5-6.8; P = 0.003; number-needed-to-harm, 151, 95% CI 94-377; P<0.001). Adjusting for 3-month weight loss attenuated the hazard ratios, but the risk remained higher with VLCD than LCD for gallstones (2.5, 95% CI 1.3-5.1; P = 0.009) and became borderline for cholecystectomy (2.2, 95% CI 0.9-5.2; P = 0.08). CONCLUSION: The risk of symptomatic gallstones requiring hospitalization or cholecystectomy, albeit low, was 3-fold greater with VLCD than LCD during the 1-year commercial weight loss program.
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3.
  • Mattsson, C. Mikael, et al. (författare)
  • Reversed drift in heart rate but increased oxygen uptake at fixed work rate during 24 h ultra-endurance exercise.
  • 2010
  • Ingår i: Scandinavian Journal of Medicine and Science in Sports. - : Wiley. - 0905-7188 .- 1600-0838. ; 20:2, s. 298-304
  • Tidskriftsartikel (refereegranskat)abstract
    • In this paper we report a reversed drift in heart rate (HR) but increased oxygen uptake (VO(2)) during ultra-endurance exercise. Nine well-trained male athletes performed 24-h exercise in a controlled laboratory setting, with alternating blocks of kayaking, running and cycling. Each block included 110 min of exercise and 10 min of rest, with an average work intensity of approximately 55% of respective VO(2peak). Blood samples were taken and HR and VO(2) measured every 6th hour during steady-state cycling at fixed work rate. As assumed HR was increased at 6 h by 15 +/- 6 beats/min compared with initial level (0 h). Thereafter the drift did not progress continuously, but instead unexpectedly returned toward initial values, although the plasma levels of catecholamines increased continuously during exercise. VO(2) was increased by 0.22 +/- 0.15 L/min (10%) at 6 h and 0.37 +/- 0.18 L/min (17%) at 12 h compared with 0 h, and thereafter remained stable. This implies an increased oxygen pulse (VO(2)/HR) by approximately 10% at the last half of the 24-h exercise compared with 0 h. Consequently, sole use of HR would give inaccurate estimates of exercise intensity and energy expenditure during endurance exercise lasting more than 6 h, and different patterns of cardiovascular drift need to be taken into account.
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4.
  • Mattsson, C. Mikael, et al. (författare)
  • Träna för en svensk klassiker och andra långlopp
  • 2015
  • Bok (populärvet., debatt m.m.)abstract
    • Förbered dig rätt inför långlopp. Att under ett år genomföra Vätternrundan, Vansbrosimningen, Lidingöloppet och Engelbrektsloppet/Vasaloppet, är ett av de mest populära sätten att skörda frukten av sin träning och nå sitt mål. För att lyckas krävs goda förberedelser, och ju bättre förberedd du är desto mer positiv blir upplevelsen. Innehållet i denna bok är en fördjupning av samlad kunskap och erfarenhet inom simning, cykel, löpning, längdskidåkning och triathlon samt hur man på bästa sätt kombinerar de olika idrotterna – deras olika moment – i träning och tävling. Här hittar du också kapitel om träningslära, idrottsnutrition, mental träning, förebyggande av idrottsskador och träningsplanering för att öka förståelsen av vad som påverkar en idrottsprestation.Extramaterial på webbplatsen: För att kunna erbjuda mer än vad som ryms i en bok, har vi också skapat en webbplats. Med hjälp av koden som följer med i boken kan du registrera dig för att ta del av fördjupande texter, träningsprogram och kostupplägg, övningar och intressanta länkar.(Text från förlaget)
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5.
  • Mattsson, C. Mikael, et al. (författare)
  • Unexpected cardiovascular response during ultra-endurance exercise.
  • 2008
  • Ingår i: 13th Annual Congress of the European College of Sport Science (ECSS), Estoril, Lissabon, Portugal.. - 9789727351565 ; , s. 142-
  • Konferensbidrag (övrigt vetenskapligt/konstnärligt)abstract
    • During prolonged exercise at fixed work rate heart rate (HR) increases slowly with concomitant decrease in stroke volume (SV) in order to maintain cardiac output. Simultaneously, an increased oxygen uptake (VO2) occurs. In this paper we report an unexpected and previously not observed cardiovascular response to ultra-endurance exercise. Nine well-trained male athletes performed 24-h exercise in a controlled laboratory setting, with altering blocks of kayaking, running and cycling. Each block consisted of 110 min of exercise and 10 min of rest. Measurements (HR, VO2 and blood samples) were conducted during cycling at fixed work rate every 6th hour. The average work intensity was approximately 55 % of respective VO2peak. HR was increased at 6 h with 15 beats/min (13 %) compared to pre-exercise (Pre-Ex), but thereafter unexpectedly returned towards initial values. VO2 on the other hand was increased with 0.22 l/min (10 %) at 6 h and 0.37 l/min (17 %) at 12 h compared to Pre-Ex, and thereafter remained stable. This implies an increased oxygen pulse (VO2/HR) with approximately 10 % compared to Pre-Ex at the later half of the exercise. The cardiovascular drift did not progress continuously, but instead changed drastically when duration exceeded 6 hours. The changes in HR and VO2 might have different and complex explanations. HR drift might be explained mainly by central circulatory adaptation (e.g. desensitisation of cardiac adrenergic receptors) whereas drift in VO2 may depend upon peripheral changes (e.g. decreased mitochondrial efficiency). Consequently, using solely HR for determining exercise intensity and energy expenditure becomes invalid during ultra-endurance exercise, if the cardiovascular drift is not measured and taken into account.  
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