Literature DB >> 14663299

Energy expenditure in wheelchair racing and handbiking - a basis for prevention of cardiovascular diseases in those with disabilities.

Thomas Abel1, Michael Kröner, Sandra Rojas Vega, Christiane Peters, Christiane Klose, Petra Platen.   

Abstract

OBJECTIVE: Handbiking and wheelchair racing have gained increased popularity in Germany. This is important because of the inability of wheelchair-dependent people to maintain cardiovascular health and fitness through daily activities. The purpose of this study was to evaluate the energy expenditure (EE; kcal/h) of wheelchair-dependent individuals.
METHODS: Ten wheelchair racers (WR) and 17 handbikers (HB) completed a basal metabolism evaluation, an incremental exercise test until exhaustion and an endurance test. Oxygen uptake and carbon dioxide production ([V(. -)]O(2), [V(. -)]CO(2); ml/min), arterialized capillary blood lactate concentration (LA; mmol/l) and heart rate (HR; bpm) were recorded during each test. EE was calculated by indirect calorimetry.
RESULTS: In the endurance test [V(. -)]O(2), [V(. -)]CO(2), LA, HR and EE at an intensity corresponding to 2 mmol/l lactate were: HB: 1332+/-368 ml/min, 1178+/-303 ml/min, 2.23+/-0.85 mmol/l, 116.8+/-19.1 bpm, 389.6+/-105.4 kcal/h; WR:1175+/-285 ml/min, 1145+/-258 ml/min, 2.65+/-0.36 mmol/l, 142.5+/-28.0 bpm, 341.7+/-84.0 kcal/h. At an intensity corresponding to 4 mmol/l lactate the values were: HB: 1792+/-408 ml/min, 1666+/-326 ml/min, 4.27+/-1.40 mmol/l 146.1+/-22.8 bpm, 530.1+/- 115.4 kcal/h; WR: 1505+/-210 ml/min, 1427+/-188 ml/min, 3.31+/-1.0 mmol/l, 165.3+/-22.7 bpm, 445.5+/-70.8 kcal/h.
CONCLUSION: The results show that EE of HB and WR is high enough to maintain fitness and probably to help to prevent cardiovascular diseases even at a moderate intensity.

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Year:  2003        PMID: 14663299     DOI: 10.1097/01.hjr.0000096542.30533.59

Source DB:  PubMed          Journal:  Eur J Cardiovasc Prev Rehabil        ISSN: 1741-8267


  8 in total

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Authors:  Florentina J Hettinga; Sonja de Groot; Frank van Dijk; Faes Kerkhof; Ferry Woldring; Luc van der Woude
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3.  Development and evaluation of a gyroscope-based wheel rotation monitor for manual wheelchair users.

Authors:  Shivayogi V Hiremath; Dan Ding; Rory A Cooper
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Authors:  Ana Ferri-Caruana; Luis Millán-González; Xavier García-Massó; Soraya Pérez-Nombela; Maite Pellicer-Chenoll; Pilar Serra-Añó
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5.  Comparison of Different Blood Lactate Threshold Concepts for Constant Load Performance Prediction in Spinal Cord Injured Handcyclists.

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6.  Physiological responses during a 25-km time trial in elite wheelchair racing athletes.

Authors:  Thomas Edwards; J P Barfield; Grace M Niemiro; Joseph W Beals; Elizabeth M Broad; Robert W Motl; Michael De Lisio; Nicholas A Burd; Lara A Pilutti
Journal:  Spinal Cord Ser Cases       Date:  2018-08-14

7.  Effect of Three Different Grip Angles on Physiological Parameters During Laboratory Handcycling Test in Able-Bodied Participants.

Authors:  Thomas Abel; Brendan Burkett; Barbara Thees; Stefan Schneider; Christopher D Askew; Heiko K Strüder
Journal:  Front Physiol       Date:  2015-11-23       Impact factor: 4.566

8.  Development and Testing of a Novel Arm Cranking-Powered Watercraft.

Authors:  Thomas Fuglsang; Johnny Padulo; Massimo Spoladore; Michele Dalla Piazza; Luca P Ardigò
Journal:  Front Physiol       Date:  2017-08-29       Impact factor: 4.566

  8 in total

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