345
Views
9
CrossRef citations to date
0
Altmetric
PHYSIOLOGY AND NUTRITION

Assessment of subcutaneous adipose tissue using ultrasound in highly trained junior rowers

, , , , &

References

  • Ackland, T., Lohman, T., Sundgot-Borgen, J., Maughan, R., Meyer, N., Stewart, A., & Müller, W. (2012). Current status of body composition assessment in sport: Review and position statement on behalf of the Ad Hoc Research Working Group on Body Composition Health and Performance, under the auspices of the I.O.C. Medical Commission. Sports Medicine, 42(3), 227–249. doi:10.2165/11597140-000000000-00000
  • Chan, V., & Perlas, A. (2011). Ultrasound Imaging. In S. Narouze (Ed.), Atlas of ultrasound-guided procedures in interventional pain management (pp. 13–20). New York, NY: Springer. doi:10.1007/978-1-4419-1681-5
  • Cosgrove, M., Wilson, J., Watt, D., & Grant, S. (1999). The relationship between selected physiological variables of rowers and rowing performance as determined by a 2000 m ergometer test. Journal of Sports Sciences, 17(11), 845–552. doi:10.1080/026404199365407
  • Hume, P., & Marfell-Jones, M. (2008). The importance of accurate site location for skinfold measurement. Journal of Sports Sciences, 26(12), 1333–40. doi:10.1080/02640410802165707
  • Ingham, S., Whyte, G., Jones, K., & Nevill, A. (2002). Determinants of 2,000 m rowing ergometer performance in elite rowers. European Journal of Applied Physiology, 88(3), 243–246. doi:10.1007/s00421-002-0699-9
  • Jackson, A., & Pollock, M. (1978). Generalized equations for predicting body density of men. British Journal of Nutrition, 40, 497–504. doi:10.1079/BJN19780152
  • Jackson, A., & Pollock, M. (1985). Practical assessment of body composition. The Physician and Sportsmedicine, 13(5), 76–90. doi:10.1080/00913847.1985.11708790
  • Jackson, A., Pollock, M., & Ward, A. (1980). Generalized equations for predicting body density of women. Medicine and Science in Sports and Exercise, 12, 175–182.
  • Kendall, K. L., Fukuda, D. H., Hyde, P. N., Smith-Ryan, A. E., Moon, J. R., & Stout, J. R. (2016). Estimating fat-free mass in elite-level male rowers: A four-compartment model validation of laboratory and field methods. Journal of Sports Sciences, 1–10. doi:10.1080/02640414.2016.1183802
  • Kopinski, S., Engel, T., Cassel, M., Mayer, F., Carlsohn, A., & Sciences, H. (2015). Ultrasound applied to subcutaneous fat tissue measurements in international elite canoeists. International Journal of Sports Medicine, 36, 1134–1141. doi:10.1055/s-0035-1555857
  • Krämer, H., & Ulmer, H. (1981). Two seconds standardization of the Harpenden caliper. European Journal of Applied Physiology, 46, 103–104. doi: 10.1007/BF00422182
  • Leahy, S., Toomey, C., McCreesh, K., O’Neill, C., & Jakeman, P. (2012). Ultrasound measurement of subcutaneous adipose tissue thickness accurately predicts total and segmental body fat of young adults. Ultrasound in Medicine and Biology, 38(1), 28–34. doi:10.1016/j.ultrasmedbio.2011.10.011
  • Marfell-Jones, M., Nevill, A., & Stewart, A. D. (2012). Anthropometric surrogates for fatness and health. In A. D. Stewart & L. Sutton (Eds), Body composition in sport, exercise and health (pp. 124–146). Abingdon: Routledge.
  • Meyer, N. L., Sundgot-Borgen, J., Lohman, T. G., Ackland, T. R., Stewart, A. D., Maughan, R. J., … Müller, W. (2013). Body composition for health and performance: A survey of body composition assessment practice carried out by the Ad Hoc Research Working Group on Body Composition, Health and Performance under the auspices of the IOC Medical Commission. British Journal of Sports Medicine, 47, 1044–1053. doi:10.1136/bjsports-2013-092561
  • Mulholland, Y., & Rolland, C. (2012). Portable methods of body composition analysis. In A. D. Stewart & L. Sutton (Eds.), Body composition in sport, exercise and health (pp. 42–63). Abingdon: Routledge.
  • Müller, W., Horn, M., Fürhapter-Rieger, A., Kainz, P., Kröpfl, J. M., Ackland, T. R., … Ahammer, H. (2013). Body composition in sport: Interobserver reliability of a novel ultrasound measure of subcutaneous fat tissue. British Journal of Sports Medicine, 47, 1036–1043. doi:10.1136/bjsports-2013-092233
  • Müller, W., Horn, M., Fürhapter-Rieger, A., Kainz, P., Kröpfl, J. M., Maughan, R. J., & Ahammer, H. (2013). Body composition in sport: A comparison of a novel ultrasound imaging technique to measure subcutaneous fat tissue compared with skinfold measurement. British Journal of Sports Medicine, 47, 1028–1035. doi:10.1136/bjsports-2013-092232
  • Müller, W., Lohman, T. G., Stewart, A. D., Maughan, R. J., Meyer, N. L., Sardinha, L. B., … Ackland, T. R. (2016). Subcutaneous fat patterning in athletes: Selection of appropriate sites and standardisation of a novel ultrasound measurement technique: Ad Hoc Working Group on Body Composition, Health and Performance, under the auspices of the IOC Medical Commission. British Journal of Sports Medicine, 50(1), 45–54. doi:10.1136/bjsports-2015-095641
  • Müller, W., & Maughan, R. J. (2013). The need for a novel approach to measure body composition: Is ultrasound an answer? British Journal of Sports Medicine, 47(16), 1001–1002. doi:10.1136/bjsports-2013-092882
  • Nevill, A. M., Metsios, G. S., Jackson, A. S., Wang, J., Thornton, J., & Gallagher, D. (2008). Can we use the Jackson and Pollock equations to predict body density/fat of obese individuals in the 21st century? International Journal of Body Composition Research, 6(3), 114–121. doi:10.1016/j.biotechadv.2011.08.021.Secreted
  • O’Neill, D., Cronin, O., O’Neill, S., Woods, T., Keohane, D., Molloy, M., & Falvey, E. (2016). Application of a sub-set of skinfold sites for ultrasound measurement of subcutaenous adiposity and percentage body fat estimation in athletes. International Journal of Sports Medicine, 37(5), 359–363.doi: 10.1055/s-0035-1565168
  • Selkow, N. M., Pietrosimone, B. G., & Saliba, S. A. (2011). Subcutaneous thigh fat assessment: A comparison of skinfold calipers and ultrasound imaging. Journal of Athletic Training, 46(1), 50–54. doi:10.4085/1062-6050-46.1.50
  • Shen, W., Punyanitya, M., Silva, A. M., Chen, J., Gallagher, D., Sardinha, L. B., … Heymsfield, S. B. (2009). Sexual dimorphism of adipose tissue distribution across the lifespan: A cross-sectional whole-body magnetic resonance imaging study. Nutrition & Metabolism, 6(17), 1–9. doi:10.1186/1743-7075-6-17
  • Slater, G., Rice, A., Mujika, I., Hahn, A., Sharpe, K., & Jenkins, D. (2005). Physique traits of lightweight rowers and their relationship to competitive success. British Journal of Sports Medicine, 39(10), 736–741. doi:10.1136/bjsm.2004.015990
  • Stewart, A., Marfell-Jones, M., Olds, T., & De Ridder, J. H. (2011). International Standards for Anthropometric Assessment. International Society for the Advancement of Kinanthropometry.
  • Störchle, P., Müller, W., Sengeis, M., Ahammer, H., Fürhapter-Rieger, A., Bachl, N., … Wallner-Liebmann, S. (2016). Standardized ultrasound measurement of subcutaneous fat patterning: High reliability and accuracy in groups ranging from lean to obese. Ultrasound in Medicine & Biology. Advance online publication. doi:10.1016/j.ultrasmedbio.2016.09.014
  • Sundgot-Borgen, J., Meyer, N. L., Lohman, T. G., Ackland, T. R., Maughan, R. J., Stewart, A. D., & Müller, W. (2013). How to minimise the health risks to athletes who compete in weight-sensitive sports review and position statement on behalf of the Ad Hoc Research Working Hroup on Body Composition, Health and Performance, under the auspices of the IOC Medical Commission. British Journal of Sports Medicine, 47, 1012–1022. doi:10.1136/bjsports-2013-092966
  • Sutton, L., & Stewart, A. D. (2012). Body composition professional practice and an interdisciplinary toolkit. In A. D. Stewart & L. Sutton (Eds.), Body composition in Sport, Exercise and Health (pp. 187–208). Abingdon: Routledge.
  • Toomey, C. M., Cremona, A., Hughes, K., Norton, C., & Jakeman, P. (2015). A review of body composition measurement in the assessment of health. Topics in Clinical Nutrition, 30(1), 16–32. doi:10.1097/TIN.0000000000000017
  • Toomey, C., McCreesh, K., Leahy, S., & Jakeman, P. (2011). Technical considerations for accurate measurement of subcutaneous adipose tissue thickness using B-mode ultrasound. Ultrasound, 19, 91–96. doi: 10.1258/ult.2011.010057
  • Wagner, D. R. (2013). Ultrasound as a tool to assess body fat. Journal of Obesity, Article ID 280713, 9 pages. doi:10.1155/2013/280713

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.