4.1 Article

Quantifying Habitual Levels of Physical Activity According to Impact in Older People: Accelerometry Protocol for the VIBE Study

期刊

JOURNAL OF AGING AND PHYSICAL ACTIVITY
卷 24, 期 2, 页码 290-295

出版社

HUMAN KINETICS PUBL INC
DOI: 10.1123/japa.2015-0066

关键词

peak g; accelerometry; VIBE

资金

  1. Medical Research Council (MRC) of Great Britain
  2. Arthritis Research UK
  3. International Osteoporosis Foundation
  4. Medical Research Council grant [MR/K024973/1]
  5. MRC [MC_U147585819, MR/K024973/1, MC_UP_A620_1015, MC_UU_12011/2, MC_U147585827] Funding Source: UKRI
  6. Medical Research Council [MR/K024973/1, MC_U147585827, MC_U147585824, MC_U147585819, U1475000001, MC_UU_12011/1, MC_UP_A620_1014] Funding Source: researchfish
  7. National Institute for Health Research [NF-SI-0513-10085, CL-2014-26-001, NF-SI-0508-10082, CL-2006-18-006] Funding Source: researchfish

向作者/读者索取更多资源

Physical activity (PA) may need to produce high impacts to be osteogenic. The aim of this study was to identify threshold(s) for defining high impact PA for future analyses in the VIBE (Vertical Impact and Bone in the Elderly) study, based on home recordings with triaxial accelerometers. Recordings were obtained from 19 Master Athlete Cohort (MAC; mean 67.6 years) and 15 Hertfordshire Cohort Study (HCS; mean 77.7 years) participants. Data cleaning protocols were developed to exclude artifacts. Accelerations expressed in g units were categorized into three bands selected from the distribution of positive Y-axis peak accelerations. Data were available for 6.6 and 4.4 days from MAC and HCS participants respectively, with approximately 14 hr recording daily. Three-fold more 0.5-1.0g impacts were observed in MAC versus HCS, 20-fold more 1.0-1.5g impacts, and 140-fold more impacts >= 1.5g. Our analysis protocol successfully distinguishes PA levels in active and sedentary older individuals.

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