Validity of Measurement for Trailing Limb Angle and Propulsion Force during Gait Using a Magnetic Inertial Measurement Unit

被引:16
作者
Miyazaki, Takasuke [1 ,2 ]
Kawada, Masayuki [3 ]
Nakai, Yuki [1 ]
Kiyama, Ryoji [3 ]
Yone, Kazunori [3 ]
机构
[1] Kagoshima Univ, Grad Sch Hlth Sci, 8-35-1 Sakuragaoka, Kagoshima, Kagoshima 8908544, Japan
[2] Tarumizu Cent Hosp, Tarumizu Municipal Med Ctr, Dept Rehabil, 1-140 Kinkocho, Tarumizu, Kagoshima 8912124, Japan
[3] Kagoshima Univ, Fac Med, Sch Hlth Sci, Course Phys Therapy, 8-35-1 Sakuragaoka, Kagoshima, Kagoshima 8908544, Japan
关键词
GROUND REACTION FORCES; PARETIC PROPULSION; WALKING; SPEED; ANKLE; INDIVIDUALS; ADAPTATION; KINEMATICS; MOBILITY; BALANCE;
D O I
10.1155/2019/8123467
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Propulsion force and trailing limb angle (TLA) are meaningful indicators for evaluating quality of gait. This study examined the validity of measurement for TLA and propulsion force during various gait conditions using magnetic inertial measurement units (IMU), based on measurements using a three-dimensional motion analysis system and a force platform. Eighteen healthy males (mean age 25.2 +/- 3.2 years, body height 1.70 +/- 0.06 m) walked with and without trunk fluctuation at preferred, slow, and fast velocities. IMU were fixed on the thorax, lumbar spine, and right thigh and shank. IMU calculated the acceleration and tilt angles in a global coordinate system. TLA, consisting of a line connecting the hip joint with the ankle joint, and the laboratory's vertical axis at late stance in the sagittal plane, was calculated from thigh and shank segment angles obtained by IMU, and coordinate data from the motion analysis system. Propulsion force was estimated by the increment of velocity calculated from anterior acceleration measured by IMU fixed on the thorax and lumbar spine, and normalized impulse of the anterior component of ground reaction force (AGRF) during late stance. Similarity of TLA measured by IMU and the motion analysis system was tested by the coefficient of multiple correlation (CMC), intraclass correlation coefficient (ICC), and root mean square (RMS) of measurement error. Relationships between normalized impulse of AGRF and increments of velocity, as measured by IMU, were tested using correlation analysis. CMC of TLA was 0.956-0.959. ICC between peak TLAs was 0.831-0.876 (p<0.001), and RMS of error was 1.42 degrees-1.92 degrees. Velocity increment calculated from acceleration on the lumbar region showed strong correlations with normalized impulse of AGRF (r=0.755-0.892, p<0.001). These results indicated a high validity of estimation of TLA and propulsion force by IMU during various gait conditions; these methods would be useful for best clinical practice.
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页数:8
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共 48 条
  • [1] Paretic Propulsion and Trailing Limb Angle Are Key Determinants of Long-Distance Walking Function After Stroke
    Awad, Louis N.
    Binder-Macleod, Stuart A.
    Pohlig, Ryan T.
    Reisman, Darcy S.
    [J]. NEUROREHABILITATION AND NEURAL REPAIR, 2015, 29 (06) : 499 - 508
  • [2] Relationship between step length asymmetry and walking performance in subjects with chronic hemiparesis
    Balasubramanian, Chitralakshmi K.
    Bowden, Mark G.
    Neptune, Richard R.
    Kautz, Steven A.
    [J]. ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2007, 88 (01): : 43 - 49
  • [3] Correlates of life space in a volunteer cohort of older adults
    Barnes, Lisa L.
    Wilson, Robert S.
    Bienias, Julia L.
    de Leon, Carlos F. Mendes
    Kim, Hye-Jin Nicole
    Buchman, Aron S.
    Bennett, David A.
    [J]. EXPERIMENTAL AGING RESEARCH, 2007, 33 (01) : 77 - 93
  • [4] Anterior-posterior ground reaction forces as a measure of paretic leg contribution in hemiparetic walking
    Bowden, MG
    Balasubramanian, CK
    Neptune, RR
    Kautz, SA
    [J]. STROKE, 2006, 37 (03) : 872 - 876
  • [5] The independent effects of speed and propulsive force on joint power generation in walking
    Browne, Michael G.
    Franz, Jason R.
    [J]. JOURNAL OF BIOMECHANICS, 2017, 55 : 48 - 55
  • [6] Sex differences in whole body gait kinematics at preferred speeds
    Bruening, Dustin A.
    Frimenko, Rebecca E.
    Goodyear, Chuck D.
    Bowden, David R.
    Fullenkamp, Adam M.
    [J]. GAIT & POSTURE, 2015, 41 (02) : 540 - 545
  • [7] Chiu Herng-Chia, 2000, Kaohsiung Journal of Medical Sciences, V16, P285
  • [8] Tests of stepping as indicators of mobility, balance, and fall risk in balance-impaired older adults
    Cho, BL
    Scarpace, D
    Alexander, NB
    [J]. JOURNAL OF THE AMERICAN GERIATRICS SOCIETY, 2004, 52 (07) : 1168 - 1173
  • [9] Evaluation of Validity and Reliability of Inertial Measurement Unit-Based Gait Analysis Systems
    Cho, Young-Shin
    Jang, Seong-Ho
    Cho, Jae-Sung
    Kim, Mi-Jung
    Lee, Hyeok Dong
    Lee, Sung Young
    Moon, Sang-Bok
    [J]. ANNALS OF REHABILITATION MEDICINE-ARM, 2018, 42 (06): : 872 - 883
  • [10] Accuracy and Repeatability of the Gait Analysis by the WalkinSense System
    de Castro, Marcelo P.
    Meucci, Marco
    Soares, Denise P.
    Fonseca, Pedro
    Borgonovo-Santos, Marcio
    Sousa, Filipa
    Machado, Leandro
    Vilas-Boas, Joao Paulo
    [J]. BIOMED RESEARCH INTERNATIONAL, 2014, 2014