MASS, CENTER OF MASS, AND MOMENT OF INERTIA ESTIMATES FOR INFANT LIMB SEGMENTS

被引:76
作者
SCHNEIDER, K
ZERNICKE, RF
机构
[1] UNIV CALGARY,DEPT SURG,CALGARY T2N 4N1,ALBERTA,CANADA
[2] UNIV CALIF LOS ANGELES,DEPT KINESIOL,LOS ANGELES,CA 90024
关键词
D O I
10.1016/0021-9290(92)90271-2
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
To quantify limb dynamics, accurate estimates are needed of anthropometric inertia parameters (mass, center-of-mass location, and moments of inertia). These estimates, however, are not available for human infants; therefore, the movement dynamics of infants have not been studied extensively, Here, regression equations for the masses, center-of-mass locations, and transverse moments of inertia of upper and lower limb segments (upper arm, forearm, and hand; thigh, leg, and foot) of 0.04 to 1.50 yr old infants are provided. A mathematical model of the human body was used to determine the anthropometric inertia parameters for upper limbs in 44 infants and for lower limbs in 70 infants. Stepwise linear regressions were used to fit the distributions of the anthropometric inertia parameters. The regression equations accounted for significant amounts of the variance (64-98%), and the R2-values compared favorably when our equations were cross-validated. Consequently, these regression equations can provide, for infants of similar ages, reasonable estimates of upper and lower limb anthropometric inertia parameters, suitable for equations of motion in the analysis of limb dynamics in human infants.
引用
收藏
页码:145 / 148
页数:4
相关论文
共 50 条
[31]   Added mass moment of inertia of centrifugal dredge pump impellers [J].
van Wijk, Jort M. .
PROCEEDINGS OF THE INSTITUTION OF CIVIL ENGINEERS-MARITIME ENGINEERING, 2014, 167 (03) :135-143
[32]   Computational analysis of low mass moment of inertia flying wing [J].
Khushbash, Sara ;
Javed, Ali ;
Shams, Taimur Ali .
PROCEEDINGS OF 2021 INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGIES (IBCAST), 2021, :204-211
[33]   An Electromagnetic Vibration Energy Harvester with a Tunable Mass Moment of Inertia [J].
Ibrahim, Peter ;
Arafa, Mustafa ;
Anis, Yasser .
SENSORS, 2021, 21 (16)
[34]   CONFUSION-PROOF SCHEME FOR CALCULATING MASS MOMENT OF INERTIA [J].
PENNISI, JM .
MACHINE DESIGN, 1968, 40 (01) :125-&
[35]   Negative-Inertia Converters: Devices Manifesting Negative Mass and Negative Moment of Inertia [J].
Loncar, Josip ;
Igrec, Bojan ;
Babic, Dubravko .
SYMMETRY-BASEL, 2022, 14 (03)
[36]   QUANTIFICATION OF MASS AND CENTER-OF-MASS OF HEALTHY AND AMPUTATED SEGMENTS AS WELL AS FULL-BODY CENTER-OF-MASS OF AMPUTEES [J].
Xu, Qinghua ;
Wang, Xiangdong ;
Liu, Jingxin ;
Shan, Gongbing .
JOURNAL OF MECHANICS IN MEDICINE AND BIOLOGY, 2020, 20 (07)
[37]   NEW METHOD FOR SIMULTANEOUS MEASUREMENT OF MOMENT OF INERTIA, DAMPING COEFFICIENT AND LOCATION OF CENTER OF MASS OF A BODY SEGMENT INSITU [J].
HATZE, H .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY AND OCCUPATIONAL PHYSIOLOGY, 1975, 34 (04) :217-226
[38]   The perception of limb orientation depends on the center of mass [J].
van de Langenberg, Rolf ;
Kingma, Idsart ;
Beek, Peter J. .
JOURNAL OF EXPERIMENTAL PSYCHOLOGY-HUMAN PERCEPTION AND PERFORMANCE, 2008, 34 (03) :624-639
[39]   Manipulations of leg mass and moment of inertia: Effects on energy cost of walking [J].
Royer, TD ;
Martin, PE .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2005, 37 (04) :649-656
[40]   USING TORSIONAL-PENDULUM PRINCIPLE TO MEASURE - MASS MOMENT OF INERTIA [J].
ANGEL, HR .
MACHINE DESIGN, 1968, 40 (12) :200-&