A multi-joint model of quiet, upright stance accounts for the "uncontrolled manifold" structure of joint variance

被引:20
作者
Reimann, Hendrik [1 ]
Schoener, Gregor [2 ]
机构
[1] Univ Delaware, Dept Kinesiol & Appl Physiol, Newark, DE 19716 USA
[2] Ruhr Univ, Inst Neural Computat, Bochum, Germany
基金
美国国家科学基金会;
关键词
Posture; Quiet stance; Uncontrolled manifold; Modeling; Neural control; Variance; MULTISENSORY FUSION; INVERTED PENDULUM; LEG JOINTS; ANKLE; STIFFNESS; BALANCE; IDENTIFICATION; INTEGRATION; MOVEMENTS; POSTURE;
D O I
10.1007/s00422-017-0733-y
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The upright body in quiet stance is usually modeled as a single-link inverted pendulum. This agrees with most of the relevant sensory organs being at the far end of the pendulum, i.e., the eyes and the vestibular system in the head. Movement of the body in quiet stance has often been explained in terms of the "ankle strategy," where most movement is generated by the ankle musculature, while more proximal muscle groups are only rarely activated for faster movements or in response to perturbations, for instance, by flexing at the hips in what has been called the "hip strategy." Recent empirical evidence, however, shows that instead of being negligible in quiet stance, the movement in the knee and hip joints is even larger on average than the movement in the ankle joints (J Neurophysiol 97:3024-3035, 2007). Moreover, there is a strong pattern of covariation between movements in the ankle, knee and hip joints in a way that most of the observed movements leave the anterior-posterior position of the whole-body center of mass (CoM) invariant, i.e., only change the configuration of the different body parts around the CoM, instead of moving the body as a whole. It is unknown, however, where this covariation between joint angles during quiet stance originates from. In this paper, we aim to answer this question using a comprehensive model of the biomechanical, muscular and neural dynamics of a quietly standing human. We explore four different possible feedback laws for the control of this multi-link pendulum in upright stance that map sensory data to motor commands. We perform simulation studies to compare the generated inter-joint covariance patterns with experimental data. We find that control laws that actively coordinate muscle activation between the different joints generate correct variance patterns, while control laws that control each joint separately do not. Different specific forms of this coordination are compatible with the data.
引用
收藏
页码:389 / 403
页数:15
相关论文
共 61 条
  • [21] The control of multi-muscle systems: Human jaw and hyoid movements
    Laboissiere, R
    Ostry, DJ
    Feldman, AG
    [J]. BIOLOGICAL CYBERNETICS, 1996, 74 (04) : 373 - 384
  • [22] Human balancing of an inverted pendulum with a compliant linkage: neural control by anticipatory intermittent bias
    Lakie, M
    Caplan, N
    Loram, ID
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 2003, 551 (01): : 357 - 370
  • [23] The Ornstein-Uhlenbeck neuronal model with signal-dependent noise
    Lánsky, P
    Sacerdote, L
    [J]. PHYSICS LETTERS A, 2001, 285 (3-4) : 132 - 140
  • [24] Latash M.L., 1993, Control of human movement
  • [25] Optimal isn't good enough
    Loeb, Gerald E.
    [J]. BIOLOGICAL CYBERNETICS, 2012, 106 (11-12) : 757 - 765
  • [26] Redundancy, Self-Motion, and Motor Control
    Martin, V.
    Scholz, J. P.
    Schoener, G.
    [J]. NEURAL COMPUTATION, 2009, 21 (05) : 1371 - 1414
  • [27] A new interpretation of spontaneous sway measures based on a simple model of human postural control
    Maurer, C
    Peterka, RJ
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 2005, 93 (01) : 189 - 200
  • [28] Multisensory control of human upright stance
    Maurer, C
    Mergner, T
    Peterka, RJ
    [J]. EXPERIMENTAL BRAIN RESEARCH, 2006, 171 (02) : 231 - 250
  • [29] Evaluation of the lambda model for human postural control during ankle strategy
    Micheau, P
    Kron, A
    Bourassa, P
    [J]. BIOLOGICAL CYBERNETICS, 2003, 89 (03) : 227 - 236
  • [30] Can muscle stiffness alone stabilize upright standing?
    Morasso, PG
    Schieppati, M
    [J]. JOURNAL OF NEUROPHYSIOLOGY, 1999, 82 (03) : 1622 - 1626