The role of vision, speed, and attention in overcoming directional biases during arm movements

被引:20
作者
Dounskaia, Natalia [1 ]
Goble, Jacob A. [2 ]
机构
[1] Arizona State Univ, Kinesiol Program, Tempe, AZ 85287 USA
[2] Arizona State Univ, Harrington Dept Bioengn, Tempe, AZ 85287 USA
基金
美国国家科学基金会;
关键词
Arm movements; Optimal control; Interaction torque; Multi-joint; Cognitive load; Secondary task; Working memory; RANDOM SEQUENCES; GENERATION; PERTURBATION; COORDINATION; PREFERENCES; KINEMATICS; POSTURE; MODEL;
D O I
10.1007/s00221-011-2547-9
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Previous research has revealed directional biases (preferences to select movements in specific directions) during horizontal arm movements with the use of a free-stroke drawing task. The biases were interpreted as a result of a tendency to generate motion at either the shoulder or elbow (leading joint) and move the other (subordinate) joint predominantly passively to avoid neural effort for control of interaction torque. Here, we examined influence of vision, movement speed, and attention on the directional biases. Participants performed the free-stroke drawing task, producing center-out strokes in randomly selected directions. Movements were performed with and without vision and at comfortable and fast pace. A secondary, cognitive task was used to distract attention. Preferred directions remained the same in all conditions. Bias strength mildly increased without vision, especially during fast movements. Striking increases in bias strength were caused by the secondary task, pointing to additional cognitive load associated with selection of movements in the non-preferred directions. Further analyses demonstrated that the tendency to minimize active interference with interaction torque at the subordinate joint matched directional biases in all conditions. This match supports the explanation of directional biases as a result of a tendency to minimize neural effort for interaction torque control. The cognitive load may enhance this tendency in two ways, directly, by reducing neural capacity for interaction torque control, and indirectly, by decreasing capacity of working memory that stores visited directions. The obtained results suggest strong directional biases during daily activities because natural arm movements usually subserve cognitive tasks.
引用
收藏
页码:299 / 309
页数:11
相关论文
共 34 条
[1]   LEARNING ARM KINEMATICS AND DYNAMICS [J].
ATKESON, CG .
ANNUAL REVIEW OF NEUROSCIENCE, 1989, 12 :157-183
[2]   Random generation and the executive control of working memory [J].
Baddeley, A ;
Emslie, H ;
Kolodny, J ;
Duncan, J .
QUARTERLY JOURNAL OF EXPERIMENTAL PSYCHOLOGY SECTION A-HUMAN EXPERIMENTAL PSYCHOLOGY, 1998, 51 (04) :819-852
[3]  
Bowman AW., 1997, Applied Smoothing Techniques for Data Analysis: The Kernel Approach with S-Plus Illustrations, Vvol. 18
[4]   The influence of a concurrent cognitive task on the compensatory stepping response to a perturbation in balance-impaired and healthy elders [J].
Brauer, SG ;
Woollacott, M ;
Shumway-Cook, A .
GAIT & POSTURE, 2002, 15 (01) :83-93
[5]   Variables that influence the generation of random sequences: An update [J].
Brugger, P .
PERCEPTUAL AND MOTOR SKILLS, 1997, 84 (02) :627-661
[6]  
Chaffin D.B., 1984, OCCUPATIONAL BIOMECH
[7]   The motor system does not learn the dynamics of the arm by rote memorization of past experience [J].
Conditt, MA ;
Gandolfo, F ;
MussaIvaldi, FA .
JOURNAL OF NEUROPHYSIOLOGY, 1997, 78 (01) :554-560
[9]   Commonalities and differences in control of various drawing movements [J].
Dounskaia, N ;
Ketcham, CJ ;
Stelmach, GE .
EXPERIMENTAL BRAIN RESEARCH, 2002, 146 (01) :11-25
[10]   Interjoint coordination during handwriting-like movements [J].
Dounskaia, N ;
Van Gemmert, AWA ;
Stelmach, GE .
EXPERIMENTAL BRAIN RESEARCH, 2000, 135 (01) :127-140