Trackig instrumentation for measuring human motor control

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128774, 128782, 434258, A61B 510

Patent

active

048856878

ABSTRACT:
Tracking instrumentation for measuring human motor control includes a load cell or potentiometer for converting a force or position to an electrical signal. An analog-to-digital converter periodically samples the electrical signal and converts it into a series of digital words representing a force amplitude value. A computer system includes a monitor for displaying a tracking element, the position of the tracking element controlled by the digital words. The computer system further includes means for displaying a tracking pattern on the monitor and plotting scaled values on the monitor superimposed on the tracking pattern. The values are plotted so that the user operating a handgrip can adjust the handgrip in an attempt to track the pattern across the monitor. The system further includes means and methods for recording and analyzing the tracking performance data and for objectively scoring the tracking data.

REFERENCES:
patent: 3046676 (1962-07-01), Hermann
patent: 3680545 (1972-08-01), Miller
patent: 3690020 (1972-09-01), McBratnie
patent: 4325697 (1982-04-01), Regan
patent: 4349708 (1982-09-01), Asher
patent: 4558864 (1985-12-01), Medwedeff
Excerpt from E. C. Poulton, Tracking Skill and Manual Control, Academic Press, N.Y. (1974), pp. 33-38.
R. Jones & I. Donaldson, Measurement of Integrated Sensory-Motor Function Following Brain Damage by a Computerized Preview Tracking Task, 3 Int. Rehab. Med., 71-83 (1981).
W. Koerth, A Pursuit Apparatus: Eye-Hand Coordination, 31 Pyscyological Monographs, 288-92 (1922).
C. Kelley, The Measurement of Tracking Proficiency, 11 Human Factors, 43-64 (1969).
W. Henderson, W. Tourtelloute & A. Potvin, Training Examiners to Administer a Quantitative Neurological Examination for a MultiCenter Clinical Trail, 56, Arch. Phys. Med. Rehabil., 289-95 (1975).
K. Cross, Role of Practice in Perceptual-Motor Learning, 46 A.N.J. Phys. Med., 487-510 (1967).
R. Eason & C. White, Relationship Between Muscular Tension and Performance During Rotary Pursuit, 10 Percept. Mot. Skills, 199-210 (1969).
C. Frith, Learning Rythmic Hand Movements, 25, Q. J. Exp. Psych., 253-259 (1973).
M. Abrams & J. Grice, Effects of Practice in Positional Variables and Acquisition of a Complex Skill, 43, Percept. Mot. Skills, 203-211 (1976).
S. Hagan, H. Wilkerson & C. Noble, Pursuit Tracking Skill as a Joint Function of Work and Rest Variables, 50, Percept. Mot. Skills, 683-697 (1980).
K. Flowers, Some Frequency Response Characteristics of Parkinsonism on Pursuit Tracking, 101, Brain, 19-34 (1978).
H. Beppu, M. Suda & R. Tanaka, Slow Visuomotor Tracking in Normal Man and in Patients with Cerebellar Ataxia, 39 Advances in Neurology, 889-895 (1983).
H. Beppu, M. Suda & R. Tanaka, Analysis of Cerebellar Motor Disorders by Visually Guided Elbow Tracking Movement, 107, Brain, 787-809 (1984).
A. Potvin & W. Tourtellotte, The Neurological Examination: Advancements in Its Quantification, 56, Arch. Phys. Med. Rehabil, 425-437 (1975).
L. DeSouza, R. Hewer, P. Len, S. Miller and G. Reid, Assessment of Recovery of Arm Control and Hemiplegic Stroke Patients: Comparision of Arm Function Test and Pursuit Tracking in Relation to Clinical Recovery, 2, Int. Rehab. Med., 10-16 (1980).
L. Carlton, Movement Control Characteristics of Aiming Responses, 23, Ergonomics, 1019-1032 (1980).

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