Variation of finger forces in maximal isometric grasp tests on a range of cylinder diameters

Вариация сил пальцев при максимальных изометрических тестах захвата цилиндров различного диаметра
Andrew A. Amis
1987-10-01

cylindrical graspingfinger phalangeal segmentsgrasp diametermaximal isometric graspingnormal and shear forces
An investigation of maximal isometric cylindrical grasping actions of the hand is reported. A dynamometer is described which allows simultaneous measurement of both the normal forces and the tangential shear forces imposed by each of the three phalangeal segments of a finger during a test. Seventeen subjects were tested, grasping cylinders 31-116 mm in diameter. Normal grasp forces decreased significantly as cylinder size increased, while with large diameters, shear forces moved the skin towards the finger tip. In all cases the distal segments of the fingers imposed forces significantly larger than those of the middle and proximal segments. The mean contributions of fingers from index to little were: 30, 30, 22 and 18%, proportions that did not vary significantly for the range of grasp diameters. Forces acting during grasping activities are reported in greater detail, for a wider range of hand gripping postures, than previously available. These data are useful in the design of hand operated controls or in the prediction of tendon and joint forces in vivo for the design of implants.
1
A dynamometer simultaneously measured normal and tangential shear forces from each of three phalangeal segments during maximal cylindrical grasping.
2
Distal finger segments produced significantly greater forces than middle and proximal segments across tests.
3
For large cylinder diameters, shear forces moved the skin toward the fingertip.
4
Mean force contributions were 30%, 30%, 22%, and 18% for the index, middle, ring, and little fingers, respectively, and did not vary significantly with diameter.
5
Seventeen subjects grasped cylinders 31–116 mm in diameter; normal grasp forces decreased significantly as cylinder diameter increased.
6
The detailed force data support designing hand-operated controls and predicting in vivo tendon and joint forces for implant design.

Maximal isometric cylindrical grasping actions of the human hand across cylinder diameters of 31–116 mm

Variation and distribution of normal and tangential shear forces across finger segments and fingers as a function of cylinder diameter

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1987-10-01
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Andrew A. Amis
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