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Three isometric tasks with different KNR were tested: constant index finger pressing force production (KNR = 0), constant thumb-index finger pinching force production (KNR = 1), and constant thumb-index finger torque production (KNR = 5).
The reference points also slide towards the volar-ulnar direction when the pinching force increases.
In the radial-ulnar direction, the gliding ratio increases along with the increased pinching force.
The gliding ratio increases along with the pinching force when pinching the PIP joint.
This means that an increase in pinching force will not make the joint glide even more.
In the dorsal-volar direction, the gliding ratios while pinching the MP joint decrease when the pinching force increases.
Similar(41)
Pinching forces ranged from 29.4 to 1765.2 newtons among the collected crabs.
Because the crabs' pinching forces were significantly correlated to their body weights, the researchers calculated that a 4-kilogram coconut crab should be able to exert a shocking force of 3300 newtons with its claw.
Our results indicate that the gliding path is relative to the CS of the trapezium when pinching the MP joint, PIP joint, and DP with three pinching forces.
The effects of different pinching locations and pinching forces on the gilding ratios are indicated in the ANOVA table (Table 2).
Three components of gliding ratios relative to the CS of the trapezium in the resting position at different pinching locations, as well as different pinching forces, are shown in Table 1.
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