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Biomedical subjects

Carl Gabbard

Publications and source records attributed to Carl Gabbard.

2 recordsLinked to original sources

Task complexity and limb selection in reaching.

Research examining limb selection for reaching and grasping an object in various positions of hemispace has noted a strong ipsilateral bias for using the hand on the same side as the stimulus, an observation that to some extent questions the traditional notion of handedness. The present study examined the effects of task complexity in regard to such actions. Forty-four right-handed, blindfolded subjects were required to grasp a small cube at one location and release it at another site, with movement initiated only after the second cue was presented. In condition A, the first tone identified the location where the subject was to grasp the cube (the second tone, the release point), while in condition B the order was reversed. A view of both conditions revealed a similar trend. As expected, the vast majority (average 96%) used their dominant (right) hand to reach into right hemispace and release in the left field. However, when the reach cue was presented in left hemispace, only 40% of subjects selected their nondominant (ipsilateral) limb to complete the action. Since this value is substantially less than reported previously with a less complex task (70%), we speculate that when deeper processing is required there is a tendency to revert to the dominant limb, even when it necesssitates reaching contralaterally. Additional discussion focuses on programming selection for reach and release.

Acoustic Stimulation↗

Effects of standing and sitting on finger-tapping speed in healthy adults.

STUDY DESIGN: A repeated-measures design was used to compare finger-tapping performance (hand functional control) across 4 standing and sitting conditions of limb body support postures. OBJECTIVES: The intent was to examine the hypothesized hemispheric control interference effects of lower limb body support postures on finger-tapping performance. A secondary objective was to gain a better understanding of the relationship between lower limb posture and concurrent finger-tapping activity. BACKGROUND: In a task such as kicking a ball with the right foot, foot control theory suggests that the left hemisphere contralaterally controls right-foot kicking action. However, it can also be interpreted that the postural support (with the left foot in this example) involving the action of antigravity muscles (leg extensors) is driven ipsilaterally. Based on this explanation, we would expect a hemispheric effect to occur during standing on the left limb while performing a finger-tapping task with the right hand. This study has theoretical and clinical significance for understanding hemispheric and functional control of limbs, which may underlie the assessment of movement control and the development and use of therapeutic interventions that can potentially improve functional movement control. METHODS AND MEASURES: Ninety-eight (98) adult participants (ages 19 to 32 years) performed a finger-tapping task in 4 postural conditions: seated, standing on both feet, standing on the right foot only (RF), and standing on the left foot only (LF). RESULTS: As predicted, manual performance was significantly slower in the LF condition as compared to the standing and sitting positions. However, when comparing performance between the LF and RF conditions, the difference was minimal. CONCLUSIONS: Although support for the ipsilateral effect was not found, postural position did influence manual performance.

Adult↗