ArticlePloS one2013
Directional coordination of thumb and finger forces during precision pinch.
Article in PloS one, 2013. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 16 papers.
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Who cites it
16 citing papers in PubMed.
- Contributions of the thumb and index finger to tip pinch force sense.Scientific reports · 2025Article
- Article
- Maximum trunk tip force assessment related to trunk position and prehensile 'fingers' implication in African savannah elephants.PloS one · 2024Article
- Congenital hypoplastic thumbs treated by staged nonvascularized MTP joint transfer for absent MCP joints and abductor digiti minimi tendon transfer for opposition: a case series study.BMC musculoskeletal disorders · 2023Article
- Film-trigger applicator (FTA) for improved skin penetration of microneedle using punching force of carboxymethyl cellulose film acting as a microneedle applicator.Biomaterials research · 2022Article
- Wireless Sensing of Lower Lip and Thumb-Index Finger 'Ramp-and-Hold' Isometric Force Dynamics in a Small Cohort of Unilateral MCA Stroke: Discussion of Preliminary Findings.Sensors (Basel, Switzerland) · 2020Article
- Electrically-Evoked Proximity Sensation Can Enhance Fine Finger Control in Telerobotic Pinch.Scientific reports · 2020Article
- Finger-mounted quantitative micro-elastography.Biomedical optics express · 2019Article
- Fluctuations in Human Corticospinal Activity Prior to Grasp.Frontiers in systems neuroscience · 2019Article
- A comparison in precision and accuracy of the conventional syringe to the Suh precision syringe.Clinical ophthalmology (Auckland, N.Z.) · 2019Article
- Effects of muscle fatigue on directional coordination of fingertip forces during precision grip.PloS one · 2018Article
- Effects of Carpal Tunnel Syndrome on Force Coordination and Muscle Coherence during Precision Pinch.Journal of medical and biological engineering · 2017Article
- Biomechanical Characteristics of Hand Coordination in Grasping Activities of Daily Living.PloS one · 2016Article
- Coordination of digit force variability during dominant and non-dominant sustained precision pinch.Experimental brain research · 2015Article
- Digit mechanics in relation to endpoint compliance during precision pinch.Journal of biomechanics · 2015Article
- Carpal tunnel syndrome impairs sustained precision pinch performance.Clinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology · 2015Article
Corrections and comments
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Authors and funding
4 authors.
Funding
Abstract
The human opposable thumb enables the hand to perform dexterous manipulation of objects, which requires well-coordinated digit force vectors. This study investigated the directional coordination of force vectors generated by the thumb and index finger during precision pinch. Fourteen right-handed, healthy subjects were instructed to exert pinch force on an externally stabilized apparatus with the pulps of the thumb and index finger. Subjects applied forces to follow a force-ramp profile that linearly increased from 0 to 12 N and then decreased to 0 N, at a rate of ± 3 N/s. Directional relationships between the thumb and index finger force vectors were quantified using the coordination angle (CA) between the force vectors. Individual force vectors were further analyzed according to their projection angles (PAs) with respect to the pinch surface planes and the shear angles (SAs) within those planes. Results demonstrated that fingertip force directions were dependent on pinch force magnitude, especially at forces below 2 N. Hysteresis was observed in the force-CA relationship for increasing and decreasing forces and fitted with exponential models. The fitted asymptotic values were 156.0 ± 6.6° and 150.8 ± 9.3° for increasing and decreasing force ramps, respectively. The PA of the thumb force vector deviated further from the direction perpendicular to the pinching surface planes than that of the index finger. The SA showed that the index finger force vector deviated in the ulnar-proximal direction, whereas the thumb switched its force between the ulnar-proximal and radial-proximal directions. The findings shed light on the effects of anatomical composition, biomechanical function, and neuromuscular control in coordinating digit forces during precision pinch, and provided insight into the magnitude-dependent force directional control which potentially affects a range of dexterous manipulations.
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