Correcting two-dimensional kinematic errors for chick embryonic movements in ovo

In motor behavior studies of chick embryos in ovo, kinematic recording is limited to a single camera system and produces kinematic data that are distorted if out-of-plane movements are not considered. CONVERT is a rule based algorithm designed to calculate 3D limb movements given 2D kinematic data....

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Veröffentlicht in:Computers in biology and medicine 1994-07, Vol.24 (4), p.305-314
Hauptverfasser: Orosz, Michael D., Bradley, Nina S., Chambers, Sandra H.
Format: Artikel
Sprache:eng
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Zusammenfassung:In motor behavior studies of chick embryos in ovo, kinematic recording is limited to a single camera system and produces kinematic data that are distorted if out-of-plane movements are not considered. CONVERT is a rule based algorithm designed to calculate 3D limb movements given 2D kinematic data. CONVERT's calculations are based on a stationary reference point, limited translation of the chick embryo's trunk point, a multi-linked model of the body, and approximate limb segment lengths. Simulations indicate CONVERT calculates joint movements from 2D data with a maximum error of 6° compared to a maximum error of 79° if out-of-plane considerations are ignored. The approach used to correct two-dimensional kinematic measurement errors can be readily applied to other experimental conditions that restrict video recording to single camera systems.
ISSN:0010-4825
1879-0534
DOI:10.1016/0010-4825(94)90027-2