Abney, Warlaumont, Haussman, Ross, Wallot
The
pairing of dynamical systems theory and complexity science brings novel
concepts and methods to the study of infant motor development. Accordingly,
this longitudinal case study presents a new approach to characterizing the
dynamics of infant limb and vocalization behaviors. A single infant’s
vocalizations and limb movements were recorded from 51-days to 305-days of
age. On each recording day, accelerometers were placed on all four of the
infant’s limbs and an audio recorder was worn on the child’s chest. Using
nonlinear time series analysis methods, such as recurrence quantification
analysis and Allan factor, we quantified changes in the stability and
multiscale properties of the infant’s behaviors across age as well as how
these dynamics relate across modalities and effectors. We observed that
particular changes in these dynamics preceded or coincided with the onset of
various developmental milestones. For example, the largest changes in
vocalization dynamics preceded the onset of canonical babbling. The results
show that nonlinear analyses can help to understand the functional
co-development of different aspects of infant behavior.