Method and apparatus for determining the state of entrainment between
biological systems which exhibit oscillatory behavior such as heart
rhythms, respiration, blood pressure waves and low frequency brain waves
based on a determination of heart rate variability (HRV) and an
evaluation of the power spectrum thereof. Entrainment reflects a
harmonious balance between the two branches of the autonomic nervous
system within the body. This internal state of heightened physiological
efficiency enhances health and promotes optimal performance. According to
one embodiment a method is used to determine the entrainment level based
on an entrainment parameter related to HRV. The method first determines
the power distribution spectrum (PSD) and then calculates an entrainment
parameter (EP), which is a measure of the power distribution in the HRV
spectrum. High EP values occur when this power is concentrated within a
relatively narrow range of frequencies, and lower values when the power
is distributed over a broader range of frequencies. In one embodiment, an
apparatus is provided for monitoring the heart beat and presenting this
information via a personal computer, handheld device, or other processing
means.