The invention relates generally to methods of monitoring and controlling
the processing of blood and blood samples, particularly the separation of
blood and blood samples into its components. In one aspect, the invention
relates to optical methods, devices and device components for measuring
two-dimensional distributions of transmitted light intensities, scattered
light intensities or both from a separation chamber of a density
centrifuge. In embodiment, two-dimensional distributions of transmitted
light intensities, scattered light intensities or both measured by the
methods of the present invention comprise images of a separation chamber
or component thereof, such as an optical cell of a separation chamber. In
another aspect, the present invention relates to multifunctional
monitoring and control systems for blood processing, particularly blood
processing via density centrifugation. Feedback control systems are
provided wherein two-dimensional distributions of transmitted light
intensities, scattered light intensities or both are measured, processed
in real time and are used as the basis of output signals for controlling
blood processing. In another aspect, optical cells and methods of using
optical cells for monitoring and control blood processing are provided.