The invention provides a method and apparatus for separating blood into
components, may be expanded to include other types of cellular
components, and can be combined with holographic optical manipulation or
other forms of optical tweezing. One of the exemplary methods includes
providing a first flow having a plurality of blood components; providing
a second flow; contacting the first flow with the second flow to provide
a first separation region; and differentially sedimenting a first blood
cellular component of the plurality of blood components into the second
flow while concurrently maintaining a second blood cellular component of
the plurality of blood components in the first flow. The second flow
having the first blood cellular component is then differentially removed
from the first flow having the second blood cellular component.
Holographic optical traps may also be utilized in conjunction with the
various flows to move selected components from one flow to another, as
part of or in addition to a separation stage.