Method and apparatus for acoustically controlling liquid solutions in microfluidic devices
Acoustic energy is used to control motion in a fluid. According to one embodiment, the invention directs acoustic energy at selected naturally occurring nucleation features to control motion in the fluid. In another embodiment, the invention provides focussed or unfocussed acoustic energy to selectively placed nucleation features to control fluid motion. According to one embodiment, the invention includes an acoustic source, a controller for controlling operation of the acoustic source, and one or more nucleation features located proximate to or in the fluid to be controlled.
1. A method of imparting motion to a fluid to impart motion to a biological sample located in the fluid, said method comprising,
providing an acoustic source for generating a focused acoustic field, wherein said acoustic source generates a wavetrain substantially converging in a focal zone having a diameter less than or equal to 2 cm, and directing said focused acoustic field to at least one nucleation feature located proximate to the sample located in the fluid to impart motion to the fluid and to the sample located in the fluid proximate to said nucleation feature.
2. The method of claim 1 , wherein said step of directing said acoustic field further comprises, adjusting a relative position between said acoustic source and said at least one nucleation feature to bring at least one nucleation feature within a focal zone of said acoustic source.
3. The method of claim 1 , wherein said fluid contacts a first surface, and said first surface includes said at least one nucleation feature.
4. The method of claim 3 , wherein said at least one nucleation feature includes at least one of a pit, crevice, scratch, groove and ridge in said first surface.
5. The method of claim 3 , wherein said fluid has a volume between about 0.1 p 1 and about 10 ml.
6. The method of claim 3 , wherein said first surface is a surface of a microchamber.
7. The method of claim 1 , wherein said fluid is contained in a microchamber.
8. The method of claim 1 , wherein said motion imparted to said fluid is of sufficient magnitude to cause a mixing action in said fluid.
9. The method of claim 1 comprising, prior to said step of directing said acoustic field, positioning said at least one nucleation feature proximate to said sample.
10. The method of claim 1 , wherein said fluid is contained in a microvessel.
11. An apparatus for imparting motion to a fluid to impart motion to a biological sample located in the fluid, said apparatus comprising,
an acoustic source for generating a focused acoustic field, wherein said acoustic source generates a wavertrain substantially converging in a focal zone having a diameter less than or equal to 2 cm, and
a controller adapted to control operation of said focused acoustic source, wherein said apparatus directs said acoustic field and focuses said field to at least one nucleation feature located proximate to the sample located in the fluid to impart motion to the fluid and to the sample located in the fluid proximate to said nucleation feature.
12. The apparatus of claim 11 , wherein said acoustic source is further adapted to provide said direction of said acoustic field, and to provide said acoustic field as a focused acoustic field to said at least one nucleation feature.
13. The apparatus of claim 11 further comprising, a positioning mechanism for adjusting a relative position between said acoustic source and said at least one nucleation feature, to bring said at least one nucleation feature within a focal zone of said acoustic source.
14. The apparatus of claim 11 , wherein said fluid contacts a first surface and said at said first surface includes said at least one nucleation feature.
15. The apparatus of claim 14 , wherein said first surface is a surface of a microchamber.
16. The apparatus of claim 14 , wherein said at least one nucleation feature includes at least one of a pit, crevice, scratch, groove and ridge in said first surface.
17. The apparatus of claim 14 , wherein said fluid has a volume between about 0.1 pl and about 10 ml.
18. The apparatus of claim 11 , wherein said fluid is contained in a microchamber.
19. The apparatus of claim 11 , wherein said motion imparted to said fluid is of sufficient magnitude to cause a mixing action in said fluid.
20. The apparatus of claim 11 , wherein said apparatus is further adapted to direct said acoustic field with sufficient specificity to promote mixing of a portion of said fluid proximate to said sample.
21. The apparatus of claim 11 , wherein said fluid is contained in a microvessel.