Spatial positioning of spectrally labeled beads
Devices, systems, kits, and methods for detecting and/or identifying a plurality of spectrally labeled bodies well-suited for performing multiplexed assays. By spectrally labeling the beads with materials which generate identifiable spectra, a plurality of beads may be identified within the fluid. Reading of the beads is facilitated by restraining the beads in arrays, and/or using a focused laser.
1. A spectral label identification method, comprising:
spatially restraining, using light pressure from the restraining energy beam, a plurality of labeled bodies so as to order them into an array, each of the labeled bodies emitting a spectrum having a plurality of signals at different wavelengths;
dispersing a plurality of spectra from the spatially restrained labeled bodies simultaneously across a sensor surface, using light from an exciting energy beam; and
identifying the labeled bodies from the spectra, wherein the plurality of labeled bodies are simultaneously spatially restrained, using the light pressure from the restraining energy beam, as an array.
2. The method of claim 1 , wherein the restraining energy beam and the exciting energy beam are emitted from a red laser.
3. The method of claim 1 , wherein the restraining energy beam is emitted from a red laser or an infrared laser having a wavelength that does not excite the labeled bodies and the exciting energy beam is emitted from a separate laser having a wavelength that excites the labeled bodies.
4. The method of claim 1 , wherein the labeled bodies are restrained within an array of openings in a multi-well plate.
5. The method of claim 4 , wherein the openings in the array of openings in the multi-well plate are spaced to avoid excessive overlap of the dispersed spectra such that each of the labeled bodies can be identified from theft associated spectrum.
6. The method in claim 4 , wherein the openings in the array of openings in the multi-well plate are spaced in a staggered pattern so as to increase the array opening density while avoiding excessive overlap among the dispersed spectra.
7. The method of claim 4 , wherein the openings in the array of openings in the multi-well plate are deep enough to contain a set of labeled bodies.