Integrated analytical system and method
An analytical assembly within a unified device structure for integration into an analytical system. The analytical assembly is scalable and includes a plurality of analytical devices, each of which includes a reaction cell, an optical sensor, and at least one optical element positioned in optical communication with both the reaction cell and the sensor and which delivers optical signals from the cell to the sensor. Additional elements are optionally integrated into the analytical assembly. Methods for forming and operating the analytical system are also disclosed.
1. A nucleic acid sequencing instrument comprising:
a removable sequencing chip having at least 10,000 analytical devices, each analytical device having a reaction cell, optical elements, and detection elements that detect light emitted from the reaction cell and convert the detected light into electrical data signals, wherein the reaction cell, the optical elements and the detection elements are pre-aligned and locked in during manufacturing of the removable sequencing chip and there is no substantial open or free space between the reaction cell, optical elements, and detection elements; the sequencing chip comprising integrated waveguides that deliver illumination light to the reaction cells; the sequencing chip having electrical connections that transfer the electrical data signals from the sequencing chip;
a fluidic sample delivery device that delivers reagents for sequencing a sample on the sequencing chip;
an illumination source that provides illumination to the integrated waveguides on the sequencing chip;
a camera board in contact with the electrical connections on the sequencing chip, the camera board comprising circuitry for processing electrical data signals from the sequencing chip; and
a computer in electrical communication with the camera board that receives processed data from the camera board.
2. The instrument of claim 1 , wherein the computer further processes and archives the data to provide sequence information about nucleic acids in the sample.
3. The instrument of claim 1 , wherein each analytical device comprise a zero mode waveguide.
4. The instrument of claim 1 , wherein the sequencing chip further comprises circuitry for refining data signals from the analytical devices into event pulses.
5. The instrument of claim 4 , wherein the event pulses comprise information including temporal onset and offset times and signal strengths.
6. The instrument of claim 4 , wherein the circuitry performs data reduction, digitization, buffer storage, or bus arbitration.
7. The instrument of claim 1 , wherein the analytical devices comprise optode elements.
8. The instrument of claim 1 , wherein the camera board comprises field programmable gate array components.
9. The instrument of claim 1 , wherein the camera board comprises application-specific integrated circuits.
10. The instrument of claim 1 , wherein the circuitry on the camera board carries out base calling on data output from the analytical devices.
11. The instrument of claim 1 , wherein sequencing reactions occurring in the analytical devices are asynchronous, and circuits on the sequencing chip align these random events to a system clock whereby the data that is transmitted off of the chip is read off in a synchronous manner.
12. The instrument of claim 1 , wherein the sequencing chip has at least a million analytical devices.
13. The instrument of claim 1 , wherein the data signals from the sequencing chip comprise data from single molecule real time sequencing.
14. The instrument of claim 1 , wherein the sequencing chip comprises a silicon chip.
15. The instrument of claim 1 , wherein the sequencing chip is produced by forming stacks on top of a silicon chip that comprises the detection elements.
16. The instrument of claim 1 , wherein each reaction cell has two detection elements, each associated with a different color filter to allocate spectrally different signals to each element.
17. The instrument of claim 1 , wherein each reaction cell has four detection elements, each associated with a different color filter to allocate spectrally different signals to each element.
18. The instrument of claim 1 , wherein the detection elements are CMOS sensors.