Resonator sensor module system and method
A resonator sensor module is disclosed. The resonator sensor module includes one or more sensing resonators that includes binding sites for an analyte material; one or more reference resonators that lacks any binding sites for the analyte material; a module interface; and one or more switches each including a first position that operatively couples at least one of the one or more sensing resonators and the module interface and a second position that operatively couples at least one of the one or more reference resonators and the module interface.
1. A method for measuring binding kinetics of an interaction of an analyte material present in a fluid sample, the method comprising:
providing a resonator sensor module comprising one or more sensing resonators, one or more reference resonators, a module interface, and a switch, wherein the one or more sensing resonators comprises binding sites for the analyte material and the one or more reference resonators lacks any binding sites for the analyte;
positioning the switch in a first position such that the one or more sensing resonators is operatively coupled to the module interface;
prior to exposing the one or more sensing resonators and the one or more reference resonators to the fluid sample, initiating operation of the one or more sensing resonators via the module interface such that the one or more sensing resonators produces at least one sensor output signal representing a resonance characteristic of the one or more sensing resonators;
automatically detecting introduction of a fluid sample to the one or more sensing resonators based on detection of a characteristic change in the at least one sensor output signal;
positioning the switch in a second position such that the one or more reference resonators is operatively coupled to the module interface;
initiating operation of the one or more reference resonators via the module interface such that the one or more reference resonators produces at least one reference output signal representing a resonance characteristic of the one or more reference resonators; and
in response to the detecting of the introduction of the fluid sample, initiating automated measurement of the binding kinetics of the analyte material to the one or more sensing resonators.
2. The method of claim 1 , wherein initiating the automated measurement of the binding kinetics comprises monitoring of the at least one sensor output signal and at least one reference output signal from a time reference based on the time of occurrence of the characteristic change in the at least one sensor output signal.
3. The method of claim 1 , wherein the detection of the characteristic change in the at least one sensor output signal comprises detection of a step change in a resonant characteristic of the one or more sensing resonators selected from the group consisting of: a frequency, a transmission or reflection phase angle, a transmission or reflection amplitude, or any combination thereof.
4. The method of claim 1 , wherein initiating automated measurement of the binding kinetics comprises measuring a total amount of change of the at least one sensor output signal time-referenced from the detection of the characteristic change in the at least one sensor output signal.
5. The method of claim 1 , further comprising operating each of the one or more sensing resonators and the one or more reference resonators at their corresponding resonant frequencies, which are potentially different from one another.
6. The method of claim 1 , further comprising determining a measure of concentration of the analyte in the fluid sample based on the binding kinetics.