Adjustments based on airborne particle properties
A surgical system is disclosed. The surgical system can include a sensor configured to detect a property of airborne particles in a fluid within a patient's cavity. The surgical system can also include a surgical device and a control circuit configured to adjust a surgical function of the surgical device in response to an input signal indicative of the property of airborne particles in the fluid.
1. A surgical system, comprising:
a sensor configured to detect a property of airborne particles in a fluid within a patient's abdominal cavity;
a surgical device configured to implement a surgical function; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive an input signal from the sensor indicative of the property of airborne particles in the fluid; and
in response to the input signal, provide an output signal to the surgical device indicative of an adjustment to the surgical function, wherein the adjustment to the surgical function comprises at least one of proportionately increasing the surgical function based on the property of airborne particles in the fluid, adding a supplemental surgical function to the surgical function, or replacing the surgical function with an alternative surgical function.
2. The surgical system of claim 1 , wherein the surgical device comprises an operating room vent, and wherein the adjustment to the surgical function comprises adjusting the operating room vent to increase ventilation therethrough.
3. The surgical system of claim 1 , wherein the sensor is positioned within the patient's abdominal cavity.
4. The surgical system of claim 3 , wherein the sensor comprises an ultrasonic pass-through particle detection sensor.
5. The surgical system of claim 4 , wherein the ultrasonic pass-through particle detection sensor comprises:
an ultrasound emitter configured to transmit a curtain of homogenous sound through the fluid; and
a receiver.
6. The surgical system of claim 5 , wherein the receiver is mounted to the surgical device.
7. A surgical system, comprising:
a sensor configured to detect a property of airborne particles in a fluid within a patient's abdominal cavity;
a surgical device configured to implement a surgical function; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive an input signal from the sensor indicative of the property of airborne particles in the fluid; and
in response to the input signal, provide an output signal to the surgical device indicative of an adjustment to the surgical function;
wherein the surgical device comprises a smoke evacuator comprising a filtering system, and wherein the adjustment to the surgical function comprises adjusting a flow path through the filtering system of the smoke evacuator;
wherein the filtering system comprises a particulate filter, and wherein the flow path is diverted through the particulate filter when the input signal indicates an increase in particulate concentration of airborne particles in the fluid.
8. A surgical system, comprising:
a sensor configured to detect a property of airborne particles in a fluid within a patient's abdominal cavity;
a surgical device configured to implement a surgical function; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive an input signal from the sensor indicative of the property of airborne particles in the fluid; and
in response to the input signal, provide an output signal to the surgical device indicative of an adjustment to the surgical function;
wherein the surgical device comprises a smoke evacuator comprising a filtering system, and wherein the adjustment to the surgical function comprises adjusting a flow path through the filtering system of the smoke evacuator;
wherein the filtering system comprises a condenser, and wherein the flow path is diverted through the condenser when the input signal indicates an increase in aerosol concentration of airborne particles in the fluid.
9. A surgical system, comprising:
an ultrasonic measurement system configured to detect a property of fluid flow within a patient's abdominal cavity;
a surgical device configured to implement a surgical function; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive an input signal from the ultrasonic measurement system indicative of the property of fluid flow; and
in response to the input signal, provide an output signal to the surgical device indicative of an adjustment to the surgical function.
10. The surgical system of claim 9 , wherein the ultrasonic measurement system comprises an ultrasonic pass-through particle detection sensor arrangement comprising:
an ultrasound emitter configured to transmit a curtain of homogenous sound through a fluid; and
a receiver.
11. The surgical system of claim 10 , wherein the ultrasonic pass-through particle detection sensor arrangement is positioned within the patient's abdominal cavity.
12. The surgical system of claim 11 , wherein the receiver is mounted to the surgical device.
13. The surgical system of claim 9 , wherein the property of fluid flow comprises at least one of velocity, directionality, concentrations of particulates in the fluid's flow, flow patterns, or dispersion rates.
14. A surgical system, comprising:
a sensor configured to detect a property of airborne particles in a fluid within a patient's abdominal cavity;
a smoke evacuator, wherein a plurality of alternative flow paths are defined through the smoke evacuator; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive an input signal from the sensor indicative of the property of airborne particles in the fluid; and
provide an output signal to the smoke evacuator in response to the input signal, wherein the output signal is indicative of a selection of one of the alternative flow paths through the smoke evacuator.
15. A surgical system, comprising:
a plurality of sensors configured to detect a plurality of properties of airborne particles, wherein the plurality of sensors comprises a sensor configured to detect a property of airborne particles in a fluid within a patient's abdominal cavity;
a surgical device configured to implement a surgical function; and
a control circuit comprising a processor and a memory storing instructions executable by the processor to:
receive a plurality of input signals from the plurality of sensors, wherein an input signal from the sensor is one of the plurality of input signals; and
in response to the plurality of input signals, provide an output signal to the surgical device indicative of an adjustment to the surgical function.
16. The surgical system of claim 15 , wherein the sensor comprises at least one of an optical sensor, a laser sensor, an ultrasonic sensor, a magnetic resonance sensor, or a vortex shedding sensor.
17. The surgical system of claim 15 , wherein the property of airborne particles in the fluid comprises at least one of a particle type, particle size, particle concentration, particle velocity, or particle direction.
18. The surgical system of claim 15 , wherein the surgical device comprises a generator configured to provide power to an energy device at a power level, and wherein the adjustment to the surgical function comprises adjusting the power level provided to the energy device from the generator.
19. The surgical system of claim 15 , wherein the surgical device comprises a smoke evacuator comprising a pump configured to operate at a speed, and wherein the adjustment to the surgical function comprises adjusting the speed of the pump.
20. The surgical system of claim 15 , wherein the surgical device comprises a smoke evacuator comprising a filtering system, and wherein the adjustment to the surgical function comprises adjusting a flow path through the filtering system of the smoke evacuator.