Method of hub communication with surgical instrument systems
A method for adjusting the operation of a clip applier using machine learning in a surgical suite is disclosed. The method comprises gathering data during surgical procedures, wherein the surgical procedures include the use of a clip applier comprising a crimping drive configured to be mechanically advanced through a crimping stroke. The method further comprises analyzing the gathered data to determine an appropriate operational adjustment of the clip applier and adjusting the operation of the clip applier to improve the operation of the clip applier.
1. A method for adjusting the operation of a clip applier using machine learning in a surgical suite, wherein said method comprises:
gathering data during surgical procedures, wherein the surgical procedures include the use of a clip applier comprising a plurality of clips and a reciprocating crimping drive configured to be mechanically advanced through a plurality of crimping strokes, wherein a single clip of the plurality of clips is crimped during a crimping stroke of the plurality of crimping strokes, wherein the crimping drive moves a crimping stroke length to complete the crimping stroke, and wherein the clip applier comprises a control system;
analyzing the gathered data to determine, by way of the control system, an appropriate operational adjustment of the clip applier, wherein the appropriate operational adjustment of the clip applier comprises adjusting the crimping stroke length of the crimping drive during the crimping stroke; and
automatically adjusting, by way of the control system, the crimping stroke length to improve the operation of the clip applier based on the determined appropriate operational adjustment.
2. The method of claim 1 , wherein gathering data comprises storing data in a surgical hub.
3. The method of claim 1 , wherein the clip applier is attached to a surgical robot and is configured to be operated manually by a clinician.
4. The method of claim 1 , wherein gathering data comprises monitoring each crimping stroke during use of the clip applier using a crimping drive detection circuit.
5. The method of claim 1 , wherein gathering data comprises accessing existing information based on previous operations.
6. A method for adjusting control parameters of a clip applier using a surgical hub, wherein said method comprises:
gathering data during surgical procedures, wherein each surgical procedure includes the use of a clip applier comprising a plurality of clips and a reciprocating crimping drive configured to be advanced through a plurality of crimping strokes, wherein a single clip of the plurality of clips is crimped during a crimping stroke of the plurality of crimping strokes, wherein the crimping drive moves a crimping stroke length to complete the crimping stroke, and wherein the clip applier comprises a control system;
evaluating the gathered data to determine the appropriate operation of the clip applier;
operating the clip applier to perform the crimping stroke;
monitoring the speed and position of the crimping drive during the crimping stroke;
determining, by way of the control system, if the crimping stroke length of the crimping drive needs to be adjusted based on the evaluated data; and
automatically adjusting, by way of the control system, the crimping stroke length of the crimping drive.
7. The method of claim 6 , wherein gathering data comprises storing data in a surgical hub system.
8. The method of claim 6 , wherein the clip applier comprises a motor configured to mechanically advance the crimping drive.
9. The method of claim 6 , wherein gathering data comprises Monitoring each crimping stroke during the use of the clip applier using a crimping drive detection circuit.
10. The method of claim 6 , wherein gathering data comprises accessing existing information based on previous operations.
11. A method for adjusting the operation of a clip applier using a surgical hub, wherein the clip applier comprises an end effector and a firing system comprising a motor, wherein the end effector comprises a reciprocating crimping drive and a crimping drive detection circuit, wherein the firing system is configured to apply control motions to the crimping drive to advance the crimping drive through a crimping stroke to crimp a single clip of a plurality of clips around patient tissue, wherein the crimping drive moves a crimping stroke length to complete the crimping stroke, wherein the crimping drive detection circuit is configured to detect a parameter of the crimping drive during the crimping stroke, wherein the clip applier comprises a control system configured to control the firing system, and wherein the method for adjusting the operation of the clip applier comprises:
evaluating data originating from the detection circuit and the surgical hub;
determining, by way of the control system, if the crimping stroke length of the crimping drive of the end effector needs to be adjusted based on the evaluated data; and
automatically adjusting, by way of the control system, the crimping stroke length of the crimping drive when the control system determines the crimping stroke length of the crimping drive needs to be adjusted.
12. The method of claim 11 , wherein the clip applier is attached to a surgical robot and is configured to be operated manually by a clinician.
13. The method of claim 11 , wherein the data from the surgical hub comprises data gathered during previous operations.