IP Library Granted Patent US 12,009,095
Granted Patent B2
US 12,009,095 · App. 17/592,080 · Granted Jun 11, 2024

Real-time analysis of comprehensive cost of all instrumentation used in surgery utilizing data fluidity to track instruments through stocking and in-house processes

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Jason L. Harris (Lebanon, OH); Taylor W. Aronhalt (Loveland, OH)
Assignee: Cilag GmbH International
G16H40/40A61B18/14A61B34/35A61B90/08A61B90/361G06Q10/06315G06Q10/20G16H40/20G16H40/63G16H40/67G16H50/70A61B2017/00057A61B2017/00106A61B2017/00199A61B2017/00221A61B2017/00225A61B2017/0688A61B2018/00541A61B2018/00601A61B2018/0063A61B2018/00839A61B2018/00982A61B2018/00994A61B2034/301A61B2090/0803A61B2090/0805A61B2218/002A61B2218/008
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Quick Facts
Patent No.
US 12,009,095
App. No.
17/592,080
Granted
Jun 11, 2024
Kind
B2
Abstract

Various systems and methods for tracking surgical procedure costs are disclosed. A computer system, such as surgical hub, is configured to be communicably coupled to a plurality of surgical devices. The computer system can be programmed to identify the surgical devices that are being utilized during a surgical procedure via perioperative data received from the surgical devices and then calculate the total cost associated with the surgical devices used in the surgical procedure. The total cost can include an aggregation of the maintenance costs of each of the reusable surgical devices and the replacement costs of the nonreusable surgical devices consumed during the surgical procedure.

Claims (60)

1. A surgical system comprising:

a plurality of surgical devices distributed across a plurality of medical facilities, wherein each surgical device of the plurality of surgical devices is configured to generate and transmit signals; and

a surgical hub configured to be communicably coupled to the plurality of surgical devices, wherein the surgical hub comprises a processor and a memory coupled to the processor, the memory storing instructions that, when executed by the processor, cause the surgical system to:

detect a connection of a first surgical device of the plurality of surgical devices in a first medical facility of the plurality of medical facilities;

receive operational parameters associated with a historical use of the first surgical device;

generate a control program update for the first surgical device based on the received operational parameters, wherein the control program update is determined to improve a surgical outcome associated with a use of the first surgical device;

detect a connection of a second surgical device of the plurality of surgical devices in a second medical facility of the plurality of medical facilities; and

implement the control program update via the second surgical device to improve a surgical outcome associated with a use of the second surgical device.

2. The surgical system of claim 1 , wherein the instructions, when executed by the processor, further cause the processor to correlate the first surgical device to the second surgical device, and wherein implementing the control program update via the second surgical device is based on the correlation of the first surgical device to the second surgical device.

3. The surgical system of claim 2 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device;

receive a second signal from the second surgical device; and

determine a type of surgical procedure performed by the first surgical device and the second surgical device based on the received first signal and the received second signal, wherein the correlation is based on the type of surgical procedure performed by the first surgical device and the second surgical device, and wherein the improved surgical outcome comprises better sealing and less bleeding during the type of surgical procedure performed by the first surgical device and the second surgical device.

4. The surgical system of claim 2 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device;

receive a second signal from the second surgical device; and

determine a type of tissue operated on by the first surgical device and the second surgical device, wherein the correlation is based on the type of tissue operated on by the first surgical device and the second surgical device, and wherein the improved surgical outcome comprises better sealing and less bleeding of the type of tissue operated on by the first surgical device and the second surgical device.

5. The surgical system of claim 2 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device;

receive a second signal from the second surgical device; and

determine a body cavity being operated on by the first surgical device and the second surgical device, wherein the correlation is based on the body cavity being operated on by the first surgical device and the second surgical device, and wherein the improved surgical outcome comprises better sealing and less bleeding within the body cavity being operated on by the first surgical device and the second surgical device.

6. The surgical system of claim 2 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device;

receive a second signal from the second surgical device; and

determine a cost associated with the use of the first surgical device and the use of the second surgical device, wherein the correlation is based on the cost associated with the use of the first surgical device and the use of the second surgical device, and wherein the improved surgical outcome comprises a reduced cost of a surgical procedure performed by the first surgical device and the second surgical device.

7. The surgical system of claim 6 , wherein the control program update comprises an optimal product mix for the first surgical device and the second surgical device.

8. The surgical system of claim 7 , wherein the optimal product mix comprises a recommended cartridge to be used by the first surgical device and the second surgical device during the surgical procedure.

9. The surgical system of claim 8 , wherein the recommended cartridge comprises a particular type of staple.

10. A surgical system comprising:

a plurality of surgical devices distributed across a plurality of medical facilities, wherein each surgical device of the plurality of surgical devices is configured to generate and transmit signals; and

a surgical hub configured to be communicably coupled to the plurality of surgical devices, wherein the surgical hub comprises a processor and a memory coupled to the processor, the memory storing instructions that, when executed by the processor, cause the surgical system to:

detect a connection of a first surgical device of the plurality of surgical devices in a first medical facility of the plurality of medical facilities;

receive operational parameters associated with a historical use of the first surgical device;

generate a control program update for the first surgical device based on the received operational parameters, wherein the control program update is determined to improve a future surgical outcome associated with a use of the first surgical device; and

implement the control program update via the first surgical device to improve the future surgical outcome associated with a use of the first surgical device.

11. The surgical system of claim 10 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a signal from the first surgical device; and

determine a type of surgical procedure performed by the first surgical device, and wherein the improved future surgical outcome comprises better sealing and less bleeding during the type of surgical procedure performed by the first surgical device.

12. The surgical system of claim 10 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device; and

determine a type of tissue operated on by the first surgical device, and wherein the improved future surgical outcome comprises better sealing and less bleeding of the type of tissue operated on by the first surgical device.

13. The surgical system of claim 10 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device; and

determine a body cavity being operated on by the first surgical device, and wherein the improved future surgical outcome comprises better sealing and less bleeding within the body cavity being operated on by the first surgical device.

14. The surgical system of claim 10 , wherein the instructions, when executed by the processor, further cause the processor to:

receive a first signal from the first surgical device; and

determine a cost associated with the use of the first surgical device, and wherein the improved future surgical outcome comprises a reduced cost of a surgical procedure performed by the first surgical device.

15. The surgical system of claim 14 , wherein the control program update comprises an optimal product mix for the first surgical device.

16. The surgical system of claim 15 , wherein the cost effective optimal product mix comprises a recommended cartridge to be used by the first surgical device during the surgical procedure.

17. The surgical system of claim 16 , wherein the recommended cartridge comprises a particular type of staple.

18. A computer-implemented method for generating a control program update to improve a surgical outcome associated with a plurality of surgical devices distributed across a plurality of medical facilities, wherein the plurality of surgical devices are configured for use during a surgical procedure, the method comprising:

detecting a connection of a first surgical device of the plurality of surgical devices in a first medical facility of the plurality of medical facilities;

receiving operational parameters associated with a historical use of the first surgical device;

generating a control program update for the first surgical device based on the received operational parameters, wherein the control program update is determined to improve a future surgical outcome associated with a use of the first surgical device; and

implementing the control program update via the first surgical device to improve the future surgical outcome associated with the use of the first surgical device.

19. The computer-implemented method of claim 18 , further comprising:

detecting a connection of a second surgical device of the plurality of surgical devices in a second medical facility of the plurality of medical facilities;

correlating the second surgical device to the first surgical device; and

implementing the control program update via the second surgical device to improve a surgical outcome associated with a use of the second surgical device, wherein implementing the control program update via the second surgical device is based on the correlation of the second surgical device to the first surgical device.

20. The computer-implemented method of claim 19 , further comprising determining a type of surgical procedure performed by the first surgical device and the second surgical device, wherein the correlation of the second surgical device to the first surgical device is based on the determined type of surgical procedure performed by the first surgical device and the second surgical device, and wherein the improved surgical outcome comprises better sealing and less bleeding during the type of surgical procedure performed by the first surgical device and the second surgical device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2022
From: SHELTON, FREDERICK E., IV; HARRIS, JASON L.; ARONHALT, TAYLOR W.
To: ETHICON LLC
Reel/Frame 061632/0540 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2022
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 061875/0525 →