System and method for controlling the performance of a pneumatically sealed trocar
US-10702306-B2 · Jul 7, 2020 · US
US12397123B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12397123-B2 |
| Application number | US-202117155478-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 22, 2021 |
| Priority date | Jan 22, 2021 |
| Publication date | Aug 26, 2025 |
| Grant date | Aug 26, 2025 |
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A surgical gas delivery system is disclosed for gas sealed insufflation and recirculation during an endoscopic or laparoscopic surgical procedure, which includes a gaseous sealing manifold for communicating with a gas sealed access port, a compressor for recirculating gas through the gaseous sealing manifold, and a source of UVC irradiation for sterilizing at least the gas recirculating through the gaseous sealing manifold.
Opening claim text (preview).
What is claimed is: 1. A surgical gas delivery system for gas sealed insufflation and recirculation comprising: a) a gaseous sealing manifold for communicating with a gas sealed access port; b) a compressor for recirculating gas through the gaseous sealing manifold; c) an intercooler or a condenser interposed between the compressor and the gaseous sealing manifold for conditioning the gas recirculating through the intercooler or the condenser, wherein the gas recirculating through the intercooler or the condenser passes through the intercooler or the condenser twice, once before entering the compressor and then again after exiting the compressor, wherein: the gas flows directly from an outlet of the gaseous sealing module to a first inlet of the intercooler or the condenser, and then directly from a first outlet of the intercooler or the condenser to an inlet of the compressor during a first pass through the intercooler or the condenser, and the gas then flows directly from an outlet of the compressor to a second inlet of the intercooler or the condenser, and then directly from a second outlet of the intercooler or the condenser to an inlet of the gaseous sealing module during a second pass through the intercooler or the condenser; and d) a source of UV irradiation located within the intercooler or the condenser for sterilizing the gas recirculating through the intercooler or the condenser during the first pass and during the second pass. 2. The system recited in claim 1 , wherein the source of UV irradiation includes at least one light source that is adapted and configured to generate UV radiation at a wavelength of about between 240-350 nm. 3. The system recited in claim 2 , wherein the at least one light source is an LED light source or a florescent light source. 4. The system recited in claim 1 , wherein a source of surgical gas communicates with the gaseous sealing manifold. 5. The system recited in claim 4 , further comprising an insufflation manifold for communicating with the gas sealed access port, and wherein the insufflation manifold communicates with the source of surgical gas. 6. The system recited in claim 5 , wherein the insufflation manifold is adapted and configured to communicate with the gas sealed access port and with a valve sealed access port. 7. The system recited in claim 5 , wherein gas from the source of surgical gas flows through a high pressure regulator and a gas heater before the gas is delivered to the gaseous sealing manifold and the insufflation manifold.
cooled · CPC title
Ultraviolet radiation · CPC title
Access ports, e.g. toroid shape introducers for instruments or hands (access sites for liquids A61M39/0247) · CPC title
electrically actuated · CPC title
Proportional · CPC title
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