Dual pump arthroscopic irrigation/aspiration system with outflow control
US-10369270-B2 · Aug 6, 2019 · US
US12018671B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12018671-B2 |
| Application number | US-202318327361-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 1, 2023 |
| Priority date | Sep 2, 2020 |
| Publication date | Jun 25, 2024 |
| Grant date | Jun 25, 2024 |
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Pump systems with pinch valves for surgical procedures. At least some of the example embodiments are pump systems including a stationary housing defining a front face. A tube support extends outwardly from the front face for aligning and supporting a first tube and a second tube. At least one pinch member is movable relative to the tube support by a power actuator operably coupled to the at least one pinch member and configured to have three orientations that define: a first arrangement of the pinch member relative to the tube support configured to pinch closed the first tube, a second arrangement of the at least one pinch member relative to the tube support configured to pinch closed the second tube, and a third arrangement of the at least one pinch member relative to the tube support configured to pinch closed neither the first tube nor the second tube.
Opening claim text (preview).
What is claimed is: 1. A method of operating a pump system including an outflow pump, the method comprising the steps of: providing a stationary housing defining an internal volume and a front face outside the internal volume extending in a first direction and a second direction transverse to the first direction and including at least one tube support outside the internal volume extending outwardly from the front face for aligning and supporting a first tube and a second tube; moving at least one pinch member relative to the at least one tube support using a power actuator operably coupled thereto amongst three orientations, the at least one tube support includes a t-shaped bracket extending outwardly from the front face and the power actuator includes a solenoid assembly coupled to a sliding shaft, the three orientations including: a first arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed the first tube, a second arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed the second tube, and a third arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed neither the first tube nor the second tube; providing a first tube notch defined by the t-shaped bracket and a second tube notch defined by the t-shaped bracket, the at least one pinch member includes a first pinch bar adjacent the first tube notch and a second pinch bar adjacent the second tube notch each extending radially from a longitudinal central axis and offset from one another along the longitudinal central axis; moving the sliding shaft extending along the longitudinal central axis through the front face and out of the internal volume of the stationary housing and into a bracket cavity defined by the t-shaped bracket using the solenoid assembly between one of: a first translational position to move the at least one pinch member to the first arrangement, a second translational position to move the at least one pinch member to the second arrangement, and a third translational position to move the at least one pinch member to the third arrangement; moving the first pinch bar toward the front face in response to the sliding shaft moving to the first translational position; moving the second pinch bar away from the front face toward a support beam of the t-shaped bracket spaced from the front face and extending along the second direction in response to the sliding shaft moving to the second translational position; and maintaining spacing of the first pinch bar from the front face of a first notch width and of the second pinch bar from the front face of a second notch width when the sliding shaft is in the third translational position. 2. A method of operating a pump system including an outflow pump, the method comprising the steps of: providing a stationary housing defining an internal volume and a front face outside the internal volume extending in a first direction and a second direction transverse to the first direction and including at least one tube support outside the internal volume extending outwardly from the front face for aligning and supporting a first tube and a second tube; moving at least one pinch member relative to the at least one tube support using a power actuator operably coupled thereto amongst three orientations, the at least one tube support includes a t-shaped bracket extending outwardly from the front face and the power actuator includes a solenoid assembly coupled to a sliding shaft, the solenoid assembly includes a first solenoid and a second solenoid, the three orientations including: a first arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed the first tube, a second arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed the second tube, and a third arrangement of the at least one pinch member relative to the at least one tube support configured to pinch closed neither the first tube nor the second tube; providing a first tube notch defined by the t-shaped bracket and a second tube notch defined by the t-shaped bracket; moving the sliding shaft extending along a longitudinal central axis through the front face and out of the internal volume of the stationary housing and into a bracket cavity defined by the t-shaped bracket using the solenoid assembly between one of: a first translational position to move the at least one pinch member to the first arrangement, a second translational position to move the at least one pinch member to the second arrangement, and a third translational position to move the at least one pinch member to the third arrangement; energizing a first coil of the first solenoid; moving a first solenoid core of the first solenoid in a first core direction along a first core axis in parallel to the longitudinal central axis from a first core initial position corresponding to the third translational position of the sliding shaft to a first core extended position corresponding to the first translational position of the sliding shaft in response to the first coil being energized; returning the first solenoid core to the first core initial position in response to the first coil not being energized; energizing a second coil of the second solenoid; moving a second solenoid core of the second solenoid in a second core direction along a second core axis in parallel to the longitudinal central axis opposite the first core direction from a second core initial position corresponding to the third translational position of the sliding shaft to a second core extended position corresponding to the second translational position of the sliding shaft in response to the second coil being energized; and returning the second solenoid core to the second core initial position in response to the second coil not being energized.
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