Patent · US9789285B1 · B1 · US
Wiping mechanism for a Y-connector
- (11) Publication number
- US9789285B1
- (21) Application number
- 14/216,076
- (22) Filing date
- 2014-03-17
- (30) Priority date
- 2013-03-15
- (43) Publication date
- 2017-10-17
- (45) Date of grant
- 2017-10-17
- (51) IPC
- A61M 25/01; A61M 39/06
- (52) CPC
- A61M Devices for introducing media into, or onto, the body; devices for transducing body media or for taking media from the body; devices for producing or ending sleep or stupor {}: 25/0116, 2025/0019, 2039/062, 2210/12, 25/0113, 25/09041, 39/06
- A61B Diagnosis; surgery; identification: 19/34, 2017/00398, 2034/301, 34/30, 90/70
- (73) Assignee
- Corindus Inc
- (72) Inventors
- Steven J. Blacker
- (54) Title
- Wiping mechanism for a Y-connector
- (57) Abstract
A robotic catheter system including a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis. A wiper assembly includes a first wiping surface moving toward and away from the longitudinal axis. A controller provides a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated device is being withdrawn from a patient.
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Claims (9)
- A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; and a Y-connector and a hemostasis valve, the wiping surface being positioned intermediate the Y-connector and hemostasis valve and the first drive mechanism; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the first wiping surface is on an exterior of a roller wheel that rotates about an axis that is perpendicular to the longitudinal axis of the elongated medical device.
- The robotic catheter system of claim 1, wherein the first wiping surface is an absorbent material.
- The robotic catheter system of claim 1, wherein the controller automatically provides a signal to a motor to move the first wiping surface away from the elongated medical device when the drive mechanism is driving the elongated medical device into a patient.
- The robotic catheter system of claim 1, further including a cleaner depositing fluid on to the elongated medical device as the medical device is being withdrawn from the patient.
- The robotic catheter system of claim 1, wherein the elongated medical device is a flexible guide wire.
- The robotic catheter system of claim 1, wherein the wheel is driven by a motor when the elongated medical device is being withdrawn from the patient.
- A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; and a cleaner depositing a fluid on to the elongated medical device as the medical device is being withdrawn from the patient; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the fluid is deposited by a remote controlled dispenser and the rate of fluid flow is determined by the controller and a function of one or more of a user input, speed in which the elongated medical device is being withdrawn.
- A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis, the wiper assembly includes a first arm supporting the first wiping surface, a second arm supporting a second wiping surface, and a linkage operatively connected to the motor and moving the arms toward and away from one another to move the first wiping surface and the second wiping surface toward and away from one another; and a sensor configured to sense moisture on the first wiping surfaces surface, the sensor providing a signal to a display on a remote station to alert a user that the first wiping surface is saturated.
- A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; and a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the wiper assembly includes a first arm supporting the first wiping surface, a second arm supporting a second wiping surface, and a linkage operatively connected to the motor and moving the arms toward and away from one another to move the first wiping surface and the second wiping surface toward and away from one another.
Description
Guide wires are used to facilitate percutaneous procedures in which the guide wire is threaded into a human patient using X-ray guidance. The guide wires are manually threaded by a physician or other medical personnel but this requires that the operator be adjacent to the patient and so be in the immediate vicinity of the X-ray radiation providing the image used for guidance. Systems have been developed, such as that disclosed in U.S. Pat. No. 7,887,549 incorporated herein by reference, which allow the guide wires to be threaded into the patient robotically and thus allow the user or operator to be remote from the patient and the X-ray radiation. When the guide wire has been threaded into a blood vessel of a human patient it may be become contaminated with blood and if it is threaded into some other type of vessel it may become contaminated with some other bodily fluid. In the course of a procedure involving a guide wire it may become useful or necessary to withdraw it through the Y-connector and/or hemostasis valve.
In one embodiment a robotic catheter system including a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis. A wiper assembly includes a first wiping surface moving toward and away from the longitudinal axis. A controller provides a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated device is being withdrawn from a patient
Citations (10)
- US3721252A
- US20070260115A1
- US20020111585A1
- US20090322543A1
- US20110313415A1
- US20110087224A1
- US20120197200A1
- US20140066900A1
- US20140066899A1
- US20140171863A1
Record as JSON
{
"publication_number": "US9789285B1",
"country": "US",
"kind": "B1",
"title": "Wiping mechanism for a Y-connector",
"abstract": "A robotic catheter system including a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis. A wiper assembly includes a first wiping surface moving toward and away from the longitudinal axis. A controller provides a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated device is being withdrawn from a patient.",
"claims": [
"1. A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; and a Y-connector and a hemostasis valve, the wiping surface being positioned intermediate the Y-connector and hemostasis valve and the first drive mechanism; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the first wiping surface is on an exterior of a roller wheel that rotates about an axis that is perpendicular to the longitudinal axis of the elongated medical device.",
"2. The robotic catheter system of claim 1, wherein the first wiping surface is an absorbent material.",
"3. The robotic catheter system of claim 1, wherein the controller automatically provides a signal to a motor to move the first wiping surface away from the elongated medical device when the drive mechanism is driving the elongated medical device into a patient.",
"4. The robotic catheter system of claim 1, further including a cleaner depositing fluid on to the elongated medical device as the medical device is being withdrawn from the patient.",
"5. The robotic catheter system of claim 1, wherein the elongated medical device is a flexible guide wire.",
"6. The robotic catheter system of claim 1, wherein the wheel is driven by a motor when the elongated medical device is being withdrawn from the patient.",
"7. A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; and a cleaner depositing a fluid on to the elongated medical device as the medical device is being withdrawn from the patient; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the fluid is deposited by a remote controlled dispenser and the rate of fluid flow is determined by the controller and a function of one or more of a user input, speed in which the elongated medical device is being withdrawn.",
"8. A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis, the wiper assembly includes a first arm supporting the first wiping surface, a second arm supporting a second wiping surface, and a linkage operatively connected to the motor and moving the arms toward and away from one another to move the first wiping surface and the second wiping surface toward and away from one another; and a sensor configured to sense moisture on the first wiping surfaces surface, the sensor providing a signal to a display on a remote station to alert a user that the first wiping surface is saturated.",
"9. A robotic catheter system, the system comprising: a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis; a wiper assembly having a first wiping surface moving toward and away from the longitudinal axis; and a controller providing a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated medical device is being withdrawn from a patient; wherein the first wiping surface contacts a surface of the elongated medical device to remove fluid from the elongated medical device; wherein the wiper assembly includes a first arm supporting the first wiping surface, a second arm supporting a second wiping surface, and a linkage operatively connected to the motor and moving the arms toward and away from one another to move the first wiping surface and the second wiping surface toward and away from one another."
],
"description_excerpt": "Guide wires are used to facilitate percutaneous procedures in which the guide wire is threaded into a human patient using X-ray guidance. The guide wires are manually threaded by a physician or other medical personnel but this requires that the operator be adjacent to the patient and so be in the immediate vicinity of the X-ray radiation providing the image used for guidance. Systems have been developed, such as that disclosed in U.S. Pat. No. 7,887,549 incorporated herein by reference, which allow the guide wires to be threaded into the patient robotically and thus allow the user or operator to be remote from the patient and the X-ray radiation. When the guide wire has been threaded into a blood vessel of a human patient it may be become contaminated with blood and if it is threaded into some other type of vessel it may become contaminated with some other bodily fluid. In the course of a procedure involving a guide wire it may become useful or necessary to withdraw it through the Y-connector and/or hemostasis valve.\n\nIn one embodiment a robotic catheter system including a first drive mechanism configured to interact with an elongated medical device to cause the elongated medical device to move along its longitudinal axis. A wiper assembly includes a first wiping surface moving toward and away from the longitudinal axis. A controller provides a signal to a motor to move the first wiping surface toward the longitudinal axis when the elongated device is being withdrawn from a patient",
"cpc": [
"A61M 25/0116",
"A61B 19/34",
"A61B 2017/00398",
"A61B 2034/301",
"A61B 34/30",
"A61B 90/70",
"A61M 2025/0019",
"A61M 2039/062",
"A61M 2210/12",
"A61M 25/0113",
"A61M 25/09041",
"A61M 39/06"
],
"ipc": [
"A61M 25/01",
"A61M 39/06"
],
"assignees": [
"Corindus Inc"
],
"inventors": [
"Steven J. Blacker"
],
"filing_date": "2014-03-17",
"publication_date": "2017-10-17",
"grant_date": "2017-10-17",
"priority_date": "2013-03-15",
"application_number": "US-201414216076-A",
"family_id": "60022586",
"cited_by_count": 30,
"citations": [
"US3721252A",
"US20070260115A1",
"US20020111585A1",
"US20090322543A1",
"US20110313415A1",
"US20110087224A1",
"US20120197200A1",
"US20140066900A1",
"US20140066899A1",
"US20140171863A1"
]
}
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