Nova Patents
WO0047270A2

Medical connector

Abstract

A medical connector (110) for connecting a cardiac assist device to vascular tissue includes a base connector (112) adapted to be attached to the cardiac assist device (114) and a vascular tissue connector (116) adapted to be attached to the vascular tissue. A retaining ring (238) holds the base connector (112) to the vascular tissue connector (116). The medical connector (110) also includes an alignment feature (410) and an engagement feature (412), each defined by a portion of either the base connector (112) or the vascular tissue connector (116) and a portion of the retaining ring (238). The alignment feature (410) causes the vascular tissue connector (116) to axially self-align with the base connector (112). The engagement feature (412) causes the retaining ring (238) to move first into a biased position and then to snap into engagement when the vascular tissue (116) attached to the base connector (112) in an axially-oriented motion.

WO0047270A2, drawing sheet 1
Sheet 1 of 10

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

26 claims: 5 independent, 21 dependent

  1. 1
    CLAIMS 1. A medical connector for connecting vascular tissue to a medical device, said connector comprising:a base connector adapted to be attached to the medical device;and, a vascular tissue connector adapted to be attached to the vascular tissue, with said base connector and said vascular tissue connector cooperating with each other so as to cause each connector to axially align relative to each other when initially brought into contact with each other and engage each other when moved in opposite, axially oriented, directions toward each other.
  2. 2
    A medical connector for connecting vascular tissue to a medical device, said connector comprising:a first connector half having a retaining ring having a rest position and a biased position;a second connector half having a retaining ring groove formed therein;and, an alignment feature and an engagement feature each defined by a portion of said connectors and a portion of said retaining ring, with said alignment feature causing said first connector to axially self-align with said second connector and with said engagement feature causing said retaining ring to move first into said biased position and then to snap into engagement within said retaining ring groove.
  3. 3
    A medical connector for connecting vascular tissue to a medical device, said connector comprising:a base connector adapted to be attached to the medical device, with said base connector defining an axis;a vascular tissue connector adapted to be attached to the vascular tissue, with said vascular tissue connector defining an axis;a retaining ring having a rest position and a biased position, with said retaining ring being housed within one of said vascular tissue connector and said base connector;a retaining ring groove formed on an outer circumference of the other of said base connector and said vascular tissue connector, with said groove being adapted to engage said retaining ring;and an alignment feature and an engagement feature each defined by a portion of one of said base connector and said vascular tissue connector and a portion of said retaining ring, with said alignment feature causing said vascular tissue connector to axially self-align with said base connector and with said engagement feature causing said retaining ring to move first into said biased position and then to return at least partially toward the unbiased position so as to snap into engagement within said retaining ring groove when said vascular tissue connector attaches to said base connector in an axially oriented motion.
  4. 4
    The connector according to Claim 3 wherein said retaining ring comprises a beveled edge, with said beveled edge defining at least a portion of said alignment feature.
  5. 5
    The connector according to Claim 3 wherein one of said base connector and said vascular tissue connector comprises a leading edge defining at least a portion of said alignment feature, with said leading edge comprising a radiused edge and a chamfered portion conjoined with and extending away from said radiused edge.
  6. 6
    The connector according to Claim 3 wherein a portion of said retaining ring is exposed through one of said vascular tissue connector and said base connector so that said retaining ring can be moved to said biased position to facilitate removal of said vascular tissue connector from said base connector.
  7. 7
    The connector according to Claim 3 wherein said retaining ring is in said rest position when said retaining ring is engaged within said retaining ring groove.
  8. 8
    The connector according to Claim 3 wherein one of said vascular tissue connector and said base connector comprises an annular body having an end face, with said end face being completely continuous, thereby reducing tissue snagging when said vascular tissue connector is brought into proximity with said base connector.
  9. 9
    The connector according to Claim 3 wherein one of said vascular tissue connector and said base connector comprises an annular body having an inner and outer surface, with said inner surface having an annular groove formed therein for housing said retaining ring, with said outer surface having an opening formed therein extending through to said annular groove of said inner surface to allow a portion of said retaining ring through said body.
  10. 10
    The connector according to Claim 3 further comprising a plurality of o-ring seals disposed at an interface between said base connector and said vascular tissue connector when connected theretogether, with said interface defining an o-ring seal groove for receiving said o-ring seals in a generally co-axial alignment.
  11. 11
    The connector according to Claim 10 wherein an o-ring seal extends past said o- ring seal groove a predetermined distance.
  12. 12
    The connector according to Claim 11 wherein said predetermined distance is defined by about one-half a diameter of said o-ring seal.
  13. 13
    The connector according to Claim 5 wherein said retaining ring groove is formed adjacent said chamfered portion.
  14. 14
    The connector according to Claim 3 further comprising a tissue connection member housed within said vascular tissue connector, with said tissue connection member being adapted to be attached to the vascular tissue.
  15. 15
    The connector according to Claim 3 wherein said base connector and said vascular tissue connector each have a body, with each said body having a substantially minimal profile relative to the vascular tissue.
  16. 16
    The connector according to Claim 3 in combination with the medical device.
  17. 17
    The connector according to Claim 3 further comprising a plug connector adapted to be connected to said vascular tissue connector, with said plug connector plugging the vascular tissue when said plug connector is attached to said vascular tissue connector, to test for leakage between said vascular tissue connector and the vascular tissue when said vascular tissue connector is attached to the vascular tissue.
  18. 18
    The connector according to Claim 17 wherein said plug connector includes a pressure port formed therein.
  19. 19
    A medical connector for connecting a blood vessel to a cardiac assist device, said connector comprising:a base connector adapted to be connected to the cardiac assist device, with said base connector comprising: an annular body defining an axis, with said body having a substantially minimal profile relative to the blood vessel connector;a leading edge formed on said body comprising a radiused edge and a chamfered portion conjoined with and extending away from said radiused edge;an o-ring seal groove formed in said body adjacent said radiused edge;a plurality of o-ring seals disposed in said o-ring seal groove in substantially co-axial alignment, with an o-ring extending past said o-ring seal groove a predetermined distance;and, a retaining ring groove formed on an outer circumference of said body adjacent said chamfered portion;and, a vascular tissue connector adapted to be attached to the vascular tissue, with said vascular tissue comprising: an annular body defining an axis, with said body having a substantially minimal profile relative to the vascular tissue connector;an end face formed on said body, with said end face being completely continuous, thereby reducing tissue snagging when said vascular tissue connector is brought into contact with said base connector;a retaining ring housed in said body, with said retaining ring having a rest position and a biased position and further having a beveled edge adjacent said end face, with said beveled edge cooperating with said leading edge of said base connector to axially self-align said vascular tissue connector with said base connector and causing said retaining ring to move first into said biased position and then to snap into engagement with said annular groove when said vascular tissue connector attaches to said base connector in an axially oriented motion;inner and outer surfaces defined by said annular body;an annular groove formed in said inner surface for housing said retaining ring;an opening extending from said outer surface through to said annular groove of said inner surface to allow a portion of said retaining ring through said body to facilitate removal of said vascular tissue connector from said base connector;and, a tissue connection member housed within said body, with said tissue connection member being adapted to be attached to the vascular tissue.
  20. 20
    The connector according to Claim 19 in combination with the cardiac assist device.
  21. 21
    A method of attaching a vascular tissue to a medical device utilizing a medical connector system having at least two connectors; with each connector comprising:a base connector defining an axis and being attached to the medical device;a vascular tissue connector defining an axis;a retaining ring housed within one of the vascular tissue connector and the base connector, the retaining ring having a rest position and a biased position;a retaining ring groove formed on an outer circumference of one of the base connector and the vascular tissue connector adapted to engage the retaining ring;a tissue connection member housed within the vascular tissue connector;and, an alignment feature and an engagement feature each defined by a portion of one of the base connector and the vascular tissue cormector and a portion of the retaining ring;with said method comprising the steps of: suturing a first tissue connection member, together with a first vascular tissue connector, to a first vascular tissue;positioning the medical device such that a first base connector aligns with the first vascular tissue connector to determine the required size of a second tissue connection member;conforming the second tissue connection member to the determined length;sewing the second tissue connection member to a second vascular tissue;positioning the medical device such that both base connectors align with both vascular tissue connectors, respectively;and, axially moving each base connector relative to each vascular tissue connector, respectively, in an axial direction.
  22. 22
    The method according to Claim 21 wherein the connector system further includes a plug connector, with said method further comprising the steps of:connecting the plug connector to the vascular tissue connector thereby plugging the vascular tissue;and, testing for leakage between the tissue connection member and the vascular tissue.
  23. 23
    The method according to Claim 22 wherein said testing step comprises the step of releasing a clamp from the vascular tissue to allow blood pressure to build in the vascular tissue connector
  24. 24
    The method according to Claim 22 wherein the plug connector includes a pressure port and wherein said testing step includes the step of injecting a solution through the pressure port thereby causing pressure to build in the vascular tissue connector.
  25. 25
    The method according to Claim 21 wherein the connector system further includes an installation tool, wherein said axially pushing step comprises the step of holding the vascular tissue connector with the installation tool.
  26. 26
    The method according to Claim 22 wherein the connector system further includes an removal tool, with said method further comprising the step of removing one of said vascular tissue connector and said plug connector with the removal tool.
Independent claims26