n/a.
The present technology is generally related to connectors for implantable blood pumps.
Current connectors for implantable blood pumps, which connect a power source to the implantable blood pump, are manufactured within the implantable blood pump which requires high precision assembly to be carried out through most of the process. Moreover, body fluid egress into the driveline through the connector may result in complications.
The techniques of this disclosure generally relate to connectors for implantable blood pumps.
In one aspect, the present disclosure provides a furcated driveline connector configured to couple to an implantable blood pump.
In another aspect of this embodiment, the connector further includes a plurality of lumens, and a plurality of conductors disposed within the plurality of lumens.
In another aspect of this embodiment, the connector further includes a first branch opposite a second branch, each branch being the same length.
In another aspect of this embodiment, the connector includes and outer sheath, and wherein the plurality of lumens extends distally away from a distal end of the outer sheath.
In another aspect of this embodiment, wherein the connector further includes a strain relief, and wherein the strain relief includes silicone, and wherein the strain relief is at least one from the group consisting of filled with and over-molded with silicone.
In another aspect of this embodiment, the connector includes a plurality of orientation plugs coupled to a distal end of the plurality of lumens, wherein the orientation plugs are configured to align the plurality of conductors with corresponding conductors within the implantable blood pump.
In another aspect of this embodiment, the orientation plugs include a barb or smooth surface configured to engage the strain relief.
In another aspect of this embodiment, the strain relief increases in diameter as it extends distally from the distal end of the outer sheath.
In another aspect of this embodiment, the strain relief includes a slit extending through a midsection of the strain relief.
In another aspect of this embodiment, each of the orientation plugs extend to a same distal location of the connector.
In one aspect, a furcated driveline connector configured to couple to an implantable blood pump is included, the connector includes a first branch opposite and symmetric with a second branch, each branch including three lumens and a conductor disposed within each lumen.
In another aspect of this embodiment, each of the first branch and the second branch are the same length.
In another aspect of this embodiment, the connector further includes and outer sheath, and wherein the plurality of lumens extends distally away from a distal end of the outer sheath.
In another aspect of this embodiment, the connector further includes a strain relief, and wherein the strain relief includes silicone, and wherein the strain relief is at least one from the group consisting of filled with and over-molded with silicone.
In another aspect of this embodiment, the connector further includes a plurality of orientation plugs coupled to a distal end of the three lumens, wherein the orientation plugs are configured to align the conductors within the implantable blood pump.
In another aspect of this embodiment, the orientation plugs include a barb configured to engage the strain relief.
In another aspect of this embodiment, the strain relief increases in diameter as it extends distally from the distal end of the outer sheath.
In another aspect of this embodiment, the strain relief includes a slit extending through a midsection of the strain relief.
In another aspect of this embodiment, each of the orientation plugs extend to a same distal location of the connector.
In one aspect, a furcated driveline connector configured to couple to an implantable blood pump is included, the connector includes a first branch opposite and symmetric with a second branch, each branch including three lumens and a conductor disposed within each lumen, the connector having a length of between 1-3 inches and a width of 0.1-0.5 inches.
The details of one or more aspects of the disclosure are set forth in the accompanying drawings and the description below. Other features, objects, and advantages of the techniques described in this disclosure will be apparent from the description and drawings, and from the claims.
A more complete understanding of the present invention, and the attendant advantages and features thereof, will be more readily understood by reference to the following detailed description when considered in conjunction with the accompanying drawings wherein:
It should be understood that various aspects disclosed herein may be combined in different combinations than the combinations specifically presented in the description and accompanying drawings. It should also be understood that, depending on the example, certain acts or events of any of the processes or methods described herein may be performed in a different sequence, may be added, merged, or left out altogether (e.g., all described acts or events may not be necessary to carry out the techniques). In addition, while certain aspects of this disclosure are described as being performed by a single module or unit for purposes of clarity, it should be understood that the techniques of this disclosure may be performed by a combination of units or modules associated with, for example, a medical device.
Referring now to the drawings in which like reference designators refer to like elements, there is shown in
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It will be appreciated by persons skilled in the art that the present invention is not limited to what has been particularly shown and described herein above. In addition, unless mention was made above to the contrary, it should be noted that all of the accompanying drawings are not to scale. A variety of modifications and variations are possible in light of the above teachings without departing from the scope and spirit of the invention, which is limited only by the following claims.