Medical device guidewire with helical cutout and coating
Abstract
A guidewire for a medical device is disclosed. The guidewire includes an elongate body, a proximal connector assembly, a corewire, and a sensor assembly. The body has an annular wall that defines an interior lumen. The proximal connector assembly is coupled to the body and is configured for connection to a medical positioning system. The corewire extends through the lumen. The sensor assembly located on a distal end of the corewire is electrically connected to the proximal connector assembly. The sensor assembly is configured to generate an electrical signal indicative of a position of the sensor assembly in a reference coordinate system defined by the medical positioning system. The body includes a helical cutout extending over a predetermined length of the body. The helical cutout is configured to increase the flexibility of the body over the predetermined length of the body.
Claims
exact text as granted — not AI-modified1 .- 19 . (canceled)
20 . A guidewire comprising:
a corewire including a proximal portion and a distal portion; a sensor assembly located on the distal portion of the corewire, the sensor assembly being electrically connected by a pair of electrical conductors to a proximal connector assembly; and a D-shaped pin including a proximal portion and distal portion, wherein the distal portion of the D-shaped pin is connected to the proximal portion of the corewire and the proximal portion of the D-shaped pin is connected to the proximal connector assembly; and a pair of longitudinally extending electrical conductors disposed between a flattened surface of the D-shaped geometrically configured pin and an inner surface of the proximal connector.
21 . The guidewire of claim 20 , further comprising an electrically insulating structure that surrounds the corewire and insulates the corewire from the pair of electrical conductors.
22 . The guidewire of claim 21 , wherein the insulating structure that surrounds the corewire comprises a tube formed from a heat shrink material.
23 . The guidewire of claim 21 , wherein the insulating structure that surrounds the corewire comprises a coating.
24 . The guidewire of claim 21 , wherein the electrically insulating structure electrically isolates the corewire from the pair of electrical conductors.
25 . The guidewire of claim 20 , further comprising:
a plug coupled with a distal end of the corewire, wherein the plug has a distal, non-traumatic tip portion.
26 . The guidewire of claim 20 , wherein the sensor assembly and the pair of electrical conductors are electrically connected at a pair of connection nodes, further including:
an alignment tube proximal of the sensor assembly configured in size to enclose the connection nodes, to thereby protect the connection nodes from external forces.
27 . The guidewire of claim 26 , wherein the electrically insulating structure electrically isolates the corewire from the pair of connection nodes.
28 . A guidewire comprising:
a corewire including a proximal portion and a distal portion; a sensor assembly located on the distal portion of the corewire, the sensor assembly being electrically connected by a pair of electrical conductors to a proximal connector assembly, the proximal connector assembly being connected to a proximal end of the corewire; and an electrically insulating structure that surrounds the corewire and insulates the corewire from the pair of electrical conductors; a D-shaped pin including a proximal portion and distal portion, wherein the distal portion of the D-shaped pin is connected to the proximal portion of the corewire and the proximal portion of the D-shaped pin is connected to the proximal connector assembly; and a pair of longitudinally extending electrical conductors disposed between a flattened surface of the D-shaped geometrically configured pin and an inner surface of the proximal connector.
29 . The guidewire of claim 28 , wherein the proximal portion of the corewire is disposed proximally with respect to a distal end of the proximal connector assembly.
30 . The guidewire of claim 29 , wherein a distal end of the D-shaped pin is disposed proximally with respect to the distal end of the proximal connector assembly.
31 . The guidewire of claim 28 , wherein the insulating structure that surrounds the corewire comprises a tube formed from a heat shrink material.
32 . The guidewire of claim 28 , wherein the insulating structure that surrounds the corewire comprises a coating.
33 . The guidewire of claim 28 , wherein the sensor assembly and the pair of electrical conductors are electrically connected at a pair of connection nodes, further including:
an alignment tube proximal of the sensor assembly configured in size to enclose the connection nodes, to thereby protect the connection nodes from external forces.
34 . The guidewire of claim 28 , wherein the electrically insulating structure electrically isolates the corewire from the pair of electrical conductors.
35 . A guidewire comprising:
an elongate body formed from a tube including proximal and distal end portions, the elongate body further including an annular wall that defines an interior lumen; a proximal connector assembly connected to the proximal end portion of the elongate body, the proximal connector assembly being configured for connection to a medical positioning system; a corewire including proximal and distal end portions, the corewire extending through the interior lumen; a sensor assembly located on the distal end portion of the corewire and distal of the elongate body, the sensor assembly being electrically connected by a pair of electrical conductors to the proximal connector assembly; and a pin including proximal and distal end portions, wherein the distal end portion of the pin is connected to the proximal end portion of the corewire and the proximal end portion of the pin is connected to a proximal end of the proximal connector assembly.
36 . The guidewire of claim 35 , wherein the proximal end portion of the core wire is disposed proximally with respect to a distal end of the proximal connector assembly.
37 . The guidewire of claim 36 , wherein the distal end portion of the pin is disposed proximally with respect to the distal end of the proximal connector assembly.
38 . The guidewire of claim 36 , wherein the proximal end portion of the elongate body has a reduced diameter with respect to the distal end portion, and the distal end of the proximal connector assembly is connected to the proximal end portion of the elongate body.
39 . The guidewire of claim 35 , further comprising:
a coil positioned proximally with respect to the sensor assembly, the coil being coaxial with the axis of the elongate body; and an alignment tube disposed between the sensor assembly and the coil, the alignment tube being coaxial with the axis of the elongate body.Join the waitlist — get patent alerts
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