OPTIMAL RADIOPAQUE CATHETER
A vascular catheter embedded with a radiopaque material providing a distinct, non-physiological pattern that may be easily detected on a radiograph. The radiopaque material may be embedded within the wall of the catheter in an open wound, helical formation. Detection of the catheter by x-ray is increased due to the non-physiological radiograph pattern and due to the increased presence of the radiopaque material. The non-physiological formation increases the radiopacity of the catheter, yet requires less radiopaque material than traditional radiopaque catheters. The non-physiological formation and decreased amount of radiopaque material provides for a more detectible and less rigid catheter that is resistant to kinks and occlusions.
1 . A vascular catheter, comprising:
a tubular member; and
a radiopaque material attached to or disposed within the tubular member in a wound helical pattern which, when viewed by x-ray produces a non-physiological pattern.
2 . The vascular catheter of claim 1 , further comprising a catheter adapter coupled to an end of the tubular member.
3 . The vascular catheter of claim 1 , wherein the radiopaque material is embedded within a wall of the tubular member.
4 . The vascular catheter of claim 3 , wherein the radiopaque material extends the length of the tubular member.
5 . The vascular catheter of claim 4 , wherein the radiopaque material further comprises a plurality of helical strands.
6 . The vascular catheter of claim 5 , wherein the plurality of helically wound strands are embedded within the wall of the tubular member and circumscribes the length of the tubular member.
7 . The vascular catheter of claim 6 , wherein the radiopaque material supports a portion of the tubular member.
8 . A method for optimizing the detection of a vascular catheter via x-ray detection; comprising:
providing a tubular member having an outer surface, an inner surface and a middle portion interposed between the inner and outer surfaces; and
coextruding a radiopaque material within the middle portion of the tubular member in a pattern which, when viewed by x-ray produces a non-physiological pattern;
wherein the tubular member is a vascular catheter.
9 . The method of claim 8 , further comprising the step of attaching a first end of the tubular member to a catheter adapter.
10 . The method of claim 9 , wherein the radiopaque material extends the length of the tubular member.
11 . The method of claim 10 , wherein the radiopaque material further comprises a plurality of strands wound in a helical pattern.
12 . The method of claim 11 , wherein the plurality of strands is embedded within the wall of the tubular member and circumscribes the length of the tubular member.
13 . The method of claim 12 , wherein the helical strands support a portion of the tubular member.
14 . A vascular catheter detectible by x-ray; comprising:
a tubular member having an outer surface, an inner surface and a middle portion interposed between the inner and outer surfaces; and
at least one strand of a radiopaque material coextruded within the middle portion of the tubular member;
wherein the radiopaque material displays a non-physiological pattern when exposed to x-ray film.
15 . The vascular catheter of claim 14 , further comprising a catheter adapter attached to an end of the tubular member.
16 . The vascular catheter of claim 14 , wherein the radiopaque material comprises a plurality of extruded strands in a wound helical pattern.
17 . The vascular catheter of claim 16 , wherein the plurality of coextruded strands is embedded within the middle portion of the tubular member such that no coextruded strand crosses over another coextruded strand.
18 . The vascular catheter of claim 17 , wherein the radiopaque material supports a portion of the tubular member.
19 . The vascular catheter of claim 18 , wherein the radiopaque material prevents the tubular member becoming kinked.
20 . The vascular catheter of claim 14 , wherein the placement of the radiopaque material provides at least one window through which a fluid within the tubular member can be observed.