Device viewable under an imaging beam
The invention provides a stent made from a material operable to perform a stent's desired therapeutic functions, and also made from a material that has a radiopacity that substantially preserves the appearance of the stent when the stent is viewed under a CT imaging beam. Such a stent can allow for follow-up of the stent and the surrounding blood-vessel on CT.
1. A medical device, comprising:
a component for insertion into a lumen of a blood or lymph vessel, the component having a structure to provide three-dimensional visualization of the lumen when said component is inserted into said lumen and viewed under an imaging beam, said component having:
(a) a single coating layer including:
(i) a polymer selected from a group consisting of: a hydrophilic polymer, a hydrophobic polymer, and a fatty acid polymer, and
(ii) a restenosis inhibiting drug;
(b) a density enhancing radiologic opacifier embedded into said single coating layer, said single coating layer and said embedded opacifier material together providing a first Hounsfield image density suitable for viewing said component under an imaging beam during insertion of said component into said lumen,
said density enhancing radiologic opacifier material configured to elute from said single coating layer after insertion into said lumen to provide a second Hounsfield image density lower than said first Hounsfield image density, said second Hounsfield image density being less than about 1200 Hounsfield Units, suitable for viewing a portion said lumen surrounding said component under said imaging beam.
2. The medical device of claim 1 , said restenosis inhibiting drug configured to elute at a rate proportional to a rate of elution of said density enhancing radiologic opacifier material, such that residual radiographic density measurements of said component provide a measure of said restenosis inhibiting drug still retained within said polymer.
3. The medical device of claim 1 , wherein said density enhancing radiologic opacifier is configured to elute from said component by one of bulk erosion and surface erosion.
4. The medical device of claim 1 , wherein said density enhancing radiologic opacifier is a lyophilized iodinated contrast.
5. The medical device of claim 1 , wherein said component is constructed of one or more of: stainless steel, carbon fibre, and a plastic.
6. The medical device of claim 1 , wherein said component comprises a stent.
7. The medical device of claim 1 , wherein said component comprises a microcoil for insertion into an aneurysm in said lumen.
8. The stent of claim 1 , wherein said imaging beam comprises CT.
9. The stent of claim 1 , wherein said imaging beam comprises MR.