DRUG DELIVERY MEDICAL DEVICE
    61.
    发明专利

    公开(公告)号:CA2946195A1

    公开(公告)日:2010-01-21

    申请号:CA2946195

    申请日:2009-07-16

    Abstract: Provided is a coated implantable medical device, comprising: a substrate; and a coating disposed on said substrate, wherein said coating comprises at least one polymer and at least one pharmaceutical agent in a therapeutically desirable morphology and/or at least one active biological agent and optionally, one or more pharmaceutical carrying agents; wherein substantially all of pharmaceutical agent and/or active biological agent remains within said coating and on said substrate until the implantable device is deployed at an intervention site inside the body of a subject and wherein upon deployment of said medical device in the body of said subject a portion of said pharmaceutical agent and/or active biological agent is delivered at said intervention site along with at least a portion of said polymer and/or a at least a portion of said pharmaceutical carrying agents.

    DRUG DELIVERY MEDICAL DEVICE
    62.
    发明专利

    公开(公告)号:CA2730995A1

    公开(公告)日:2010-01-21

    申请号:CA2730995

    申请日:2009-07-16

    Abstract: Provided is a coated implantable medical device, comprising: a substrate; and a coating disposed on said substrate, wherein said coating comprises at least one polymer and at least one pharmaceutical agent in a therapeutically desirable morphology and/or at least one active biological agent and optionally, one or more pharmaceutical carrying agents; wherein substantially all of pharmaceutical agent and/or active biological agent remains within said coating and on said substrate until the implantable device is deployed at an intervention site inside the body of a subject and wherein upon deployment of said medical device in the body of said subject a portion of said pharmaceutical agent and/or active biological agent is delivered at said intervention site along with at least a portion of said polymer and/or a at least a portion of said pharmaceutical carrying agents.

    Drug delivery medical device
    63.
    发明专利

    公开(公告)号:AU2009270849A1

    公开(公告)日:2010-01-21

    申请号:AU2009270849

    申请日:2009-07-16

    Abstract: Provided is a coated implantable medical device, comprising: a substrate; and a coating disposed on said substrate, wherein said coating comprises at least one polymer and at least one pharmaceutical agent in a therapeutically desirable morphology and/or at least one active biological agent and optionally, one or more pharmaceutical carrying agents; wherein substantially all of pharmaceutical agent and/or active biological agent remains within said coating and on said substrate until the implantable device is deployed at an intervention site inside the body of a subject and wherein upon deployment of said medical device in the body of said subject a portion of said pharmaceutical agent and/or active biological agent is delivered at said intervention site along with at least a portion of said polymer and/or a at least a portion of said pharmaceutical carrying agents.

    HOLDER FOR ELECTRICALLY CHARGING A SUBSTRATE DURING COATING

    公开(公告)号:CA2667228A1

    公开(公告)日:2008-05-02

    申请号:CA2667228

    申请日:2007-10-23

    Abstract: A stent holder for mounting and electrically charging a stent during coat ing of the stent using dry particles, the particles comprising inert polymer s, pharmaceutical or biological agents, is provided. An assembly for support ing and electrically charging a stent during the coating of the stent using dry particles, the particles comprising inert polymers, pharmaceutical or bi ological agents, is provided. A chamber for creating an electrical field aro und a stent and for supporting, electrically charging, and exposing the sten t to dry particles, the particles comprising inert polymers, pharmaceutical or biological agents, is provided. A method for creating an electrical field around a stent and for supporting, electrically charging, and exposing the stent to dry particles comprising inert polymers, pharmaceutical or biologic al agents is provided.

    METHODS FOR TRANSFERRING SUPERCRITICAL FLUIDS IN MICROELECTRONIC AND OTHER INDUSTRIAL PROCESSES

    公开(公告)号:AU2003299658A1

    公开(公告)日:2004-08-30

    申请号:AU2003299658

    申请日:2003-12-08

    Abstract: A method of displacing a supercritical fluid from a pressure vessel (e.g., in a microelectronic manufacturing process), with the steps of: providing an enclosed pressure vessel containing a first supercritical fluid (said supercritical fluid preferably comprising carbon dioxide); adding a second fluid (typically also a supercritical fluid) to said vessel, with said second fluid being added at a pressure greater than the pressure of the first supercritical fluid, and with said second fluid having a density less than that of the first supercritical fluid; forming an interface between the first supercritical fluid and the second fluid; and displacing at least a portion of the first supercritical fluid from the vessel with the pressure of the second, preferably fluid while maintaining the interface therebetween.

    METHOD OF COATING MICROELECTRONIC SUBSTRATES

    公开(公告)号:AU2003294557A1

    公开(公告)日:2004-08-30

    申请号:AU2003294557

    申请日:2003-12-02

    Abstract: A method of coating a substrate comprises the steps of: (a) providing a substrate in an enclosed vessel, the substrate having a surface portion; (b) at least partially filling the enclosed vessel with a first supercritical fluid so that said first supercritical fluid contacts the surface portion, with the first supercritical fluid carrying or containing a coating component; then (c) adding a separate compressed gas atmosphere to the reaction vessel so that a boundary is formed between the first supercritical fluid and the separate compressed gas atmosphere, said separate compressed gas atmosphere having a density less than said first supercritical fluid; and then (d) displacing said first supercritical fluid from said vessel by continuing adding said separate compressed gas atmosphere to said vessel so that said boundary moves across said surface portion and a thin film of coating component is deposited on said microelectronic substrate.

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