发明名称 Methods and devices for targeted injection of microspheres
摘要 A “Smart Micro-catheter” (SMC) system comprising a device for controlled particle release and drug delivery into a blood vessel, hepatic artery or any patho-physiological target is disclosed. Methods of using the micro-catheter system for optimal targeted delivery of therapeutic microspheres comprising using subject-specific computer simulations of particle-hemodynamics are further provided.
申请公布号 US9149605(B2) 申请公布日期 2015.10.06
申请号 US201013387551 申请日期 2010.07.28
申请人 发明人 Kleinstreuer Clement
分类号 A61M31/00;A61M25/01;A61B19/00;A61B17/00;A61B17/12;A61M25/00;A61M25/04;A61N5/10;A61B6/00;A61B6/03 主分类号 A61M31/00
代理机构 Jenkins, Wilson, Taylor & Hunt, P.A. 代理人 Jenkins, Wilson, Taylor & Hunt, P.A.
主权项 1. A method of delivering an active agent to a target area of a body of a subject in need thereof, comprising: providing a smart micro-catheter (SMC) system for directing into a blood vessel of the subject a controlled stream comprising an active agent, wherein the SMC system comprises a SMC device with an adaptive nozzle inserted in the blood vessel; and regulating a release position of the controlled stream from the SMC system to release the active agent in a predetermined manner such that they are delivered to the target area of the body of the subject, wherein the SMC system comprises: (a) a source of active agent;(b) an injection system in flow communication with the source of active agent; and(c) a SMC device in flow communication with the injection system, comprising: (i) a tube having an inlet at one end, an outlet at an opposing end, and a wall joining the inlet and the outlet;(ii) an adaptive nozzle positioned within the blood vessel and having a nozzle inlet engaged with the tube outlet and a nozzle tip outlet distal to the tube outlet, wherein the nozzle tip outlet and the nozzle inlet are in flow communication and adapted for passage of a stream comprising an active agent therebetween; and(iii) one or more actuators operationally linked to the adaptive nozzle, wherein the one or more actuators can position the nozzle tip outlet and thereby regulate the stream release from the SMC device, wherein the catheter is manually operated to achieve the desired axial position and electro-mechanically operated to achieve the desired radial position, and wherein the catheter further comprises two stent rings with adjustable tripod struts and SMA-wires, folded in the nozzle area, which are deployed by electric current to position the nozzle plus nozzle tip according to the predetermined coordinates via a feedback control loop based on position sensor signals and a subject-specific microprocessor program.
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