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In vivo simulator for microwave treatment

机译:用于微波治疗的体内模拟器

摘要

Method and apparatus are provided for propagating microwave energy into heart tissues to produce a desired temperature profile therein at tissue depths sufficient for thermally ablating arrhythmogenic cardiac tissue to treat ventricular tachycardia and other arrhythmias while preventing excessive heating of surrounding tissues, organs, and blood. A wide bandwidth double-disk antenna (700) is effective for this purpose over a bandwidth of about six gigahertz. A computer simulation provides initial screening capabilities for an antenna such as antenna, frequency, power level, and power application duration. The simulation also allows optimization of techniques for specific patients or conditions. In operation, microwave energy between about 1 Gigahertz and 12 Gigahertz is applied to monopole microwave radiator (600) having a surface wave limiter (606). A test setup provides physical testing of microwave radiators (854) to determine the temperature profile created in actual heart tissue or ersatz heart tissue (841). Saline solution (872) pumped over the heart tissue (841) with a peristaltic pump (862) simulates blood flow. Optical temperature sensors (838) disposed at various tissue depths within the heart tissue (841) detect the temperature profile without creating any electromagnetic interference. The method may be used to produce a desired temperature profile in other body tissues reachable by catheter (510) such as tumors and the like.
机译:提供了用于将微波能量传播到心脏组织中以在组织深度处产生期望的温度分布的方法和设备,该温度足以热消融致心律失常的心脏组织以治疗室性心动过速和其他心律不齐,同时防止周围组织,器官和血液过度加热。为此,宽带宽双盘天线( 700 )在大约6 GHz的带宽上有效。计算机仿真为天线提供了初始筛选功能,例如天线,频率,功率水平和功率施加持续时间。该模拟还允许针对特定患者或状况优化技术。在操作中,将大约1吉赫兹和12吉赫兹之间的微波能量施加到具有表面波限制器( 606 )的单极微波辐射器( 600 )。测试设置提供了对微波辐射器( 854 )的物理测试,以确定在实际心脏组织或ersatz心脏组织( 841 )中创建的温度曲线。用蠕动泵( 862 )泵过心脏组织( 841 )的盐溶液( 872 )模拟血液流动。光学温度传感器( 838 )设置在心脏组织( 841 )内各种组织深度处,可以检测温度曲线,而不会产生任何电磁干扰。该方法可用于在导管( 510 )可到达的其他身体组织中产生所需的温度曲线,例如肿瘤等。

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