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HYPERTHERMIA TREATMENT AND PROBE THEREFORE

机译:高温疗法并因此探索

摘要

A method of using a probe that emits energy to coagulate lesions is disclosed. The probe is constructed and arranged to emit light from its distal end, either at an angle to its longitudinal axis, or along its longitudinal axis. Optionally, an end reflector may be used to direct the energy in a beam to one side of the fiber end. A reinforcing sleeve for the fiber is mounted to a shielded, Piezo-electric motor constructed and arranged to move the fiber both longitudinally and rotationally within an optional elongate cannula. An MRI system is arranged to generate a series of output signals indicative of temperature in the targeted area. The application of energy is stopped when the temperature at the boundary of the lesion reaches the required hyperthermic temperature. Cooling of the tip portion of the probe is effected by expansion of a supplied cooling fluid through a restrictive orifice into an expansion zone at the probe end. The fiber is encased in a stiff tubular titanium probe with a relatively small fluid supply duct inside the probe with the interior of the probe acting as a return duct for the expanded liquid. The temperature of the probe end is monitored by a sensor in the probe end and controlled by controlling the pressure in the supplied cooling fluid.
机译:公开了一种使用发射能量的探针凝结病变的方法。探针被构造和布置成以相对于其纵轴成一定角度或沿着其纵轴从其远端发射光。可选地,可以使用端反射器将光束中的能量引导到光纤端的一侧。用于光纤的加强套管安装到屏蔽的压电电动机上,该电动机构造和布置为在可选的细长套管内纵向和旋转地移动光纤。 MRI系统被布置为产生指示目标区域中的温度的一系列输出信号。当病变边界处的温度达到所需的高温时,停止施加能量。探针的尖端部分的冷却通过使供应的冷却流体通过节流孔膨胀到探针端部的膨胀区域中来实现。纤维被包裹在坚固的管状钛探针中,该探针在探针内部具有相对较小的流体供应管道,而探针的内部充当了膨胀液体的回流管道。探头端部的温度由探头端部的传感器监控,并通过控制所供应的冷却液中的压力进行控制。

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