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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Reduction of resonant RF heating in intravascular catheters using coaxial chokes.
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Reduction of resonant RF heating in intravascular catheters using coaxial chokes.

机译:使用同轴扼流圈减少血管内导管中的共振RF加热。

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摘要

The incorporation of RF coils into the tips of intravascular devices has been shown to enable the localization of catheters and guidewires under MR guidance. Furthermore, such coils can be used for endoluminal imaging. The long cable required to connect the coil with the scanner input inadvertently acts as a dipole antenna which picks up RF energy from the body coil during transmit. Currents are induced on the cable which can lead to localized heating of surrounding tissue. Cables of various lengths were measured to determine if a resonance in the heating as a function of cable length could be found. Coaxial chokes with a length of lambda/4 were added to coaxial cables to reduce the amplitude of the currents induced on the cable shield. A 0.7-mm diameter triaxial cable, small enough to fit into a standard intravascular device, was developed and measured both with and without a coaxial choke. It is demonstrated that resonant heating does occur and that it can be significantly reduced by avoiding a resonant length of cable and by including coaxial chokes on the cable.
机译:已经证明将RF线圈结合到血管内装置的尖端中使得能够在MR引导下定位导管和导丝。此外,这种线圈可以用于腔内成像。将线圈与扫描仪输入端连接所需的长电缆无意间充当了偶极天线,在传输过程中会从人体线圈中吸收射频能量。在电缆上感应出电流,这可能导致周围组织的局部发热。测量了各种长度的电缆,以确定是否可以发现加热中的共振是电缆长度的函数。将长度为λ/ 4的同轴扼流圈添加到同轴电缆中,以减小在电缆屏蔽层上感应的电流的幅度。研制了直径0.7毫米的三轴电缆,它足够小以适合标准的血管内装置,并在有同轴扼流圈和没有同轴扼流圈的情况下进行了测量。已证明确实发生了共振加热,并且可以通过避免电缆的共振长度并在电缆上包括同轴扼流圈来显着降低共振加热。

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