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      超音波를 利用한 溫熱療法時 溫度分布에 關한 硏究 = Thermometry in Hyperthermia induced by Ultrasound A Phantom study

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      https://www.riss.kr/link?id=A105822379

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      다국어 초록 (Multilingual Abstract)

      Temperature homogeniety and stationary temperature is the most important thermometric considerations for the clinical use of hyperthermia.
      A thermal mapping was done in a phantom with thermocouple during hyperthermia which was induced by 1.0 MHz, 0.7~0.8 watts/㎠ ultrasound and unfocused 2.5 cm-diameter transducer.
      The results were as follows
      1. Effective heating range(42.5℃±0.5℃) were obtained 3 cm in width and 4 cm in depth from surface of phantom and temperature distribution was relatively uniform.
      2. There was little heating effect more than 2 cm away from transducer axis and more than 5cm in depth.
      3. There was hot spots(more than 43℃) in 2.0±0.5 cm depth from transducer along transducer axis.
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      Temperature homogeniety and stationary temperature is the most important thermometric considerations for the clinical use of hyperthermia. A thermal mapping was done in a phantom with thermocouple during hyperthermia which was induced by 1.0 MHz, 0.7...

      Temperature homogeniety and stationary temperature is the most important thermometric considerations for the clinical use of hyperthermia.
      A thermal mapping was done in a phantom with thermocouple during hyperthermia which was induced by 1.0 MHz, 0.7~0.8 watts/㎠ ultrasound and unfocused 2.5 cm-diameter transducer.
      The results were as follows
      1. Effective heating range(42.5℃±0.5℃) were obtained 3 cm in width and 4 cm in depth from surface of phantom and temperature distribution was relatively uniform.
      2. There was little heating effect more than 2 cm away from transducer axis and more than 5cm in depth.
      3. There was hot spots(more than 43℃) in 2.0±0.5 cm depth from transducer along transducer axis.

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