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    <description>title: 科技解剖室 description: 本書目待補正
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    <title>Synchronization Model and Resource Scheduling for Distributed Multimedia Presentation Systems</title>
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    <description>title: Synchronization Model and Resource Scheduling for Distributed Multimedia Presentation Systems</description>
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    <title>Reconstruction of the Temperature Field for the Inverse Ultrasound hyperthermia calculations at a muscle/bone interface</title>
    <link>https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/64016</link>
    <description>title: Reconstruction of the Temperature Field for the Inverse Ultrasound hyperthermia calculations at a muscle/bone interface description: 本書目待補正
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    <title>Simulation of directional solidification with steep thermal gradients</title>
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    <description>title: Simulation of directional solidification with steep thermal gradients description: 本書目待補正
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    <description>title: ATM 網路繞徑及故障回復分析 description: 本書目待補正
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    <title>Analytical solution of Pennes Bio-heat transfer equation with a blood vessel</title>
    <link>https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/64009</link>
    <description>title: Analytical solution of Pennes Bio-heat transfer equation with a blood vessel description: 本書目待補正
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    <description>title: A Counter Current Vascular Network Model Of Heat Transfer In Tissues</description>
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    <title>The feasibility of heating on tumor periphery by using high intensity focused ultrasound thermal surgery</title>
    <link>https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/53550</link>
    <description>title: The feasibility of heating on tumor periphery by using high intensity focused ultrasound thermal surgery abstract: The aim of this study is to investigate the feasibility of the heating on the tumor periphery by using high intensity focused ultrasound (HIFU) during thermal surgery. The pressure field induced by high intensity focused ultrasound transducer was solved by the Rayleigh–Sommerfeld diffraction integral. The temperature distribution was solved by the Pennes bioheat transfer equation. Numerical results show that even in the tumor periphery with high blood perfusion the thermal lesion can effectively cover the wanted therapeutic region for a rapid HIFU heating. The modality of heating on the tumor periphery by using high intensity focused ultrasound may provide an approach to eradication of a solid tumor with high blood perfusion in the periphery.
&lt;br&gt;description: 99學年度黃煌文教師升等參考著作
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