首页> 外文会议>2nd international conference on integration and commercialization of micro and nanosystems 2008 : Micro and nano mechanical systems ; Micro and nano devices ; Micro and nano materials characterization ... >THE EFFECTS OF LARGE BLOOD VESSELS ON THREE-DIMENSIONAL TISSUE TEMPERATURE DISTRIBUTIONS DURING ELECTROMAGNETIC INDUCED NANO- HYPERTHERMIA: NUMERICAL SIMULATION
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THE EFFECTS OF LARGE BLOOD VESSELS ON THREE-DIMENSIONAL TISSUE TEMPERATURE DISTRIBUTIONS DURING ELECTROMAGNETIC INDUCED NANO- HYPERTHERMIA: NUMERICAL SIMULATION

机译:电磁诱导的纳米热疗过程中大血管对三维组织温度分布的影响:数值模拟

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摘要

As is well known, the blood flowing through large blood vessels acts as a heat sink and plays an important role in affecting temperature profiles of heated tissues [1]. In hyperthermia, heating is usually limited to the tumor and a small margin of the surrounding tissue. Since the temperatures in the rest of the body remain normal, the blood that supplies the tumor will be relatively cold. Consequently, the blood flow inside a large vessel will represent a sink which cools the nearby heated tissues and then limits heating lesion during tumor hyperthermia. Under this adverse condition, a part of vital tumor cells may remain in the thermally lethal area and lead to recurrence of tumors after hyperthermia treatment. More specifically, tumor cell survival in the vicinity of large blood vessels is often correlated with tumor recurrence after thermal therapy. Therefore, it is difficult to implement an effective hyperthermia treatment when a tumor is contiguous to a large blood vessel or such vessel transits the tumor. How to totally destroy tumor cells in the vicinity of large blood vessels has been a major challenge in hyperthermia [2].
机译:众所周知,流经大血管的血液起着散热器的作用,在影响受热组织的温度分布中起着重要的作用[1]。在热疗中,加热通常仅限于肿瘤和周围组织的一小部分。由于身体其他部位的温度保持正常,因此供应肿瘤的血液将相对较冷。因此,大血管内的血流将代表一个沉池,该沉池冷却附近的加热组织,然后在肿瘤热疗期间限制加热病变。在这种不利条件下,一部分重要的肿瘤细胞可能保留在热致死区域中,并在热疗后导致肿瘤复发。更具体地,大血管附近的肿瘤细胞存活通常与热疗法后的肿瘤复发相关。因此,当肿瘤与大血管邻接或这种血管通过肿瘤时,难以实施有效的高温治疗。如何完全破坏大血管附近的肿瘤细胞一直是热疗的主要挑战[2]。

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