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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Effects of variable power on tissue ablation dynamics during magnetic resonance-guided laser-induced thermal therapy with the Visualase system
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Effects of variable power on tissue ablation dynamics during magnetic resonance-guided laser-induced thermal therapy with the Visualase system

机译:可变功率对磁共振引导激光诱导热疗过程中组织消融动力的影响

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Purpose: Magnetic resonance-guided laser-induced thermal therapy (MRgLITT) is a minimally invasive procedure used to treat various intracranial pathologies. This study investigated the effects of variable power on maximal estimated thermal damage during ablation and duration required to reach maximal ablation.Materials/Methods: All ablations were performed using the Visualase Thermal Therapy System (Medtronic Inc., Minneapolis, Minnesota), which uses a 980nm diffusing tip diode laser. Cases were stratified into low, medium and high power. Maximal thermal damage estimate (TDEmax) achieved in a single plane and time to reach maximal damage (t(tdemax)) were measured and compared between groups using a 2x3 Fixed Factor Analysis of Covariance. Ablation area change for cases in which an initial thermal dose was followed by a subsequent dose, with increased power, was also assessed.Results: We used real-time ablation data from 93 patients across various intracranial pathologies. t(tdemax) (meanSEM) decreased linearly as power increased (low: 139.2 +/- 10.4s, medium: 127.5 +/- 4.3s, high: 103.7 +/- 5.8s). In cases where a second thermal dose was delivered at higher power, the TDE expanded an average of 51.4mm(2) beyond the initial TDE generated by the first ablation, with the second ablation approaching TDEmax at a higher rate than the initial ablation.Conclusion: Increased power results in a larger TDEmax and an increased ablation rate. In cases where an initial thermal dose does not fully ablate the target lesion, a second ablation at higher power can increase the area of ablation with an increased ablation rate.
机译:目的:磁共振引导激光诱导的热疗(MRGLITT)是用于治疗各种颅内病理的微创手术。本研究研究了可变功率对达到最大烧蚀所需的最大估计热损伤的影响。方法/方法所需的持续时间内容:所有使用A 980nm扩散尖端二极管激光器。病例分层为低,中和高功率。在单个平面和时间达到最大损伤的时间(T(Tdemax))中获得的最大热损伤估计(Tdemax)并使用协方差2x3固定因子分析比较组之间的组。还评估了初始热量随后的初始剂量的病例的消融区域改变。结果:我们使用各种颅内病理到93名患者的实时消融数据。 T(TDEMAX)(均线)(均线)线性降低,随着电源的增加(低:139.2 +/- 10.4s,媒介:127.5 +/- 4.3s,高:103.7 +/- 5.8s)。在较高功率下递送第二热量剂量的情况下,TDE平均扩增超过第一消融产生的初始TDE的51.4mm(2),第二消融以比初始消融更高的速率接近Tdemax.Conclusion :增加的功率导致更大的Tdemax和增加的消融率。在初始热量剂量不完全消除目标病变的情况下,在更高功率下的第二消融可以增加消融面积增加的消融率。

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