首页> 外文会议>Energy-based treatment of tissue and assessment IX >Global microwave endometrial ablation for menorrhagia treatment
【24h】

Global microwave endometrial ablation for menorrhagia treatment

机译:全球微波子宫内膜切除术治疗月经过多

获取原文
获取原文并翻译 | 示例

摘要

Thermal ablation is a dominant therapeutic option for minimally invasive treatment of menorrhagia. Compared to other energy modalities for ablation, microwaves offer the advantages of conformal energy delivery to tissue within short times. The objective of endometrial ablation is to destroy the endometrial lining of the uterine cavity, with the clinical goal of achieving reduction in bleeding. Previous efforts have demonstrated clinical use of microwaves for endometrial ablation. A considerable shortcoming of most systems is that they achieve ablation of the target by translating the applicator in a point-to-point fashion. Consequently, treatment outcome may be highly dependent on physician skill. Global endometrial ablation (GEA) not only eliminates this operator dependence and simplifies the procedure but also facilitates shorter and more reliable treatments. The objective of our study was to investigate antenna structures and microwave energy delivery parameters to achieve GEA. Another objective was to investigate a method for automatic and reliable determination of treatment end-point. A 3D-coupled FEM electromagnetic and heat transfer model with temperature and frequency dependent material properties was implemented to characterize microwave GEA. The unique triangular geometry of the uterus where lateral narrow walls extend from the cervix to the fundus forming a wide base and access afforded through an endocervical approach limit the overall diameter of the final device. We investigated microwave antenna designs in a deployed state inside the uterus. The impact of ablation duration on treatment outcome was investigated. Prototype applicators were fabricated and experimentally evaluated in ex vivo tissue to verify the simulation results and demonstrate proof-of-concept.
机译:热消融是月经过多的微创治疗的主要治疗选择。与消融的其他能量形式相比,微波具有在短时间内将保形能量传递到组织的优势。子宫内膜切除术的目的是破坏子宫腔的子宫内膜内膜,其临床目标是减少出血。先前的努力已经证明了将微波用于子宫内膜消融的临床用途。大多数系统的显着缺点是它们通过以点对点的方式平移施加器来实现目标的消融。因此,治疗结果可能高度取决于医师的技能。整体子宫内膜切除术(GEA)不仅消除了对操作者的依赖,简化了手术过程,而且还促进了更短,更可靠的治疗。我们研究的目的是研究天线结构和微波能量传递参数,以实现GEA。另一个目的是研究一种自动可靠地确定治疗终点的方法。建立了具有温度和频率相关材料特性的3D耦合FEM电磁和热传递模型来表征微波GEA。子宫独特的三角形几何形状,其中横向窄壁从子宫颈延伸至眼底,形成宽阔的根部,通过子宫颈内入路提供的通路限制了最终装置的总直径。我们研究了子宫内处于展开状态的微波天线设计。研究了消融持续时间对治疗结果的影响。制作了原型涂抹器,并在离体组织中进行了实验评估,以验证模拟结果并证明概念验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号