Laboratory for Patient Inspired Engineering, Mayo Clinic, 13400 East Shea Blvd, Scottsdale, AZ, 85259, USA.
Department of Interventional Radiology, University of Texas MD Anderson Cancer Center, Houston, TX, 77030, USA.
Adv Mater. 2024 Aug;36(32):e2310856. doi: 10.1002/adma.202310856. Epub 2024 Jun 6.
Tissue ablation techniques have emerged as a critical component of modern medical practice and biomedical research, offering versatile solutions for treating various diseases and disorders. Percutaneous ablation is minimally invasive and offers numerous advantages over traditional surgery, such as shorter recovery times, reduced hospital stays, and decreased healthcare costs. Intra-procedural imaging during ablation also allows precise visualization of the treated tissue while minimizing injury to the surrounding normal tissues, reducing the risk of complications. Here, the mechanisms of tissue ablation and innovative energy delivery systems are explored, highlighting recent advancements that have reshaped the landscape of clinical practice. Current clinical challenges related to tissue ablation are also discussed, underlining unmet clinical needs for more advanced material-based approaches to improve the delivery of energy and pharmacology-based therapeutics.
组织消融技术已成为现代医学实践和生物医学研究的重要组成部分,为治疗各种疾病和病症提供了多种解决方案。经皮消融是一种微创方法,与传统手术相比具有许多优势,例如恢复时间更短、住院时间减少和医疗费用降低。消融过程中的术中成像还可以在最小化对周围正常组织损伤的同时,精确地显示治疗组织,降低并发症的风险。本文探讨了组织消融的机制和创新的能量传递系统,强调了最近的进展如何改变了临床实践的格局。本文还讨论了与组织消融相关的当前临床挑战,强调了对于更先进的基于材料的方法的临床需求,以改善能量传递和基于药理学的治疗方法。