IEEE Trans Biomed Eng. 2024 Oct;71(10):2814-2822. doi: 10.1109/TBME.2024.3394391. Epub 2024 Sep 19.
To study the safety and efficacy of algorithmically controlled electroporation (ACE) against spontaneous equine melanoma.
A custom temperature sensing coaxial electrode was paired with a high voltage pulse generation system with integrated temperature feedback controls. Computational modeling and ex vivo studies were conducted to evaluate the system's ability to achieve and maintain target temperatures. Twenty-five equine melanoma tumors were treated with a 2000 V protocol consisting of a 2-5-2 waveform, 45 °C temperature set point, and integrated energized times of 0.005 s, 0.01 s, or 0.02 s (2500x, 5000x, and 10000x 2 μs pulses, respectively). Patients returned 20-50 days post treatment to determine the efficacy of the treatment.
ACE temperature control algorithms successfully achieved and maintained target temperatures in a diverse population of spontaneous tumors with significant variation in tissue impedance. All treatments were completed successfully without and without adverse events. Complete response rates greater than 93% were achieved in all treatment groups.
ACE is a safe and effective treatment for spontaneous equine melanoma. The temperature control algorithm enabled rapid delivery of electroporation treatments without prior knowledge of tissue electrical or thermal properties and could adjust to real time changes in tissue properties.
Real time temperature control in electroporation procedures enables treatments near critical structures where thermal damage is contraindicated. Unlike standard approaches, ACE protocols do not require extensive pretreatment planning or knowledge of tissue properties to determine an optimal energy delivery rate and they can account for changes in tissue state (e.g., perfusion) in real time to simultaneously minimize treatment time and potential for thermal damage.
研究算法控制电穿孔(ACE)治疗自发性马属动物黑素瘤的安全性和有效性。
使用带有集成温度反馈控制的高压脉冲发生系统,将定制的温度感应同轴电极配对。进行了计算建模和离体研究,以评估该系统实现和维持目标温度的能力。用 2000V 方案(由 2-5-2 波形、45°C 温度设定点和集成激励时间 0.005s、0.01s 或 0.02s(分别为 2500x、5000x 和 10000x2μs 脉冲)组成)治疗 25 例马属动物黑素瘤肿瘤。患者在治疗后 20-50 天返回以确定治疗的效果。
ACE 温度控制算法成功地在组织阻抗存在显著差异的各种自发肿瘤中实现并维持了目标温度。所有治疗均成功完成,无不良反应。所有治疗组的完全缓解率均大于 93%。
ACE 是治疗自发性马属动物黑素瘤的一种安全有效的方法。该温度控制算法无需事先了解组织的电学或热学特性即可快速进行电穿孔治疗,并且能够实时调整组织特性的变化。
电穿孔过程中的实时温度控制可在热损伤禁忌的关键结构附近进行治疗。与标准方法不同,ACE 方案不需要进行广泛的预处理规划或了解组织特性来确定最佳能量传递率,并且可以实时考虑组织状态的变化(例如灌注),以同时最小化治疗时间和潜在的热损伤风险。