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A dose-efficient treatment strategy for histotripsy by removing cavitation memory

机译:通过消除空化记忆的剂量有效的组织肌病治疗策略

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Cavitation memory effect occurs when fragments of cavitation bubbles persist in the host medium and act as seeds for subsequent events. In pulsed cavitational ultrasound therapy, or histotripsy, this effect may cause cavitation to repeatedly occur at these seeded locations, producing inhomogeneous lesions or requiring excess pulses to completely homogenize the target volume. We hypothesized that by removing the memory, the cavitation bubbles could be induced at random locations in response to each pulse, leading to complete and homogeneous disruption of the target volume with fewer pulses. To test the hypothesis, the cavitation memory was passively removed by increasing the time intervals between successive pulses, Δt. The cavitation patterns and the lesion development process using various Δt''s were studied. Results showed an exponential decrease in the similarity between the spatial distributions of cavitation bubbles in successive pulses with increasing Δt''s; correspondingly, the lesion was completely and homogeneously fractionated with significantly fewer pulses for longer Δt''s. These results indicated that the removal of the cavitation memory may produce more dose-efficient treatments and homogeneous lesions.
机译:当空化气泡的片段在宿主介质中持续存在并充当后续事件的种子时,就会发生空化记忆效应。在脉冲空化超声疗法或组织曲张疗法中,此效应可能导致在这些播种位置反复发生空化,从而产生不均匀的病灶或需要过多的脉冲才能完全匀化目标体积。我们假设通过删除内存,可以响应每个脉冲在随机位置处诱发空化气泡,从而以更少的脉冲完全而均匀地破坏目标体积。为了检验假设,通过增加连续脉冲之间的时间间隔Δt来被动删除气穴记忆。研究了使用各种Δt′s的空化模式和病变发展过程。结果表明,随着Δt's的增加,连续脉冲中空化气泡的空间分布之间的相似性呈指数下降;相应地,对于更长的Δt's,病变被完全均匀地分割,而脉冲明显更少。这些结果表明,空化记忆的去除可以产生更有效的剂量治疗和均匀的病变。

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