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用于皮肤干预的高频(20兆赫)高强度聚焦超声(HIFU)系统:在皮肤等效物中的临床前评估。

High-frequency (20-MHz) high-intensity focused ultrasound (HIFU) system for dermal intervention: Preclinical evaluation in skin equivalents.

作者信息

Bove Torsten, Zawada Tomasz, Serup Jørgen, Jessen Alexander, Poli Mattia

机构信息

TOOsonix A/S, Horsholm, Denmark.

Department of Dermatology, Bispebjerg University Hospital, Copenhagen, Denmark.

出版信息

Skin Res Technol. 2019 Mar;25(2):217-228. doi: 10.1111/srt.12661. Epub 2019 Jan 8.

Abstract

BACKGROUND

High-intensity focused ultrasound (HIFU) for non-invasive treatment of a range of internal pathologies including cancers of major organs and cerebral pathologies is in exponential growth. Systems, however, operate at relatively low frequencies, in the range of 200-2000 kHz as required for deep axial penetration of the body. HIFU utilizing frequencies in excess of 15 MHz has so far not been explored, but presents an opportunity to extend the HIFU modality to target specific dermal lesions and small animal research.

MATERIALS AND METHODS

A new 20-MHz HIFU system (TOOsonix ONE-R) with narrow focus corresponding to the dermis was studied in acoustic skin equivalents, for example, in a tissue-mimicking gel and in bovine liver. HIFU lesion geometry, depth, and diameter were determined. The temperature increase in the focal point was measured as a function of acoustic power and the duration of HIFU exposure.

RESULTS

The system produces highly reproducible ultrasound lesions with predictable and configurable depths of 1-2 mm, thus corresponding to the depth of the human dermis. The lesion geometry was elongated triangular and sized 0.1-0.5 mm, convergent to a focal point skin deep. Focal point temperature ranged between 40 and 90°C depending on the chosen setting. Observations were confirmed ex vivo in bovine liver and porcine muscle. Variation of acoustic power and duration of exposure produced linear effects in the range of the settings studied. Thus, effects could be adjusted within the temperature interval and spatial field relevant for clinical therapy and experimental intervention targeting the dermal layer of human skin.

CONCLUSION

The tested 20-MHz HIFU system for dermal applications fulfilled key prerequisite of narrow-field HIFU dedicated to cutaneous applications regarding reproducibility, geometry, and small size of the applied ultrasound lesions. Controlled adjustment of acoustic lesions within the temperature range 40-90°C qualifies the system for a range of non-ablative and ablative applications in dermatological therapy.

摘要

背景

高强度聚焦超声(HIFU)用于非侵入性治疗一系列内部疾病,包括主要器官的癌症和脑部疾病,其应用正在呈指数级增长。然而,现有的系统工作频率相对较低,在200 - 2000kHz范围内,这是身体深部轴向穿透所需要的频率。迄今为止,尚未探索利用超过15MHz频率的HIFU,但这为将HIFU模式扩展到针对特定皮肤病变和小动物研究提供了机会。

材料与方法

研究了一种新型的20MHz HIFU系统(TOOsonix ONE - R),其具有与真皮相对应的窄焦点,在声学皮肤等效物中进行研究,例如在组织模拟凝胶和牛肝中。确定了HIFU损伤的几何形状、深度和直径。测量了焦点处的温度升高与声功率和HIFU暴露持续时间的函数关系。

结果

该系统产生高度可重复的超声损伤,其深度可预测且可配置,为1 - 2mm,与人类真皮的深度相对应。损伤的几何形状为细长三角形,尺寸为0.1 - 0.5mm,汇聚于皮肤深处的一个焦点。根据所选设置,焦点温度在40至90°C之间。在牛肝和猪肌肉中进行的离体观察证实了这些结果。在所研究的设置范围内,声功率和暴露持续时间的变化产生线性效应。因此,可以在与针对人类皮肤真皮层的临床治疗和实验干预相关的温度区间和空间场内调整效应。

结论

所测试的用于皮肤应用的20MHz HIFU系统满足了专门用于皮肤应用的窄场HIFU在可重复性、几何形状和所施加超声损伤的小尺寸方面的关键前提条件。在40 - 90°C温度范围内对声学损伤进行可控调整,使该系统适用于皮肤科治疗中的一系列非消融和消融应用。

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