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钬:YAG 和超脉冲铥光纤激光的时间脉冲形状对尿石模型后退速度和消融效率的影响。

Effect of temporal pulse shape on urinary stone phantom retropulsion rate and ablation efficiency using holmium:YAG and super-pulse thulium fibre lasers.

机构信息

GRC n°20, Groupe de Recherche Clinique sur la Lithiase Urinaire, Hôpital Tenon, Sorbonne Université, Paris, France.

Service d'Urologie, AP-HP, Hôpital Tenon, Sorbonne Université, Paris, France.

出版信息

BJU Int. 2020 Jul;126(1):159-167. doi: 10.1111/bju.15079. Epub 2020 May 18.

Abstract

OBJECTIVE

To investigate the effects of laser temporal pulse shaping of the super-pulse thulium fibre laser (SPTFL) and to compare these in controlled in vitro conditions with various holmium: yttrium aluminium garnet (Ho:YAG) pulse delivery modes.

MATERIALS AND METHODS

The SPTFL (Urolase SP, IRE-Polus, Fryazino, Russia), with an emission wavelength of 1.94 μm, and a Ho:YAG laser (P120H; Lumenis, Yokneam, Israel) with Moses technology were compared. Pulse shape, stone retropulsion and ablation efficiency were evaluated using BegoStones and compared for each laser mode: short (SP), long (LP), and Moses pulse (MP) for Ho:YAG, regular pulse (RP) and dual pulse (DP) for SPTFL.

RESULTS

The Ho:YAG SP mode exhibited an asymmetrical pulse shape, with a steep leading slope and a much more gradual trailing slope, without any flat section. Pulses generated by the SPTFL were significantly longer and therefore had lower peak power than those generated by the Ho:YAG laser at equivalent energy settings. Retropulsion for the holmium:YAG LP and MP modes was similar and lower than that for the SP mode, but higher than for the SPTFL (all P ≤ 0.02), with an average stone displacement approximately four times and two times lower for SPTFL as compared to the Ho:YAG laser. Comparison of ablation volumes indicated that the SPTFL induced significantly higher (twofold) ablation than the Ho:YAG laser.

CONCLUSIONS

The magnitude and initial velocity of stone retropulsion decreased with longer pulse duration and lower pulse peak power, without sacrificing ablation efficiency. These observations are manifest when comparing the Ho:YAG laser with the SPTFL. The novel SPTFL provides greater versatility and control of pulse variables than the Ho:YAG laser. Further clinical investigation of practical benefits achievable with pulse-shaping SPTFL modes is warranted.

摘要

目的

研究超脉冲铥光纤激光(SPTFL)的激光时间脉冲整形效果,并在受控的体外条件下将其与各种钬:石榴石(Ho:YAG)脉冲输送模式进行比较。

材料与方法

使用发射波长为 1.94μm 的 SPTFL(Urolase SP,IRE-Polus,俄罗斯 Fryazino)和具有 Moses 技术的 Ho:YAG 激光(P120H;Lumenis,以色列 Yokneam)进行比较。使用 BegoStones 评估脉冲形状、结石后退和消融效率,并比较每种激光模式的情况:Ho:YAG 的短(SP)、长(LP)和 Moses 脉冲(MP),SPTFL 的常规脉冲(RP)和双脉冲(DP)。

结果

Ho:YAG 的 SP 模式显示出非对称的脉冲形状,具有陡峭的前沿斜率和更渐进的后沿斜率,没有任何平坦部分。在等效能量设置下,SPTFL 产生的脉冲明显更长,因此峰值功率低于 Ho:YAG 激光。钬:YAG 的 LP 和 MP 模式的后退力与 SP 模式相似且较低,但高于 SPTFL(所有 P≤0.02),SPTFL 的结石位移平均约为 Ho:YAG 激光的四倍和两倍。消融体积的比较表明,SPTFL 引起的消融量明显高于 Ho:YAG 激光。

结论

随着脉冲持续时间的延长和脉冲峰值功率的降低,结石后退的幅度和初始速度降低,而不会牺牲消融效率。这些观察结果在比较 Ho:YAG 激光与 SPTFL 时是明显的。新型 SPTFL 提供了比 Ho:YAG 激光更大的脉冲变量的多功能性和控制。进一步研究具有脉冲整形 SPTFL 模式的实际效益是必要的。

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