首页> 美国卫生研究院文献>Springer Open Choice >The Twister laser fiber degradation and tissue ablation capability during 980-nm high-power diode laser ablation of the prostate. A randomized study versus the standard side-firing fiber
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The Twister laser fiber degradation and tissue ablation capability during 980-nm high-power diode laser ablation of the prostate. A randomized study versus the standard side-firing fiber

机译:前列腺980 nm高功率二极管激光消融过程中的Twister激光纤维降解和组织消融能力。随机研究与标准侧射纤维

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摘要

The objective of this work is to test the ablation capability and fiber degradation of the novel Twister fibers (TW), in both the large (LTW) and the standard (STW) sizes, against the standard side-firing (SF) fiber in a clinical setting during the treatment of BPH patients using the 980-nm high-power diode laser (HPDL). One hundred and twenty BPH patients treated with HPDL (Ceralase300, Biolitec AG, Jena, Germany) were randomized to receive treatment by one of the three fibers. Operative time corrected to tissue volume, laser treatment time, and laser energy were measured. Ablation rate was calculated as follows: the decrease of the prostate volume after 6 months/laser time. The fibers’ resistance to degradation was defined by the laser energy needed to degrade the fiber completely. Preoperative prostate volume of 76 ± 38, 70 ± 39, and 88 ± 49 cc decreased by 49 ± 16, 51 ± 20, and 63 ± 16% for the SF, STW, and LTW fibers, respectively. This difference was highly significant when the LTW was compared to the other two fibers (p < 0.001). Prostate volume reduction post-operatively within each group as compared to the pre-operative volume was highly significant (p < 0.001). The ablation rate was highest in LTW, being 1.31 ± 0.59, 1.09 ± 0.51, and 1.54 ± 0.44 cc/min for the SF, STW, and LTW fibers, respectively. The LTW fiber resisted degradation more than the other fibers and the STW more than the SF fiber (p < 0.001). This study demonstrates the higher ablation efficiency and resistance to degradation of the LTW fiber as compared to the STW and SF fibers. The STW fiber has a similar ablation rate of the SF fiber but resists degradation better.
机译:这项工作的目的是针对大型(LTW)和标准(STW)尺寸的新型Twister光纤(TW)相对于标准的侧向烧制(SF)光纤,测试其消融能力和纤维降解。使用980 nm大功率二极管激光器(HPDL)治疗BPH患者的临床环境。 120例接受HPDL治疗的BPH患者(Ceralase300,Biolitec AG,德国耶拿)被随机分配接受三种纤维之一的治疗。测量校正到组织体积的手术时间,激光治疗时间和激光能量。消融率计算如下:6个月/激光时间后前列腺体积减少。纤维的抗降解能力由完全降解纤维所需的激光能量定义。 SF,STW和LTW纤维的术前前列腺体积分别为76%±38%,70%±39%和88%±49%,分别降低了49%±16%,51%±20%和63%±16%。当将LTW与其他两种纤维进行比较时,这种差异是非常显着的(p <0.001)。与术前体积相比,各组术后前列腺体积的减少非常显着(p <0.001)。在LTW中,SF,STW和LTW纤维的消融速率最高,分别为1.31±0.59、1.09±0.51和1.54±0.44cc / min。 LTW纤维比其他纤维更能抵抗降解,而STW则比SF纤维更能抵抗降解(p <0.001)。这项研究表明,与STW和SF纤维相比,LTW纤维具有更高的烧蚀效率和抗降解性。 STW纤维具有与SF纤维相似的烧蚀速率,但抗降解性更好。

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