Rekas Marek, Montés-Micó Robert, Krix-Jachym Karolina, Kluś Adam, Stankiewicz Andrzej, Ferrer-Blasco Teresa
Department of Ophthalmology, Military Health Service Institute, Warsaw, Poland.
J Cataract Refract Surg. 2009 Oct;35(10):1719-24. doi: 10.1016/j.jcrs.2009.04.047.
To compare phacoemulsification parameters of torsional and longitudinal ultrasound modes.
Ophthalmology Department, Military Health Service Institute, Warsaw, Poland.
This prospective study evaluated eyes 1, 7, and 30 days after phacoemulsification with an Infiniti Vision System using the torsional or longitudinal ultrasound (US) mode. Cataract classification was according to the Lens Opacities Classification System II. Nucleus fragmentation was by the phaco-chop and quick-chop methods. Primary outcome measures were phaco time, mean phaco power, mean torsional amplitude, and aspiration time. Total energy, defined as cumulative dissipated energy (CDE) x aspiration time, and the effective coefficient, defined as aspiration time/phaco time, were also calculated.
Four hundred eyes were evaluated. The CDE was statistically significantly lower in the torsional mode for nucleus grades I, II, and III (P<.001) but not for grade IV (P>.05). Aspiration time was statistically significantly shorter in the torsional mode than in the longitudinal mode for nucleus grades III and IV (P<.05). Total energy was significantly lower in the torsional mode for all nucleus densities (P<.05). The effective coefficient was significantly lower in the longitudinal mode except for nucleus grade I (P<.05).
Torsional phacoemulsification was more effective than longitudinal phacoemulsification in the amount of applied fluid and the quantity of US energy expended. With the torsional method, it was possible to maintain a constant ratio of amount of fluid flow to quantity of US energy used, regardless of nucleus density.
比较扭转超声模式和纵向超声模式的超声乳化参数。
波兰华沙军事卫生服务研究所眼科。
本前瞻性研究评估了使用Infiniti视觉系统,采用扭转或纵向超声(US)模式进行超声乳化术后1天、7天和30天的眼睛。白内障分类依据晶状体混浊分类系统II。核碎裂采用超声劈核和快速劈核方法。主要观察指标为超声乳化时间、平均超声乳化功率、平均扭转幅度和抽吸时间。还计算了总能量(定义为累积消散能量[CDE]×抽吸时间)和有效系数(定义为抽吸时间/超声乳化时间)。
共评估了400只眼睛。对于I、II和III级核,扭转模式下的CDE在统计学上显著更低(P<0.001),但IV级核则无显著差异(P>0.05)。对于III级和IV级核,扭转模式下的抽吸时间在统计学上显著短于纵向模式(P<0.05)。所有核密度下,扭转模式的总能量均显著更低(P<0.05)。除I级核外,纵向模式下的有效系数显著更低(P<0.05)。
在应用的液体量和消耗的超声能量方面,扭转超声乳化比纵向超声乳化更有效。采用扭转方法,无论核密度如何,都能够保持液体流量与所用超声能量的恒定比例。