From the Department of Ophthalmology and Visual Sciences, John A. Moran Eye Center, University of Utah, Salt Lake City, Utah, USA.
From the Department of Ophthalmology and Visual Sciences, John A. Moran Eye Center, University of Utah, Salt Lake City, Utah, USA.
J Cataract Refract Surg. 2017 Nov;43(11):1464-1467. doi: 10.1016/j.jcrs.2017.08.018.
To evaluate the effects of the use of programmable chamber stabilization software (Chamber Stabilization Environment) settings on efficiency and chatter in a porcine lens model.
John A. Moran Eye Center Laboratory, University of Utah, Salt Lake City, Utah, USA.
Experimental study.
Porcine eyes were dissected and the lenses extracted. The lenses were then hardened and processed for the experiment. Phacoemulsification of the lens fragments was performed with the Whitestar Signature Pro with the Whitestar handpiece and a 0.9 mm straight Dewey tip with a 30-degree bevel. All arms of the study were run in peristaltic mode with 50 mL/minute aspiration, 100 cm bottle height, and on 100% power. The chamber stabilization software setting was used for each of the 4 study arms with a maximum vacuum of 500 mm Hg. Arm 1 included 20 runs with the up time set to 2000 milliseconds. Arm 2 was performed with similar settings but with an up time of 0 millisecond. Arms 3 and 4 were run with up times of 1000 milliseconds and 500 milliseconds, respectively.
The mean efficiency time of each run was as follows: 0 millisecond = 1.4 seconds, 500 milliseconds = 0.95 seconds, 1000 milliseconds = 0.88 seconds, 2000 milliseconds = 0.93 seconds. When compared with 0 millisecond, each of the other arms were significantly faster. Chatter events were comparable between the study arms.
The chamber stabilization software does not decrease efficiency when compared with full vacuum on if at least 500 milliseconds of up time is maintained.
评估可编程室稳定软件(Chamber Stabilization Environment)设置对猪晶状体模型中效率和振动的影响。
美国犹他州盐湖城犹他大学约翰 A. 莫兰眼科中心实验室。
实验研究。
对猪眼进行解剖并提取晶状体。然后将晶状体硬化并进行实验处理。使用 Whitestar Signature Pro 与 Whitestar 手柄和 0.9 毫米直 Dewey 尖端(30 度斜面)对晶状体碎片进行超声乳化。研究的所有臂均以蠕动模式运行,抽吸速度为 50 毫升/分钟,瓶高 100 厘米,功率为 100%。为每个研究臂使用腔室稳定软件设置,最大真空度为 500 毫米汞柱。臂 1 包括 20 次运行,启动时间设置为 2000 毫秒。臂 2 采用类似的设置,但启动时间为 0 毫秒。臂 3 和臂 4 的启动时间分别为 1000 毫秒和 500 毫秒。
每次运行的平均效率时间如下:0 毫秒=1.4 秒,500 毫秒=0.95 秒,1000 毫秒=0.88 秒,2000 毫秒=0.93 秒。与 0 毫秒相比,其他每个臂的速度都明显更快。在研究臂之间,振动事件相当。
与完全真空相比,当保持至少 500 毫秒的启动时间时,腔室稳定软件不会降低效率。