Application of Gas Spark Switch in Plasma Pulse Technology

Author(s):  
Shichao Zheng ◽  
Zhongjian Kang
2018 ◽  
Vol 3 (2) ◽  
pp. 180-188 ◽  
Author(s):  
Karan Patel ◽  
Manan Shah ◽  
Anirbid Sircar

2000 ◽  
Author(s):  
Gerry L. Mackie ◽  
Philip Lowery ◽  
Clint Cooper

Vision ◽  
2021 ◽  
Vol 5 (1) ◽  
pp. 8
Author(s):  
Diego de Ortueta

Purpose: We evaluated the refractive visual outcomes and efficacy of Transepithelial Photorefractive Keratectomy (TransPRK) using Smart Pulse Technology with static and dynamic cyclotorsion and the AMARIS 1050 Hz RS laser platform from Schwind in the eyes after a refractive lens exchange. Setting/Venue: Aurelios Augenlaserzentrum, Recklinghausen. Methods: We retrospectively evaluated the data of 552 consecutive eyes treated with refractive lens exchange between 2016 and 2019. A total of 47 eyes (8.5%) required a touch up after the clear lens exchange. From 43 eyes of 43 patients, we obtained a minimum follow up of 3 months. In all cases, we performed a TransPRK with a minimum optical zone of 7.2 mm, centering the ablation on the vertex of the cornea. Results: The average age of the treated eyes was 57 years old, with a range between 48 and 68 years. The mean treated sphere was 0.42 diopters (D), with a range between −1.0 and +1.75 D. The mean astigmatism was 1.06 D. Postoperatively, after laser vision correction, we reduced the sphere to a mean of 0.11 D (range −0.5 to +0.75 D), and, postoperatively, the mean astigmatism was 0.25 D (range −0.75 to 0 D). The predictability for a spheric equivalent (SEQ) of 0.5 D was 91%, and for 1 D it was 100% of the cases. No eye lost more than one Snellen line. Conclusions: TransPRK with smart pulse was predictable for correcting ametropia after Clear Lens Surgery.


2019 ◽  
Vol 8 (4) ◽  
pp. 7573-7578

Pulses are the integral part of farming system of Odisha. The production and productivity of pulses has not been increased for a long period. To supplement protein requirements of the rural population there is need to increase production level through adoption of recommended technologies. Besides to improve overall farming system the contribution of pulses in terms of enriching soil fertility, conservation of moisture and controlling of weeds are to be kept in mind. The present transfer of pulse technology system is quite weak which needs strengthening. The rate of adoption of pulse technologies stands with a gap of more than 50% along with problems of non availability of quality seeds and other inputs in time. To look at the future of pulse production in the state the steps like cluster approach, establishing of seed production centres,, variety wise seed plan, strengthening of Extension support, making input available in time at affordable cost, research linkage, year wise Production Program and Development of marketing chain for pulse are suggested based on the findings of the study.


2013 ◽  
Vol 65 (12) ◽  
pp. 34-35
Author(s):  
Brett Davidson

Author(s):  
Tracy S. Clement ◽  
Scott A. Diddams ◽  
David J. Jones

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