400. Cumulative Effects of Ultraviolet-Induced Ocular Tissues

2000 ◽  
Author(s):  
S. Marzec
Author(s):  
Dr. Mita V. Joshi ◽  
Dr. Sudhir Mahashabde

All patient coming to Index Medical College Hospital & Research Centre, Indore operated in Department of Ophthalmology for traumatic cataract due to various injuries Result: Of the 37 patients, 19 patients (51%) showed corneal/ corneal sclera injury. 10 cases had injury to iris in the form of spincter tear, traumatic mydriasis, iris incarceration, floppy iris, posterior and anterior synechiae. Subluxation of lens was seen in 2 cases and Dislocation of lens was in 1 cases. 3 cases had corneal opacity. Old retinal detachment was seen in 1 (3%) case. Out of 30 cases who had associated ocular injuries, 3 cases had vision of HM, 07 cases had vision of CF-ctf – CF-3’, 01 cases had vision of 5/60, 07 cases had vision of 6/60-6/36, 03 cases had vision of 6/24-6/18, 09 cases had vision of 6/12-6/6. Out of 7 cases without associated in injury, 2 cases had vision of 6/24-6/18, 05 cases had vision of 6/12-6/6. Conclusion: Corneal scarring obstructing the visual axis as well as by inducing irregular astigmatism formed an important cause of poor visual outcome in significant number of cases. Irreversible posterior segment damage lead to impaired vision case. The final visual outcome showed good result however the final visual outcome depends upon the extent of associated ocular injuries. Effective Intervention and management are the key points in preventing monocular blindness due to traumatic cataract. Keywords: Ocular, Tissues, Traumatic, Cataract & Surgery.


2020 ◽  
Vol 139 ◽  
pp. 213-221
Author(s):  
C Birkett ◽  
R Lipscomb ◽  
T Moreland ◽  
T Leeds ◽  
JP Evenhuis

Flavobacterium columnare immersion challenges are affected by water-related environmental parameters and thus are difficult to reproduce. Whereas these challenges are typically conducted using flow-through systems, use of a recirculating challenge system to control environmental parameters may improve reproducibility. We compared mortality, bacterial concentration, and environmental parameters between flow-through and recirculating immersion challenge systems under laboratory conditions using 20 rainbow trout families. Despite identical dose concentration (1:75 dilution), duration of challenge, lot of fish, and temperature, average mortality in the recirculating system (42%) was lower (p < 0.01) compared to the flow-through system (77%), and there was low correlation (r = 0.24) of family mortality. Mean days to death (3.25 vs. 2.99 d) and aquaria-to-aquaria variation (9.6 vs. 10.4%) in the recirculating and flow-through systems, respectively, did not differ (p ≥ 0.30). Despite 10-fold lower water replacement rate in the recirculating (0.4 exchanges h-1) compared to flow-through system (4 exchanges h-1), differences in bacterial concentration between the 2 systems were modest (≤0.6 orders of magnitude) and inconsistent throughout the 21 d challenge. Compared to the flow-through system, dissolved oxygen during the 1 h exposure and pH were greater (p ≤ 0.02), and calcium and hardness were lower (p ≤ 0.03), in the recirculating system. Although this study was not designed to test effects of specific environmental parameters on mortality, it demonstrates that the cumulative effects of these parameters result in poor reproducibility. A recirculating immersion challenge model may be warranted to empirically identify and control environmental parameters affecting mortality and thus may serve as a more repeatable laboratory challenge model.


2007 ◽  
Author(s):  
Dhiraj K. Sardar ◽  
Raylon M. Yow ◽  
Deepthi Takkalapally ◽  
Robert J. Thomas

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