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单词 Intraocular pressure
例句
1. Glaucoma can result from increased intraocular pressure.
2. Can high intraocular pressure develop glaucoma?
3. Posterior subcapsular cataracts, increased intraocular pressure, glaucoma and exophthalmos.
4. Intraocular pressure was measured in each group with GAT and DCT.
5. Glaucoma is a disorder characterized by increased intraocular pressure (IOP) that ultimately damages the optic nerve, leading to visual field loss.
6. Rehak J. Neovascular glaucoma and intraocular pressure . Acta Univ Palaoki Olomuc Fac Med 1992; 133:71.
7. Post corrected vision, posterior capsular opacification, intraocular pressure and harmful effect on intraocular tissues were examined.
8. The visual acuity, intraocular pressure ( IOP ) , and complications were analyzed.
9. Slit lamp biomicroscopy, indirect ophthalmoscopy(), Electroretinogram (ERG) and intraocular pressure were performed at regular intervals in all eyes pre- and postoperatively.
10. AIM: To compare the intraocular pressure distribution in onchocerciasis hyperendemic communities with the intraocular pressure distribution in a hypoendemiccommunity.
11. Methods:Measure the intraocular pressure of 70 patients (140 eyes) by dynamic contour tonometry and use comprehensive nursing at the same time.
12. The increase in intraocular pressure peaks 2 to 4 minutes after the administration of succinylcholine.
13. Objective : To study the mechanism of high intraocular pressure during phacoemulsification.
14. Glaucoma is characterized by elevated intraocular pressure associated with optic cupping and visual field loss.
15. The unique methodology of intraocular pressure measuring through the eyelid applied in the device provides new resources in ophthalmotonometry , simplicity and safety of tests.
16. Glaucomatous optic nerve atrophy results from the abnormal intraocular pressure.
17. Objective To study the influence on intraocular pressure ( IOP ) after burning sclera in rabbits with RF.
18. The measuring result of intraocular pressure of patients with aniridia will overestimate their intraocular pressure.
19. Objective To observe the effects of trabeculectomy with paracentesis under the condition of high intraocular pressure(IOP).
20. AIM: To determine the influence of topical anaesthetic drops,() age and central corneal thickness (CCT) in the determination of intraocular pressure (IOP) by non contact tonometry (NCT).
21. Aim To observe the value of hyaluronidase in treatment of filtering passage obstruction and of intraocular pressure (IOP) re-elevation after glaucoma trabeculectomy.
22. Carbonic anhydrase inhibitors (CAIs) were first used to lower intraocular pressure (IOP) in glaucoma in 1954, with the introduction of acetazolamide, methazolamide and diclofenamide were subsequently.
23. Conclusions The incidence of low-tension shallow anterior chamber caused by glaucoma surgery is 19.5%, which is correlated with intraocular pressure before surgery.
24. Objective To assess the effect of hyaluronidase subconjunctival injection on cases which have an early high intraocular pressure (IOP) after filtering operation within 2 weeks.
25. Gonioscopy of 10 eyes demonstrated peripheral anterior synechia in 9 eyes with increased intraocular pressure for which operation was needed.
26. Objective To study the effects and mechanism of Vaccum Suction on intraocular pressure.
27. Objective To primarily explore the mechanism of the patients whose intraocular pressure (IOP) controlled well with non-functioning filtering blebs after trabeculectomy.
28. The main complications were corneal edema, aqueous flare, and high intraocular pressure.
29. For example, the administration of thiopental results in a decrease intraocular pressure.
30. Postoperative complications were early corneal edema, uveitis and increased intraocular pressure.
31. For example, the administration of thiopental results in a decrease in intraocular pressure.
32. This experiment aims to study intraocular pressure changes after argon laser iridectomy and to discuss the effect by topical application of indomethacin or dexamethasone.
33. Contrary to popular belief glaucoma is not always caused by elevated intraocular pressure.
34. Effect of atracurium and succinylcholine on intraocular pressure in general anaesthesia was observed.
35. Measuring of intraocular pressure with the tonometer is permitted only through the eyelid.
36. Objective:To observe the clinical effect of paracentesis of anterior chamber before trabeculectomy in treatment of primary angle-closure glaucoma with persistent high intraocular pressure.
37. Result: Hyphema disappeared and intraocular pressure became normal after the operation.
38. Conclusion Early application of Timolol after LASIK can decrease the morbidity of refractive regression by lowering the intraocular pressure to reduce corneal ectasia.
39. Objective To investigate the influences of intraocular pressure examination with excimer laser photorefractive keratectomy(PRK).
40. The article explains the glaucomatous definition from the five positions:intraocular pressure, fundus, visual field,(Sentence dictionary) the damage of glaucomatous opticus and the safeguard of opticus.
41. The central part of cornea is the best site for measuring intraocular pressure.
42. The main operation complications were iatrogenic retinal breaks, temporary increase of intraocular pressure and cataract.
43. Cauterizing episclera venous is a simple and practical method to establish chronic high intraocular pressure rat models.
44. Objective To study the effect of hyaluronidase on intraocular pressure(IOP) and indirect orbital tension(IOT)following retrobulbar anesthesia.
45. Elevated intraocular pressure is a major risk factoravailable anti - glaucoma drugs treat this facet of the disease.
46. AIM: To study the protective effect of Ginaton and fleabane on retinal ganglion cells in rabbit chronic high intraocular pressure model.
47. In acute angle-closure glaucoma the elevated intraocular pressure (IOP) is due to an obstruction to outflow from the anterior chamber.
48. Many factors may affect the ONH circulation, such as defective autoregulation, hematologic abnormalities, systemic arteria hypertension or hypotension, and intraocular pressure.
49. People with elevated intraocular pressure are at greatest risk for developing glaucoma.
50. Conclusions These findings suggest a toxic effect of MMC on the NECs of ciliary body, possibly that can decrease the aqueous production and intraocular pressure, even causing persistent hypotony .
51. Objective To evaluate the cause of intraocular pressure elevation after vitreoretinal surgery ( VRS ) .
52. CONCLUSION: Ginaton and fleabane could prevent high intraocular pressure caused apoptosis of retinal ganglion cells.
53. Results The main ophthalmologic signs of retinoblastoma consisted of elevation of intraocular pressure, white-pupil sign, yellow-white mass in fundus and new blood vessels on the surface of the mass.
54. Through clinical studies, ketorolac tromethamine has not demonstrated any significant effect on intraocular pressure.
55. An estimate of intraocular pressure can be obtained by palpation of the globe through the lids.
56. When thiopental is administered before succinylcholine, the potential intraocular pressure associated with succinylcholine may be attenuated.
57. Conclusion Combined type trabeculectomy and tunnel posterior sclerotomy can control the intraocular pressure availably, reduce complications and improve the successful rate of the first surgery.
58. Tonometry is the measure of intraocular pressure. Measurement of intraocular pressure plays an important role in the detection and management of glaucomatous conditions.
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