Akyol N, Kükner A S, Ozdemir T, Esmerligil S
Department of Ophthalmology, Firat University, School of Medicine, Elazig, Turkey.
Can J Ophthalmol. 1996 Apr;31(3):113-9.
To determine changes in choroidal and retinal blood flow in myopic retinopathy.
Case-control study.
Ophthalmology department of a university-affiliated hospital in Elazig, Turkey.
Twenty-one consecutive patients (40 eyes) with degenerative myopia and 20 age-matched healthy emmetropic volunteers (38 eyes). Both groups were free of any systemic disease, such as diabetes mellitus or hypertension, that can affect micro- or macrocirculation.
Posterior ciliary artery and central retinal artery peak systolic, peak diastolic and mean blood flow velocity (measured with colour Doppler ultrasonography), pulsatility index and resistance index.
The posterior ciliary artery mean peak systolic (12.34 vs. 16.90 cm/s) and peak diastolic (3.12 vs. 5.10 cm/s) blood flow velocity values were significantly lower in the study group than in the control group (p < 0.001). There was a significant difference in the posterior ciliary artery resistance index between the two groups (0.74 vs. 0.69) (p < 0.05). The central retinal artery mean peak systolic (6.64 vs. 9.72 cm/s) and peak diastolic (2.01 vs. 3.07 cm/s) blood flow velocity values were also significantly lower in the study group than in the control group (p < 0.001).
Choroidal and retinal blood flow was decreased in degenerative myopia. The reduced choroidal blood flow may be partly due to increased vascular resistance. Decreased retinal blood flow is probably an adaptive change.
确定近视性视网膜病变中脉络膜和视网膜血流的变化。
病例对照研究。
土耳其埃拉泽格一所大学附属医院的眼科。
21例连续性变性近视患者(40只眼)和20名年龄匹配的健康正视志愿者(38只眼)。两组均无任何可影响微循环或大循环的全身性疾病,如糖尿病或高血压。
睫状后动脉和视网膜中央动脉的收缩期峰值、舒张期峰值及平均血流速度(用彩色多普勒超声测量)、搏动指数和阻力指数。
研究组睫状后动脉平均收缩期峰值(12.34 vs. 16.90 cm/s)和舒张期峰值(3.12 vs. 5.10 cm/s)血流速度值显著低于对照组(p < 0.001)。两组睫状后动脉阻力指数存在显著差异(0.74 vs. 0.69)(p < 0.05)。研究组视网膜中央动脉平均收缩期峰值(6.64 vs. 9.72 cm/s)和舒张期峰值(2.01 vs. 3.07 cm/s)血流速度值也显著低于对照组(p < 0.001)。
变性近视患者脉络膜和视网膜血流减少。脉络膜血流减少可能部分归因于血管阻力增加。视网膜血流减少可能是一种适应性变化。