方法用共焦激光角膜显微镜对临床拟诊为真菌性角膜炎的26例患者进行检查,同时行涂片检查真菌菌丝,对两组结果进行比较。
Method In vivo confocal laser corneal microscopy was performed on 26 patients of suspected fungal keratitis, The results were compared with smears.
在角膜感染后的第5,10和15天时,行共焦显微镜检查、真菌涂片检查和病理切片检查。
The infected corneas were examined by confocal microscopy, smears and histopathological analysis at 5, 10, and 15 days postinoculation.
用共聚焦显微镜来研究角膜的厚度,上皮细胞和间质细胞的密度以及基质浅丛的形态。
Confocal microscopy was used to investigate corneal thickness, epithelial and stromal cellular density, and subbasal plexus morphology.
使用角膜内皮显微镜观察手术前后角膜内皮细胞的平均密度、六边形细胞所占百分率。
The average density of endothelial cells and the percentage of hexagonal cells of corneal epithelium were observed before and after operations.
方法对87例(95只眼)翼状胬肉患者行显微镜下翼状胬肉切除并做角膜缘干细胞移植,术后随访观察12 ~24个月。
Methods 87 cases (95 eyes) pterygium were excised under microscope with corneal limbus stem cell transplantation. All cases were followed. up for 12 ~ 24 month5.
分别于碱烧伤后第7,14,28天,用裂隙灯显微镜观察兔角膜新生血管的生长情况。
We observed the growth condition of corneal new vessels CNV by slit lamp microscope at day 7 14 and 28 after alkali burn.
目的应用激光共焦显微镜对正常人眼角膜缘和中央角膜的组织结构与细胞形态的观察和分析。
Objective To observe the microstructure and cellular populations of normal human limbal and central corneas using laser confocal microscope.
方法对复发性翼状胬肉27例(30眼)在手术显微镜下行胬肉切除加自体角膜缘干细胞移植术,术后随访6月以上,观察其效果。
Methods 30 eyes of 27 patients were performed pterygium resection followed by corneal limbal autograft transplantation. All patients were followed up at least 6 months.
方法:采用角膜内皮显微镜和计算机图像分析技术,对67例糖尿病患者的128只角膜和67例正常人134只角膜进行活体角膜内皮细胞形态学定量分析。
Methods: 128 eyes from 67 patients with DM and 134 eyes from 67 age matched nondiabetic persons as normal controls were examined by specular microscopy and computer assisted image analysis techniques.
采用非接触型角膜内皮显微镜观察老年性白内障和糖尿病性白内障的内皮细胞。
Corneal endothelial cells of senile cataract and diabetic cataract were studied by non-contact specular microscope.
结果:兔眼真菌性角膜炎动物模型成功建立,并经角膜刮片、角膜共焦显微镜、组织病理切片染色检查及培养证实。
RESULTS: a rabbit model of fungal keratitis was built successfully and proved by cornea scraping, confocal microscopy, pathological section examination and culture.
用非接触型镜面反射显微镜对100名正常人角膜内皮行扫描检查;中央内皮黑区的发现率为16%。
The corneal endothelium of 100 normal subjects was examined by scanning with the noncontact clinical specular microscope.
目的:评价共焦点显微镜对亲水性软性角膜接触镜片上蛋白质沉淀情况的观察作用。
Objective: To evaluate the value of the confocal microscope in observing protein deposits on the hydrophilic contact lens.
目的:建立有色实验兔真菌性角膜炎动物模型,角膜共焦显微镜进行早期诊断。
AIM: To establish a rabbit model of fungal (aspergillus) keratitis and evaluate the role of confocal microscopy in early diagnosis.
结果:倒置显微镜观察,悬浮细胞培养法A组和组织块培养法B组扩增的角膜缘上皮细胞均能在羊膜上单层生长。
Results: A monolayer of cultured corneal limbal epithelial cells was observed by inverted microscope in both A group and B group.
目的:观察和分析体检人群中不明原因的角膜后基质层混浊的临床表现及共焦显微镜形态学特征。
Objective:To observe and analyze the clinical feature and in vivo confocal microscopic findings in patients with posterior corneal stroma opacity of unknown aetiology.
本文报道应用非接触式角膜内皮显微镜,观察107例不同年龄正常人角膜中央部内皮细胞的形态,密度和面积的结果。
This paper reports the shape, density and size of endothelial cells of central cornea which were observed under noncontact specular microscope in 107 normal persons with a wide range age.
所有患者均应用非接触型角膜内皮显微镜观察和测量角膜内皮细胞密度、六角形细胞的百分数、平均细胞面积等各项指标。
Cell density, percentage of hexagonal cells, and average cellular area of the corneal endothelium were determined by a non-contact specular microscope and a computer-aid image analysis system.
也可在裂隙灯显微镜下观察角膜曲度。
It can also be used to observe the corneal curvature under the slit-lamp microscope.
供者年龄和成功角膜移植术后5年反射显微镜辅助检查角膜内皮细胞丢失的研究结果。
Donor age and corneal endothelial cell loss 5 years after successful corneal transplantation. Specular microscopy ancillary study results.
目的采用角膜共焦显微镜活体动态观察兔角膜碱烧伤的病理改变,组织化学方法观察角膜组织病理学变化。
Observation form in the repair process of the injured rabbits eyes whose limbus cornea stem cells lack of the laser confocal microscopy;
目的采用角膜共焦显微镜活体动态观察兔角膜碱烧伤的病理改变,组织化学方法观察角膜组织病理学变化。
Observation form in the repair process of the injured rabbits eyes whose limbus cornea stem cells lack of the laser confocal microscopy;
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