S. Trufanov, A. Fedorov, V. R. Mamikonyan, L. Tekeeva, S. A. Malozhen, A. Karamyan
{"title":"鲍曼膜金刚石毛刺抛光方法的实验研究","authors":"S. Trufanov, A. Fedorov, V. R. Mamikonyan, L. Tekeeva, S. A. Malozhen, A. Karamyan","doi":"10.18008/1816-5095-2018-2-176-181","DOIUrl":null,"url":null,"abstract":"Purpose: to develop the optimal (safe and effective) method of diamond burr polishing of Bowman’s membrane (DBPBM) for the possible use it in the treatment of the recurrent corneal erosion syndrome (RCES) in the experiment.Material and methods. DBPBM in different modifications of the method and the mechanical deepithelization were performed in experiment on 19 human cadaver eyes. We use system Ophtho-Burr for DBPBM that includes a tip and ophthalmic burrs with diameter 1mm, 2.5 mm, 5 mm, varying the speed of rotation of burr. For 3 eyes — polishing with the application of burr with a diameter of 5 mm, the rotation frequency of 4000 rpm using 2 passes over the surface of the cornea. For 3 eyes — burr with a diameter of 2.5 mm, rotation frequency of 4000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed of 8000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed 4000 rpm with 4 passes along the surface of the cornea. For 4 eyes — diameter was 1 mm at speed of 4000 rpm in 2 perpendicular passes. For 3 the eyes was conducted mechanical deepithelization. Subsequent histopathological investigation of the cornea was performed by method of semi-thin section, with polychrome staining.Results. The obtained results of histological studies of DBPBM in different versions on cadaver cornea is allowed to choose the optimal variant of surgical intervention for use in clinical conditions. It consisted in a selection of burr with a diameter of 1 mm, the rotation frequency of the 4000 rpm and 2 perpendicular passes with a moderate compression of the cornea. The abovementioned technique of intervention allows removing completely the corneal epithelium with a basal membrane and save uniform in thickness, fully deepitelizationed Bowman’s membrane.Conclusion.Careful and accurate removal of dysplastic corneal epithelium in cases of the recurrent corneal erosion syndrome using proposed method in clinical conditions should contribute to the creation optimal environments for adequate reepithelization with steady epithelial-stromal adhesion. The remaining nearly intact Bowman’s membrane after procedure can prevent some postoperative complications such as haze and induced refractive disorders.","PeriodicalId":37713,"journal":{"name":"Biomedical Photonics","volume":"1 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2018-07-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Experimental Study of Diamond Burr Polishing Methods of Bowman’s Membrane\",\"authors\":\"S. Trufanov, A. Fedorov, V. R. Mamikonyan, L. Tekeeva, S. A. Malozhen, A. Karamyan\",\"doi\":\"10.18008/1816-5095-2018-2-176-181\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Purpose: to develop the optimal (safe and effective) method of diamond burr polishing of Bowman’s membrane (DBPBM) for the possible use it in the treatment of the recurrent corneal erosion syndrome (RCES) in the experiment.Material and methods. DBPBM in different modifications of the method and the mechanical deepithelization were performed in experiment on 19 human cadaver eyes. We use system Ophtho-Burr for DBPBM that includes a tip and ophthalmic burrs with diameter 1mm, 2.5 mm, 5 mm, varying the speed of rotation of burr. For 3 eyes — polishing with the application of burr with a diameter of 5 mm, the rotation frequency of 4000 rpm using 2 passes over the surface of the cornea. For 3 eyes — burr with a diameter of 2.5 mm, rotation frequency of 4000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed of 8000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed 4000 rpm with 4 passes along the surface of the cornea. For 4 eyes — diameter was 1 mm at speed of 4000 rpm in 2 perpendicular passes. For 3 the eyes was conducted mechanical deepithelization. Subsequent histopathological investigation of the cornea was performed by method of semi-thin section, with polychrome staining.Results. The obtained results of histological studies of DBPBM in different versions on cadaver cornea is allowed to choose the optimal variant of surgical intervention for use in clinical conditions. It consisted in a selection of burr with a diameter of 1 mm, the rotation frequency of the 4000 rpm and 2 perpendicular passes with a moderate compression of the cornea. The abovementioned technique of intervention allows removing completely the corneal epithelium with a basal membrane and save uniform in thickness, fully deepitelizationed Bowman’s membrane.Conclusion.Careful and accurate removal of dysplastic corneal epithelium in cases of the recurrent corneal erosion syndrome using proposed method in clinical conditions should contribute to the creation optimal environments for adequate reepithelization with steady epithelial-stromal adhesion. 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引用次数: 3
摘要
目的:探索鲍曼膜金刚石毛刺抛光(DBPBM)的最佳(安全有效)方法,以期在实验中用于治疗复发性角膜侵蚀综合征(RCES)。材料和方法。在19只人的尸体眼睛上进行了不同修改方法的DBPBM和机械深度化实验。我们使用系统眼科毛刺DBPBM,包括一个尖端和直径1mm, 2.5 mm, 5mm的眼科毛刺,改变毛刺的旋转速度。对3只眼睛进行抛光,使用直径为5mm的毛刺,旋转频率为4000转/分,在角膜表面使用2次。对于直径为2.5毫米的3眼毛刺,在2个垂直的通道中旋转频率为4000 rpm。对于3眼直径毛刺1毫米在速度8000转/分钟在2个垂直通道。以4000转/分钟的速度沿角膜表面进行4次毛刺,3眼直径毛刺1毫米。4眼直径为1毫米,速度为4000转/分钟,在2个垂直通道。对3只眼进行机械深度摘除术。采用半薄切片法对角膜进行组织病理学检查,并进行彩色染色。不同版本的DBPBM在尸体角膜上的组织学研究结果,允许选择最佳的手术干预变体用于临床条件。它包括选择直径为1mm的毛刺,旋转频率为4000 rpm,垂直通过2次,适度压缩角膜。结论:在临床条件下,在复发性角膜侵蚀综合征病例中,采用上述干预技术,仔细准确地去除发育不良的角膜上皮,有助于为充分的再上皮形成和稳定的上皮-间质粘连创造最佳环境。术后保留的几乎完整的鲍曼膜可以防止一些术后并发症,如雾霭和诱发的屈光不正。
Experimental Study of Diamond Burr Polishing Methods of Bowman’s Membrane
Purpose: to develop the optimal (safe and effective) method of diamond burr polishing of Bowman’s membrane (DBPBM) for the possible use it in the treatment of the recurrent corneal erosion syndrome (RCES) in the experiment.Material and methods. DBPBM in different modifications of the method and the mechanical deepithelization were performed in experiment on 19 human cadaver eyes. We use system Ophtho-Burr for DBPBM that includes a tip and ophthalmic burrs with diameter 1mm, 2.5 mm, 5 mm, varying the speed of rotation of burr. For 3 eyes — polishing with the application of burr with a diameter of 5 mm, the rotation frequency of 4000 rpm using 2 passes over the surface of the cornea. For 3 eyes — burr with a diameter of 2.5 mm, rotation frequency of 4000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed of 8000 rpm in 2 perpendicular passes. For 3 eyes — diameter burr 1 mm at speed 4000 rpm with 4 passes along the surface of the cornea. For 4 eyes — diameter was 1 mm at speed of 4000 rpm in 2 perpendicular passes. For 3 the eyes was conducted mechanical deepithelization. Subsequent histopathological investigation of the cornea was performed by method of semi-thin section, with polychrome staining.Results. The obtained results of histological studies of DBPBM in different versions on cadaver cornea is allowed to choose the optimal variant of surgical intervention for use in clinical conditions. It consisted in a selection of burr with a diameter of 1 mm, the rotation frequency of the 4000 rpm and 2 perpendicular passes with a moderate compression of the cornea. The abovementioned technique of intervention allows removing completely the corneal epithelium with a basal membrane and save uniform in thickness, fully deepitelizationed Bowman’s membrane.Conclusion.Careful and accurate removal of dysplastic corneal epithelium in cases of the recurrent corneal erosion syndrome using proposed method in clinical conditions should contribute to the creation optimal environments for adequate reepithelization with steady epithelial-stromal adhesion. The remaining nearly intact Bowman’s membrane after procedure can prevent some postoperative complications such as haze and induced refractive disorders.
期刊介绍:
The main goal of the journal – to promote the development of Russian biomedical photonics and implementation of its advances into medical practice. The primary objectives: - Presentation of up-to-date results of scientific and in research and scientific and practical (clinical and experimental) activity in the field of biomedical photonics. - Development of united Russian media for integration of knowledge and experience of scientists and practitioners in this field. - Distribution of best practices in laser medicine to regions. - Keeping the clinicians informed about new methods and devices for laser medicine - Approval of investigations of Ph.D candidates and applicants.