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首页> 外文期刊>Acta ophthalmologica Scandinavica >Inner retinal ischaemia: current understanding and needs for further investigations
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Inner retinal ischaemia: current understanding and needs for further investigations

机译:视网膜内缺血:当前的了解和进一步检查的需求

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摘要

Inner retinal ischaemia is involved in the pathogenesis of major vision-threatening diseases such as retinal vein thrombosis, diabetic retinopathy and retinopathy of prematurity. However, the pathogenesis of inner retinal ischaemia has not been fully elucidated, which represents an impediment to the development and improvement of techniques to prevent and treat these diseases on a rational basis. This paper provides a comprehensive review of current knowledge of the pathophysiology of inner retinal ischaemia, including clinical, anatomical and physiological aspects of disease development. It is suggested that chronic inner retinal ischaemia caused by capillary occlusion may develop secondary to an increase in hydrostatic pressure in the vessels. Further knowledge of the pathophysiology of inner retinal ischaemia can be obtained by identifying the mechanisms that lead to increased hydrostatic pressure in the capillary bed and establishing the structural and functional basis for the different response patterns in the central and peripheral areas of the retina that develop secondary to this increased hydrostatic pressure. Further elucidation of these unknown response patterns requires both in vitro and in vivo studies of retinal vascular pathophysiology. It is conceivable that a more detailed knowledge of these response patterns may help in the design of new treatments for retinal ischaemia and its vision-threatening consequences.
机译:视网膜内缺血是主要的威胁视力的疾病的发病机制,例如视网膜静脉血栓形成,糖尿病性视网膜病和早产儿视网膜病。但是,尚未充分阐明内部视网膜缺血的发病机理,这阻碍了在合理基础上预防和治疗这些疾病的技术的发展和改进。本文提供了有关视网膜内缺血的病理生理学当前知识的全面综述,包括疾病发展的临床,解剖学和生理学方面。建议由毛细血管闭塞引起的慢性视网膜内缺血可能继发于血管内静水压力的升高。通过确定导致毛细血管床静水压力增加的机制,并为形成继发性视网膜的中央和周围区域的不同反应模式建立结构和功能基础,可以进一步了解内部视网膜缺血的病理生理学。从而增加了静水压力。要进一步阐明这些未知的反应模式,需要在体外​​和体内对视网膜血管病理生理进行研究。可以想象的是,对这些反应模式的更详细的了解可能有助于设计视网膜缺血及其威胁视力的新疗法。

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