Department of Ophthalmology, Faculty of Medicine and University Hospital Cologne, University of Cologne, Cologne, Germany.
Department of Oncological Surgery, Multidisciplinary M. Copernicus Voivodeship Center for Oncology and Traumatology, Lodz, Poland.
Klin Monbl Augenheilkd. 2022 Jan;239(1):19-26. doi: 10.1055/a-1709-1310. Epub 2022 Feb 4.
The embryonic and fetal development of the orbit comprises a series of sequential events, starting with the fertilization of the ovum and extending until birth. Most of the publications dealing with orbital morphogenesis describe the sequential development of each germinal layer, the ectoderm with its neuroectoderm derivative and the mesoderm. This approach provides a clear understanding of the mode of development of each layer but does not give the reader a general picture of the structure of the orbit within any specified time frame. In order to enhance our understanding of the developmental anatomy of the orbit, the authors have summarized the recent developments in orbital morphogenesis, a temporally precise and morphogenetically intricate process. Understanding this multidimensional process of development in prenatal life, identifying and linking signaling cascades, as well as the regulatory genes linked to existing diseases, may pave the way for advanced molecular diagnostic testing, developing minimally invasive interventions, and the use of progenitor/stem cell and even regenerative therapy.
眼眶的胚胎和胎儿发育包括一系列连续的事件,从卵子受精开始,一直持续到出生。大多数涉及眼眶形态发生的出版物描述了每个胚层的顺序发育,外胚层及其神经外胚层衍生物和中胚层。这种方法可以清楚地了解每个层的发育模式,但不能使读者在任何特定时间框架内了解眼眶的结构全貌。为了增强我们对眼眶发育解剖学的理解,作者总结了眼眶形态发生的最新进展,这是一个时间精确且形态发生复杂的过程。理解产前生命中这种多维的发育过程,识别和连接信号级联,以及与现有疾病相关的调节基因,可能为先进的分子诊断测试、开发微创干预措施以及祖细胞/干细胞甚至再生疗法铺平道路。