睫状体
超声生物显微镜
睫状肌
睫状突
扁平部
医学
IRIS(生物传感器)
青光眼
眼前节
纤毛
眼科
小梁网
解剖
光学相干层析成像
镜头(地质)
住宿
玻璃体切除术
生物
角膜
神经科学
光学
视力
物理
计算机科学
人工智能
细胞生物学
生物识别
作者
Tarannum Mansoori,Sirisha Senthil
标识
DOI:10.1080/08820538.2022.2085515
摘要
Purpose We conducted a systematic search of literature to understand the various methods of imaging of the ciliary body.Methods PubMed, Science Direct, Cochrane Library and Google Scholar were searched comprehensively and systematically to find studies related to the various modalities of ciliary body imaging.Results The various ciliary body parameters that have been described are Ciliary body thickness, Ciliary body length, ciliary muscle thickness, ciliary process length, ciliary muscle length, ciliary muscle anterior length, trabecular ciliary process distance and Iris ciliary process distance. The various angles which have been measured, which mostly have a significance in Primary angle closure glaucoma (PACG) are Iris ciliary angle, Trabecular ciliary angle, scleral ciliary process angle. Various authors have defined them in various ways with subtle differences. Plateau iris and PACG mechanisms, not forgetting malignant glaucoma are better understood with imaging of the ciliary body using the ultrasound biomicroscopy (UBM). The anterior segment optical coherence tomography (ASOCT) imaging of the ciliary body has been described albeit with its own disadvantages. A few other fields dependant on the importance of ciliary body imaging are intravitreal injections, pars plana vitrectomy, measurements for implantable collamer lens (ICL) and of utmost importance, the differentiating features of ciliary body masses.Conclusion The UBM is still preferred over the ASOCT for imaging of the ciliary body. A lot of lacunae of knowledge still exists and consensus has to be reached on defining all the parameters universally. Future studies will be able to shed more light on the role of the ciliary body in the many ocular disorders mentioned in this review.
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