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Ultrahigh-Field Quantitative MR Microscopy of the Chicken Eye In Vivo Throughout the In Ovo Period

机译:卵子期内鸡眼中鸡眼的超高场定量MR显微镜

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PurposeUltrahigh-field MRI (UHF-MRI) with an in-plane spatial resolution of less than 100m is known as MR microscopy (MRM). MRM provides highly resolved anatomical images and allows quantitative assessment of different tissue types using diffusion-weighted imaging (DWI). The aim of the present study was to evaluate the feasibility of combined in vivo anatomical and quantitative assessment of the developing chicken eye in ovo.ProceduresThirty-eight fertilized chicken eggs were examined at 7.1T (ClinScan, Bruker Biospin, Germany) acquiring a dataset comprising T2-weighted anatomical images, DWI, and diffusion tensor imaging. To reduce motion artifacts, the eggs were moderately cooled before and during MR imaging. Two eggs were imaged daily for the entire developmental period, and 36 eggs were examined pairwise at only one time point of the embryonic period. Development of the eye was anatomically and quantitatively assessed.ResultsFrom the D5 embryonic stage (116-124h), MRM allowed differentiation between lens and vitreous body. The lens core and periphery were first identified at D9. DWI allowed quantification of lens maturation based on a significant decrease in apparent diffusion coefficient values and course of fractional anisotropy. Repeated moderate cooling had no influence on the development of the chicken embryo.ConclusionsMRM allows in vivo assessment of embryonic development of the chicken eye in ovo without affecting normal development. The method provides anatomical information supplemented by quantitative evaluation of lens development using DWI. With increasing availability of ultrahigh-field MR systems, this technique may provide a noninvasive complementary tool in the field of experimental ophthalmology.
机译:具有小于100米的平面空间分辨率的目的地恒定场段MRI(UHF-MRI)被称为MR显微镜(MRM)。 MRM提供高度分辨的解剖图像,并允许使用扩散加权成像(DWI)进行不同组织类型的定量评估。本研究的目的是评估在卵oO.procedureesthirty-8株鸡眼的体内解剖学和定量评估的可行性,在7.1T(Clinscan,Bruker Biospin,Germany)上进行了7.1t(Clinscan,Bruker Biospin,Germany) T2加权解剖图像,DWI和扩散张量成像。为了减少运动伪影,在MR成像之前和期间,卵子被中度冷却。每天为整个发育期进行两次鸡蛋,并且在胚胎周期的一个时间点进行36个鸡蛋。眼睛的发展是解剖学和定量评估的。从D5胚胎阶段(116-124H),MRM允许晶状体和玻璃体之间的分化。首先在D9鉴定镜片芯和周边。 DWI基于表观扩散系数值的显着降低以及分数各向异性的过程的显着降低,允许定量定量镜头成熟。反复中等冷却对鸡胚的发展没有影响.ConclusionsMRM允许体内评估卵巢的鸡眼的胚胎发育,而不会影响正常发育。该方法提供了使用DWI对透镜开发的定量评估补充的解剖信息。随着超高场MR系统的增加,该技术可以在实验眼科领域提供非侵入性互补工具。

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