首页> 外文期刊>Journal of experimental zoology, Part B. Molecular and developmental evolution >Iodine-enhanced micro-CT imaging: Methodological refinements for the study of the soft-tissue anatomy of post-embryonic vertebrates
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Iodine-enhanced micro-CT imaging: Methodological refinements for the study of the soft-tissue anatomy of post-embryonic vertebrates

机译:碘增强的微CT成像:胚胎后脊椎动物软组织解剖学研究的方法改进

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The now widespread use of non-destructive X-ray computed tomography (CT) and micro-CT (mu CT) has greatly augmented our ability to comprehensively detail and quantify the internal hard-tissue anatomy of vertebrates. However, the utility of X-ray imaging for gaining similar insights into vertebrate soft-tissue anatomy has yet to be fully realized due to the naturally low X-ray absorption of non-mineralized tissues. In this study, we show how a wide diversity of soft-tissue structures within the vertebrate head-including muscles, glands, fat deposits, perichondria, dural venous sinuses, white and gray matter of the brain, as well as cranial nerves and associated ganglia-can be rapidly visualized in their natural relationships with extraordinary levels of detail using iodine-enhanced (i-e) mu CT imaging. To date, Lugol's iodine solution (I2KI) has been used as a contrast agent for mu CT imaging of small invertebrates, vertebrate embryos, and certain isolated parts of larger, post-embryonic vertebrates. These previous studies have all yielded promising results, but visualization of soft tissues in smaller invertebrate and embryonic vertebrate specimens has generally been more complete than that for larger, post-embryonic vertebrates. Our research builds on these previous studies by using high-energy mu CT together with more highly concentrated I2KI solutions and longer staining times to optimize the imaging and differentiation of soft tissues within the heads of post-embryonic archosaurs (Alligator mississippiensis and Dromaius novaehollandiae). We systematically quantify the intensities of tissue staining, demonstrate the range of anatomical structures that can be visualized, and generate a partial three-dimensional reconstruction of alligator cephalic soft-tissue anatomy. J. Exp. Zool. (Mol. Dev. Evol.) 322B: 166-176, 2014
机译:现在,无损X射线计算机断层扫描(CT)和微型CT(μCT)的广泛使用大大增强了我们全面详细描述和量化脊椎动物内部硬组织解剖结构的能力。然而,由于未矿化组织的天然X射线吸收低,因此X射线成像在获取脊椎动物软组织解剖学方面的类似见解方面的效用尚未完全实现。在这项研究中,我们展示了脊椎动物头内的软组织结构如何广泛变化,包括肌肉,腺体,脂肪沉积,软骨膜,硬脑膜静脉窦,脑白和灰质以及颅神经和相关神经节-可以使用碘增强的(即)μCT成像,以非凡的细节迅速地将它们之间的自然关系可视化。迄今为止,Lugol的碘溶液(I2KI)已被用作对小型无脊椎动物,脊椎动物胚胎以及较大的后胚胎脊椎动物的某些分离部分进行mu CT成像的造影剂。这些先前的研究都取得了令人鼓舞的结果,但是与较小的无脊椎动物和胚胎脊椎动物相比,较小的无脊椎动物和胚胎脊椎动物标本中的软组织可视化通常更加完整。我们的研究基于先前的研究,通过使用高能mu CT以及更高浓度的I2KI解决方案和更长的染色时间来优化胚胎后弓形恐龙(短吻鳄和密西西比巨蜥)头部的软组织的成像和分化。我们系统地量化组织染色的强度,展示可以可视化的解剖结构的范围,并生成鳄鱼头软组织解剖学的部分三维重建。 J. Exp。 Zool。 (分子开发演化)322B:166-176,2014

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