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犀牛的脚走出了经验法则:一种同步计算机断层扫描-数字 X 光成像的野生动物成像开拓方法。

Rhinoceros feet step out of a rule-of-thumb: a wildlife imaging pioneering approach of synchronized computed tomography-digital radiography.

机构信息

Department of Reproduction Management, Leibniz Institute for Zoo and Wildlife Research, Berlin, Germany.

ZooParc de Beauval, Saint-Aignan, France.

出版信息

PLoS One. 2014 Jun 25;9(6):e100415. doi: 10.1371/journal.pone.0100415. eCollection 2014.

Abstract

Currently, radiography is the only imaging technique used to diagnose bone pathology in wild animals situated under "field conditions". Nevertheless, while chronic foot disease in captive mega-herbivores is widely reported, foot radiographic imaging is confronted with scarcity of studies. Numerous hindrances lead to such limited numbers and it became very clear that the traditional perspective on bone imaging in domestic animals based on extensive studies and elaborated statistical evaluations cannot be extrapolated to their non-domestic relatives. For these reasons, the authors initiated a multi-modality imaging study and established a pioneering approach of synchronized computed tomography (CT) and digital radiography (DR), based on X-ray projections derived from three-dimensional CT reconstructed images. Whereas this approach can be applied in any clinical field, as a case of outstanding importance and great concern for zoological institutions, we selected foot bone pathologies in captive rhinoceroses to demonstrate the manifold applications of the method. Several advances were achieved, endowing the wildlife clinician with all-important tools: prototype DR exposure protocols and a modus operandi for foot positioning, advancing both traditional projections and, for the first-time, species-related radiographic views; assessment of radiographic diagnostic value for the whole foot and, in premiere, for each autopodial bone; together with additional insights into radiographic appearance of bone anatomy and pathology with a unique, simultaneous CT-DR correlation. Based on its main advantages in availing a wide range of keystone data in wildlife imaging from a limited number of examined subjects and combining advantages of CT as the golden standard method for bone diseases' diagnostic with DR's clinical feasibility under field conditions, synchronized CT-DR presents a new perspective on wildlife's health management. With this we hope to provide veterinary clinicians with concrete imaging techniques and substantial diagnostic tools, which facilitate straightforward attainment and interpretation of field radiography images taken worldwide.

摘要

目前,放射摄影是在“野外条件”下诊断野生动物骨骼病理学的唯一成像技术。然而,尽管圈养大型草食动物的慢性足部疾病被广泛报道,但足部放射影像学研究却很少。许多障碍导致研究数量有限,很明显,基于广泛研究和详细统计评估的家畜骨骼成像的传统观点不能外推到它们的非家畜亲属。出于这些原因,作者启动了一项多模态成像研究,并基于三维 CT 重建图像的 X 射线投影,建立了一种开创性的同步计算机断层扫描(CT)和数字放射摄影(DR)方法。虽然这种方法可以应用于任何临床领域,但作为动物园机构非常重要和关注的一个案例,我们选择了圈养犀牛的足部骨骼病理学来展示该方法的多种应用。我们取得了几项进展,为野生动物临床医生提供了所有重要的工具:原型 DR 曝光方案和足部定位操作方法,既推进了传统的投影,也首次推进了与物种相关的放射学视图;评估整个足部的放射诊断价值,并且是首次对每个附肢骨进行评估;同时,通过独特的、同时的 CT-DR 相关性,对骨骼解剖和病理学的放射学表现有了更多的了解。基于其在从有限数量的检查对象中获得野生动物成像的关键数据方面的主要优势,并结合 CT 作为骨骼疾病诊断的金标准方法与 DR 在野外条件下的临床可行性的优势,同步 CT-DR 为野生动物健康管理提供了新的视角。我们希望为兽医临床医生提供具体的成像技术和实质性的诊断工具,以方便在全球范围内获得和解释现场放射摄影图像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9650/4070926/68cd97e34d3f/pone.0100415.g001.jpg

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