单峰驼腕骨的磁共振成像。

IF 2.3 2区 农林科学 Q1 VETERINARY SCIENCES
Ayman El Nahas, Usama Hagag
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引用次数: 0

摘要

背景:单峰驼(Camelus dromedarius)的腕关节有多个关节,由多个骨骼和软组织组成。由于结构叠加,腕关节的放射成像和/或超声波成像具有挑战性。高场磁共振成像(MRI)技术可排除叠加组织,并在多个序列和平面上提供高软组织对比度。因此,了解正常的磁共振成像解剖结构对临床检查至关重要。磁共振成像对软组织和关节软骨的检查高度敏感,因此被广泛用于勾勒关节解剖结构和评估各种肌肉骨骼疾病。要进行完整的核磁共振成像检查,必须在不同平面上使用多个序列获取特定解剖区域的核磁共振成像图像。鉴于有关单峰骆驼腕骨磁共振成像特征的信息匮乏,本研究使用高场强 1.5 特斯拉超导磁体在不同序列和平面上展示了骆驼腕骨中具有临床意义的结构的磁共振成像外观。为此,研究人员检查了从 6 只临床上无跛行的成年单峰驼身上提取的 12 只尸体前肢:结果:对桡骨、腕骨和掌骨的皮质和髓质进行了评估。腕关节的关节软骨被描绘出来,显示出中等强度。腕肌腱在所有脉冲序列中的信号强度都较低。副韧带和腕间韧带显示出混合信号强度:所获得的数据概述了核磁共振成像在骆驼腕骨检查中的有效性,可作为临床患者的解读参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic resonance imaging of the dromedary camel carpus.

Background: The dromedary camel (Camelus dromedarius) carpal joint presents multiple joints and constitutes several bones and soft tissues. Radiography and/or ultrasonography of the carpus are challenging due to structural superimposition. High-field magnetic resonance imaging (MRI) technique precludes superimposed tissues and offers high soft tissue contrast in multiple sequences and planes. Hence, understanding the normal MRI anatomy is crucial during clinical investigations. Magnetic resonance imaging is highly sensitive for investigation of soft tissues and articular cartilage; therefore, it is extensively used for outlining joint anatomy and evaluation of a wide range of musculoskeletal conditions. MRI images of a specific anatomical region acquired by using multiple sequences in various planes are necessary for a complete MRI examination. Given the dearth of information on the MRI features of the dromedary camel carpus, the current study demonstrates the MRI appearance of the clinically significant structures in the camel carpus in various sequences and planes using a high-field 1.5 Tesla superconducting magnet. For this purpose, twelve cadaveric forelimbs, obtained from 6 clinically sound lameness free adult dromedary camels, were examined.

Results: The cortex and medulla of the radius, carpal bones and metacarpus were evaluated. Articular cartilage of the carpal joints was depicted and showed intermediate intensity. Carpal tendons expressed lower signal intensity in all pulse sequences. The collateral and inter-carpal ligaments showed mixed signal intensity.

Conclusions: The obtained data outlines the validation of MRI for investigation of the camel carpus and could set as a reference for interpretation in clinical patients.

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来源期刊
BMC Veterinary Research
BMC Veterinary Research VETERINARY SCIENCES-
CiteScore
4.80
自引率
3.80%
发文量
420
审稿时长
3-6 weeks
期刊介绍: BMC Veterinary Research is an open access, peer-reviewed journal that considers articles on all aspects of veterinary science and medicine, including the epidemiology, diagnosis, prevention and treatment of medical conditions of domestic, companion, farm and wild animals, as well as the biomedical processes that underlie their health.
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