Laboratory of Aquaculture and Artemia Reference Center, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, 9000, Ghent, Belgium.
Department of Morphology, Faculty of Veterinary Medicine, Ghent University, Salisburylaan 133, 9820, Merelbeke, Belgium.
Sci Rep. 2020 Apr 21;10(1):6773. doi: 10.1038/s41598-020-62933-9.
The blue mussel Mytilus edulis is an intensely studied bivalve in biomonitoring programs worldwide. The lack of detailed descriptions of hemolymph-withdrawal protocols, particularly with regard to the place from where hemolymph could be perfused from, raises questions regarding the exact composition of aspirated hemolymph and does not exclude the possibility of contamination with other body-fluids. This study demonstrates the use of high resolution X-ray computed tomography and histology combined with 3D-reconstruction using AMIRA-software to visualize some important vascular-related anatomic structures of Mytilus edulis. Based on these images, different hemolymph extraction sites used in bivalve research were visualized and described, leading to new insights into hemolymph collection. Results show that hemolymph withdrawn from the posterior adductor muscle could be extracted from small spaces and fissures between the muscle fibers that are connected to at least one hemolymph supplying artery, more specifically the left posterior gastro-intestinal artery. Furthermore, 3D-reconstructions indicate that puncturing hemolymph from the pericard, anterior aorta, atria and ventricle in a non-invasive way should be possible. Hemolymph withdrawal from the heart is less straightforward and more prone to contamination from the pallial cavity. This study resulted simultaneously in a detailed description and visualization of the vascular-related anatomy of Mytilus edulis.
贻贝 Mytilus edulis 是一种在全球生物监测计划中被深入研究的双壳贝类。缺乏对血淋巴提取方案的详细描述,特别是关于可以从何处灌注血淋巴的描述,这使得抽吸的血淋巴的确切成分存在疑问,并不能排除与其他体液混合的可能性。本研究展示了使用高分辨率 X 射线计算机断层扫描和组织学结合 AMIRA 软件的 3D 重建,以可视化贻贝 Mytilus edulis 的一些重要血管相关的解剖结构。基于这些图像,可视化和描述了双壳贝类研究中使用的不同血淋巴提取部位,从而对血淋巴采集有了新的认识。结果表明,从后闭壳肌中提取的血淋巴可以从小的空间和纤维之间的缝隙中提取出来,这些缝隙至少与一条供应血淋巴的动脉相连,更具体地说是与左后胃肠动脉相连。此外,3D 重建表明,从前心脏、前主动脉、心房和心室以非侵入性的方式穿刺心包液应该是可能的。从心脏中提取血淋巴则不那么直接,更容易受到套膜腔的污染。本研究同时详细描述和可视化了贻贝 Mytilus edulis 的血管相关解剖结构。