Cross-sectional anatomy, computed tomography, and magnetic resonance imaging of the banded houndshark (Triakis scyllium)

Author:

Kim Sang WhaORCID,Yuen Adams Hei LongORCID,Poon Cherry Tsz ChingORCID,Hwang Joon Oh,Lee Chang Jun,Oh Moon-Kwan,Kim Ki Tae,Kim Hyoun Joong,Giri Sib Sankar,Kim Sang Guen,Kwon Jun,Lee Sung Bin,Choi Min Cheol,Park Se Chang

Abstract

AbstractDue to their important phylogenetic position among extant vertebrates, sharks are an invaluable group in evolutionary developmental biology studies. A thorough understanding of shark anatomy is essential to facilitate these studies and documentation of this iconic taxon. With the increasing availability of cross-sectional imaging techniques, the complicated anatomy of both cartilaginous and soft tissues can be analyzed non-invasively, quickly, and accurately. The aim of this study is to provide a detailed anatomical description of the normal banded houndshark (Triakis scyllium) using computed tomography (CT) and magnetic resonance imaging (MRI) along with cryosection images. Three banded houndsharks were scanned using a 64-detector row spiral CT scanner and a 3 T MRI scanner. All images were digitally stored and assessed using open-source Digital Imaging and Communications in Medicine viewer software in the transverse, sagittal, and dorsal dimensions. The banded houndshark cadavers were then cryosectioned at approximately 1-cm intervals. Corresponding transverse cryosection images were chosen to identify the best anatomical correlations for transverse CT and MRI images. The resulting images provided excellent detail of the major anatomical structures of the banded houndshark. The illustrations in the present study could be considered as a useful reference for interpretation of normal and pathological imaging studies of sharks.

Funder

National Research Foundation of Korea

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference51 articles.

1. Lack, M. & Sant, G. The future of sharks: a review of action and inaction. TRAFFIC International and the Pew Environment Group. https://www.pewtrusts.org/~/media/legacy/uploadedfiles/peg/publications/report/the20future20of20sharkspdf.pdf (2011).

2. Barker, M. J. & Schluessel, V. Managing global shark fisheries: Suggestions for prioritising management strategies. Aquat. Conserv. 15, 325–347 (2005).

3. Baum, J. K. & Blanchard, W. Inferring shark population trends from generalized linear mixed models of pelagic longline catch and effort data. Fish Res. 102, 229–239 (2010).

4. International Union for Conservation of Nature (IUCN). The IUCN Red List of Threatened Species. Version 2018–1. http://www.iucnredlist.org (2018).

5. Heithaus, M. R., Wirsing, A. J. & Dill, L. M. The ecological importance of intact top-predator populations: A synthesis of 15 years of research in a seagrass ecosystem. Mar. Freshw. Res. 63(11), 1039–1050 (2012).

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