Wei Chong, Wang Zhitao, Song Zhongchang, Wang Kexiong, Wang Ding, Au Whitlow W L, Zhang Yu
Key Laboratory of Underwater Acoustic Communication and Marine Information Technology (Xiamen University), Ministry of Education, Xiamen 361005, Fujian, China; Hawaii Institute of Marine Biology, University of Hawaii, 46-007 Lilipuna Road, Kaneohe, Hawaii 96744, United States of America.
Key Laboratory of Aquatic Biodiversity and Conservation of the Chinese Academy of Sciences, Institute of Hydrobiology of the Chinese Academy of Sciences, Wuhan 430072, P. R. China; University of Chinese Academy of Sciences, Beijing 100039, P. R. China.
PLoS One. 2015 Apr 9;10(4):e0121442. doi: 10.1371/journal.pone.0121442. eCollection 2015.
The reconstruction of the acoustic properties of a neonate finless porpoise's head was performed using X-ray computed tomography (CT). The head of the deceased neonate porpoise was also segmented across the body axis and cut into slices. The averaged sound velocity and density were measured, and the Hounsfield units (HU) of the corresponding slices were obtained from computed tomography scanning. A regression analysis was employed to show the linear relationships between the Hounsfield unit and both sound velocity and density of samples. Furthermore, the CT imaging data were used to compare the HU value, sound velocity, density and acoustic characteristic impedance of the main tissues in the porpoise's head. The results showed that the linear relationships between HU and both sound velocity and density were qualitatively consistent with previous studies on Indo-pacific humpback dolphins and Cuvier's beaked whales. However, there was no significant increase of the sound velocity and acoustic impedance from the inner core to the outer layer in this neonate finless porpoise's melon.
利用X射线计算机断层扫描(CT)对新生江豚头部的声学特性进行了重建。对死亡新生江豚的头部也沿身体轴线进行了分割并切成薄片。测量了平均声速和密度,并通过计算机断层扫描获得了相应切片的亨氏单位(HU)。采用回归分析来显示亨氏单位与样本声速和密度之间的线性关系。此外,利用CT成像数据比较了江豚头部主要组织的HU值、声速、密度和声学特性阻抗。结果表明,HU与声速和密度之间的线性关系在质量上与先前对印太驼背豚和柯氏喙鲸的研究一致。然而,在这只新生江豚的瓜状脂肪体中,从内核到外层,声速和声阻抗并没有显著增加。