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81.
SAM H. RIDGWAY 《Bioacoustics.》2013,22(1-2):3-20
ABSTRACT Whales, dolphins and porpoises, 80 species of entirely aquatic mammals, constitute the order Cetacea. In the early Eocene, about 55 to 60 million years ago according to paleontologists, distant ancestors of modern cetaceans left land for aquatic life. Cetaceans are diverse; average adult size of cetacean species varies by 1000 to 2000 times. Small and large species occupy all oceans from the equator to the polar seas, some forms inhabit rivers and four species live only in fresh water. Cetaceans are born in water and spend their entire lives in the aquatic medium. There is a great gap in knowledge about hearing in most cetacean species and especially about how noise and high-intensity sound may affect all cetaceans and other mammals underwater. Studies of temporary threshold shift (TTS) and occupational noise exposure in human divers suggest a cautious approach to cetacean noise exposure until data on cetacean TTS can give us some idea of the dynamic range of cetacean ears. 相似文献
82.
Chen Daoquan Hao Yujiang Zhao Qingzhong 《Marine and Freshwater Behaviour and Physiology》2013,45(2):163-173
To provide hormone evidence on reproductive seasonality and maturity of the Yangtze finless porpoise, the authors monitored the monthly variations of serum reproductive hormones of a male Yangtze finless porpoise in captivity via radioimmunoassay from 1997 to 2003. It was demonstrated that the immature animal had a serum T level of 28–101?ng?dL?1 (65?±?52?ng?dL?1), reached puberty with the serum T concentration ranging between 250 and 590?ng?dL?1 (390?±?130?ng?dL?1), and attained reproductive maturity when the serum T level went beyond 1120?±?180?ng?dL?1 in the breeding season. The body length growth of the animal showed a pattern similar to the serum T variations during its adolescent period from the age of 4 to 6 years. Moreover, the serum T concentration of the male porpoise exhibited significant seasonal variations, indicating that its breeding season may start as early as March and end as late as September. 相似文献
83.
Yijie Xian Kexiong Wang Lijun Dong Yujiang Hao 《Marine and Freshwater Behaviour and Physiology》2013,45(3):221-225
Sociosexual behavior in a captive male Yangtze finless porpoise calf (Neophocaena phocaenoides asiaeorientalis) was studied during its first year postpartum. This behavior was first observed at 1 month postpartum. During the year, (1) each event of the sociosexual behavior typically lasted 6–9 s and the frequency was 2.8 occurrences h?1; (2) ventral–ventral was the predominant sociosexual gesture; (3) prior to sociosexual interactions, the calf generally bonded with the receiver; (4) the mother was his preferred sociosexual partner but other adults of both sexes were also involved; (5) the frequency of sociosexual behavior decreased until the 9th month postpartum and increased thereafter. 相似文献
84.
Directional asymmetry ( DA ) of the lengths, diameters, and masses of the scapula, humerus, radius, and ulna were analyzed on a sample of 213 harbor porpoises from Denmark and West Greenland. The levels of DA were consistent across yearlings and older animals, mature and immature animals, sexes, and populations. All investigated variables showed significant DA favoring the right side. For the pooled sample, DA of lengths ranged from 0.2% SE 0.1 (ulna) to 1.2% SE 0.1 (scapula). DA s of diameters were 1.5% SE 0.2 for the humerus, 0.6% SE 0.1 for the radius, and 1.3% SE 0.2 for the ulna. DA of mass ranged from 2.8% SE 0.5 (humerus) to 4.3% SE 0.7 (ulna). The humerus and ulna had significantly larger mean diameter/ length ratios on the right side than the left, making them more robust. The large DA of scapula length indicates larger muscle mass associated with the right flipper, while the generally more robust right humerii and ulnae may be designed for higher levels of mechanical stress. These DA s and the examples of lateralized behavior recorded in cetaceans, point to the existence of lateralized use of the flippers at the population level in harbor porpoises and possibly other cetacean species. 相似文献
85.
Brenda K. Rone Alexandre N. Zerbini Erin A. Falcone Erin L. Keene Gregory S. Schorr 《The Journal of wildlife management》2024,88(3):e22543
Harbor porpoises (Phocoena phocoena) are the only cetaceans routinely sighted in Hood Canal, a narrow fjord that comprises the western edge of Puget Sound, Washington, USA. Harbor porpoises are sensitive to anthropogenic sounds, including noise from recreational and commercial vessel traffic, and the United States Navy, which conducts military training and testing within Hood Canal that can include underwater sound sources. This study was funded as part of the Navy monitoring program to assess potential impacts of naval activities on cetaceans. We conducted vessel-based line-transect surveys for harbor porpoises in Hood Canal in 2022–2023 to derive seasonal estimates of abundance and density. We carried out surveys over 37 days and surveyed the entire canal twice per season totaling 2,176 km of on-effort track line. We recorded 809 on-effort harbor porpoise groups and 1,385 individuals. Seasonal abundance estimates were lowest in winter (308 animals, 95% CI = 189–503) and gradually increased through spring and summer to a peak of 1,336 animals (95% CI = 826–2,160) in fall. Overall porpoise density was highest in central Hood Canal, an area that includes a designated United States Navy training range, though porpoise sightings were notably absent in a 21-km2 area adjacent to the naval submarine base within this otherwise high-density region. Though we collected only a single year of data, these results suggest that harbor porpoise abundance in Hood Canal increased significantly since it was last estimated (2013–2015). The notable seasonal fluctuation of harbor porpoise abundance suggests Hood Canal may host a larger percentage of the overall Washington Inland Waters stock during the fall season, raising important management considerations. 相似文献
86.
Chen Daoquan Hao Yujiang Zhao Qingzhong Wang Ding 《Marine and Freshwater Behaviour and Physiology》2006,39(2):163-173
To provide hormone evidence on reproductive seasonality and maturity of the Yangtze finless porpoise, the authors monitored the monthly variations of serum reproductive hormones of a male Yangtze finless porpoise in captivity via radioimmunoassay from 1997 to 2003. It was demonstrated that the immature animal had a serum T level of 28-101 ng dL-1 (65 ± 52 ng dL-1), reached puberty with the serum T concentration ranging between 250 and 590 ng dL-1 (390 ± 130 ng dL-1), and attained reproductive maturity when the serum T level went beyond 1120 ± 180 ng dL-1 in the breeding season. The body length growth of the animal showed a pattern similar to the serum T variations during its adolescent period from the age of 4 to 6 years. Moreover, the serum T concentration of the male porpoise exhibited significant seasonal variations, indicating that its breeding season may start as early as March and end as late as September. 相似文献
87.
88.
人工饲养环境下长江江豚的行为谱的构建 总被引:4,自引:0,他引:4
对行为的定义和描述是定量开展行为学研究的前提与基础。通过对人工饲养环境下长江江豚行为的观察、记录和分析,定义和描述了长江江豚近40种行为。在此基础上,初步构建了人工饲养环境下长江江豚行为学研究所必需的行为谱,由活跃的水面行为、玩耍、索食、社群行为、性行为、休息、摩擦、杂类八个类别组成。文中对某些行为可能具有的生物学意义进行了初步的分析和讨论。 相似文献
89.
A preliminary study was carried out to investigate diurnal changes of behavior of three, one adult male, one adult female, and one juvenile female, Yangtze finless porpoises (Neophocaena phocaenoides asiaeorientalis) in captivity. The respiration and behavior of the porpoises were recorded for 222 hr across 42 days. Behavioral data were recorded for eight general categories: aerial display and fast swimming, begging for fish, playing, nonsexual socializing, sexual behavior, resting, rubbing, and miscellaneous (i.e., other behaviors not included in the above categories). Each behavioral category was scored using one‐zero sampling with 10‐min intervals. The adult male showed shorter mean respiratory intervals at night (19:00–7:00 h), whereas the mean respiratory intervals of the females were shorter during the day (7:00–19:00 h). Begging for fish of all individuals, playing of the juvenile female, nonsexual socializing, and miscellaneous behavior of the adult female and resting of the male were observed more easily in the day, and aerial display and fast swimming of the adults and resting of the females were observed more easily at night. No significant diurnal difference was found, however, in the remaining categories of each individual. Each of the three porpoises therefore showed a distinct diurnal pattern, but none was obviously more active in the daytime than during the nighttime. Results suggest that daytime‐only feeding schedules may be insufficient to meet the energetic needs of marine mammals that show a 24‐hr activity cycle, and that nighttime feeding may be a worthwhile addition to husbandry routines. Zoo Biol 0:1–11, 2005. © 2005 Wiley‐Liss, Inc. 相似文献
90.
Life history constrains biochemical development in the highly specialized odontocete echolocation system 总被引:1,自引:0,他引:1
Koopman HN Zahorodny ZP 《Proceedings. Biological sciences / The Royal Society》2008,275(1649):2327-2334
The vertebrate head has undergone enormous modification from the features borne by early ancestors. The growth of skull bones has been well studied in many species, yet little is known about corresponding soft tissue development. Among mammals, some of the most unusual examples of cranial evolution exist in the toothed whales (odontocetes). Specialized fat bodies in toothed whale heads play important roles in sound transmission and reception. These fat bodies contain unique endogenous lipids, with favourable acoustic properties, arranged in highly organized, three-dimensional patterns. We link variation in developmental rates of acoustic fats with life-history strategy, using bottlenose dolphins and harbour porpoises. Porpoise acoustic fats attain adult configurations earlier (less than 1 year) and at a faster pace than dolphins. The accelerated lipid accumulation in porpoises reflects the earlier need for fully functional echolocation systems. Dolphins enjoy 3-6 years of maternal care; porpoises must achieve total independence by approximately nine months. Further, a stereotypic 'blueprint' for the spatial distribution of lipids is established prior to birth, demonstrating the highly conserved nature of the intricate biochemical arrangement in acoustic tissues. This system illustrates an unusual case of soft tissue development being constrained by life history, rather than the more commonly observed mechanistic or phyletic constraints. 相似文献