Meagher Erin M, McLellan William A, Westgate Andrew J, Wells Randall S, Blum James E, Pabst D Ann
Department of Biology and Marine Biology, University of North Carolina Wilmington, Wilmington, NC 28403, USA.
J Comp Physiol B. 2008 May;178(4):529-43. doi: 10.1007/s00360-007-0245-5. Epub 2008 Jan 9.
This study investigated patterns of heat loss in bottlenose dolphins (Tursiops truncatus) resident to Sarasota Bay, FL, USA, where water temperatures vary seasonally from 11 to 33 degrees C. Simultaneous measurements of heat flux (HF) and skin surface temperature were collected at the body wall and appendages of dolphins during health-monitoring events in summer (June 2002-2004) and winter (February 2003-2005). Integument thickness was measured and whole body conductance (W/m(2) degrees C) was estimated using HF and colonic temperature measurements. Across seasons, HF values were similar at the appendages, but their distribution differed significantly at the flipper and fluke. In summer, these appendages displayed uniformly high values, while in winter they most frequently displayed very low HF values with a few high HF values. In winter, blubber thickness was significantly greater and estimated conductance significantly lower, than in summer. These results suggest that dolphins attempt to conserve heat in winter. In winter, though, HF values across the body wall were similar to (flank) or greater than (caudal keel) summer values. It is likely that higher winter HF values are due to the steep temperature gradient between the body core and colder winter water, which may limit the dolphin's ability to decrease heat loss across the body wall.
本研究调查了美国佛罗里达州萨拉索塔湾的宽吻海豚(瓶鼻海豚)的热量散失模式,该地区水温季节性变化,范围在11至33摄氏度之间。在2002年6月至2004年夏季以及2003年2月至2005年冬季的健康监测活动期间,同时测量了海豚身体壁和附属肢体处的热通量(HF)及皮肤表面温度。测量了皮肤厚度,并利用热通量和结肠温度测量值估算了全身传导率(瓦/平方米·摄氏度)。跨季节来看,附属肢体处的热通量值相似,但在鳍状肢和尾鳍处其分布差异显著。夏季时,这些附属肢体处的热通量值普遍较高,而冬季时它们大多呈现极低的热通量值,仅有少数高热通量值。冬季时,鲸脂厚度显著大于夏季,估算的传导率显著低于夏季。这些结果表明,海豚在冬季试图保存热量。不过在冬季,身体壁各处的热通量值与夏季时相似(胁腹处)或高于夏季(尾龙骨处)。冬季较高的热通量值可能是由于身体核心与较冷的冬季海水之间存在陡峭的温度梯度,这可能限制了海豚减少通过身体壁散失热量的能力。