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首页> 外文期刊>The Journal of Experimental Biology >Changes in the material properties of the shell during simulated aquatic hibernation in the anoxia-tolerant painted turtle
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Changes in the material properties of the shell during simulated aquatic hibernation in the anoxia-tolerant painted turtle

机译:在贫血性水生冬眠期间壳体材料特性的变化

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Western painted turtles (Chrysemys picta bellii) tolerate anoxic submergence longer than any other tetrapod, surviving more than 170 days at 3 degrees C. This ability is due, in part. to the shell and skeleton simultaneously releasing calcium and magnesium carbonates, and sequestering lactate and H(+)to prevent lethal decreases in body fluid pH. We evaluated the effects of anoxic submergence at 3 degrees C on various material properties of painted turtle bone after 60, 130 and 167-170 days, and compared them with those of normoxic turtles held at the same temperature for the same time periods. To assess changes in the mechanical properties, beams (4x25 mm) were milled from the plastron and broken in a three-point flexural test. Bone mineral density, CO2 concentration (a measure of total bone HCO3-/CO32-) and elemental composition were measured using microcomputed tomography, HCO3-/CO32- titration and inductively coupled plasma mass spectrometry (ICP-MS), respectively. Tissue mineral density of the sampled bone beams was not significantly altered by 167-170 days of aquatic overwintering in anoxic or normoxic water, but bone CO2 and Mg were depleted in anoxic compared with normoxic turtles. At this time point, the plastron beams from anoxic turtles yielded at stresses that were significantly smaller and strains that were significantly greater than the plastron beams of normoxic turtles. When data from anoxic and normoxic turtles were pooled, plastron beams had a diminished elastic modulus after 167-170 days compared with those of control turtles sampled on day 1, indicating an effect of prolonged housing of the turtles in 3 degrees C water without access to basking sites. There were no changes in the mechanical properties of the plastron beams at any of the earlier time points in either group. We conclude that anoxic hibernation can weaken the painted turtle's plastron, but likely only after durations that exceed what it might naturally experience. The duration of aquatic overwintering, regardless of oxygenation state, is likely to be an important factor determining the mechanical properties of the turtle shell during spring emergence.
机译:西部彩绘海龟(Chrysemys Picta Bellii)耐受儿童浸润性比任何其他Tetrapod的更长,超过170天在3摄氏度上存活。这种能力部分是由于。同时脱离壳和骨架,释放钙和碳酸镁,并螯合乳酸和H(+)以防止体液pH中的致命降低。我们在60,130和167-170天后评估了3摄氏度在3摄氏度的各种材料特性上的影响,并将其与在同一温度温度下保持的常氧海龟的含量进行比较。为了评估机械性能的变化,梁(4x25mm)从胸壁铣削并在三点弯曲试验中破碎。使用微型断层扫描,HCO3- / CO32-滴定和电感耦合等离子体质谱(ICP-MS)分别测量骨矿物密度,CO 2浓度(总骨HCO3-/ CO32-)和元素组合物的元素组合物。在缺氧或常氧水中的水生越次水生越冬的167-10天内没有显着改变采样的骨束的组织矿物密度,但与常氧龟相比,骨二氧化碳和Mg耗尽。在此时间点,来自缺氧龟的素质束产生的应力显着较小,菌株明显大于常氧龟的素质束。当汇集来自缺氧和常氧海龟的数据时,与第1天采样的对照乌龟相比,保镖梁在167-170天后具有减少的弹性模量,表明乌龟的长时间壳体在3摄氏度中的效果而无需进入晒太阳网。在任一组中的任何时间点的素材波束的机械特性没有变化。我们得出结论,缺氧冬眠可以削弱被绘制的乌龟的纹身,但可能只有在超过它可能自然体验的持续时间之后。无论氧气状态如何,水生越冬的持续时间可能是测定春季出现期间乌龟壳的机械性能的重要因素。

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