In terrestrial environments, gravity places special demands on the cardiovascular systems of animals. Gravitational pressure can cause blood to pool in the lower regions of the body, making it difficult to circulate blood to critical organs such as the brain. Terrestrial snakes, in particular, exhibit adaptations that aid in circulating blood against the force of gravity.
The problem confronting terrestrial snakes is best illustrated by what happens to sea snakes when removed from their supportive medium. Because the vertical pressure gradients within the blood vessels are counteracted by similar pressure gradients in the surrounding water, the distribution of blood throughout the body of sea snakes remains about the same regardless of their orientation in space, provided they remain in the ocean. When removed from the water and tilted at various angles with the head up, however, blood pressure at their midpoint drops significantly, and at brain level falls to zero. That many terrestrial snakes in similar spatial orientations do not experience this kind of circulatory failure suggests that certain adaptations enable them to regulate blood pressure more effectively in those orientations.
One such adaptation is the closer proximity of the terrestrial snake's heart to its head, which helps to ensure circulation to the brain, regardless of the snake's orientation in space. The heart of sea snakes can be located near the middle of the body, a position that minimizes the work entailed in circulating blood to both extremities. In arboreal snakes, however, which dwell in trees and often assume a vertical posture, the average distance from the heart to the head can be as little as 15 percent of overall body length. Such a location requires that blood circulated to the tail of the snake travel a greater distance back to the heart, a problem solved by another adaptation. When climbing, arboreal snakes often pause momentarily to wiggle their bodies, causing waves of muscle contraction that advance from the lower torso to the head. By compressing the veins and forcing blood forward, these contractions apparently improve the flow of venous blood returning to the heart.
In the passage, the author is primarily concerned with doing which of the following?
Explaining adaptations that enable the terrestrial snake to cope with the effects of gravitational pressure on its circulatory system
Comparing the circulatory system of the sea snake with that of the terrestrial snake
Explaining why the circulatory system of the terrestrial snake is different from that of the sea snake
Pointing out features of the terrestrial snake's cardiovascular system that make it superior to that of the sea snake
Explaining how the sea snake is able to neutralize the effects of gravitational pressure on its circulatory system
题目分析:
题目释义:
主旨题目
考点:
主旨(Main idea)
旨在考察我们对文章整体的把握程度,对文章的结构的分析能力和把控能力,以及对作者逻辑的判断。
其实这篇文章主要的目的是向读者介绍蛇对与重力系统的适应性。其中包括了水蛇怎么怎么样,来引出陆地上的蛇必然有的适应性。
选项分析:
A选项:Correct。解释让陆生蛇能够配合重力系统影响的适应性。全文整体都一直在说蛇对于重力的适应性。
B选项:比较水蛇和陆蛇的循环系统。文章中确实提到了水蛇和陆蛇的循环系统。不过作者逻辑上的主要意思不在于此,是想利用这个说明蛇对重力系统的适应性。
C选项:解释为什么陆蛇和海蛇的循环系统不同。这个选项还是比较有迷惑性的。文中解释了为什么海蛇与陆蛇不同,原因就是适应性的一个表征。而行文中作者也确实说的是这个。不过这个选项把重点搞错了,作者的逻辑目的并不是解释为什么不同,而是要解释适应性,所以甚至可以把这个循环系统的不同当做一个说明适应性的载体。
D选项:指出陆蛇的心血管系统要强于海蛇的心血管系统。这个选项文中没有提到。即便陆蛇的心血管系统因适应性而比较适合陆生也没有证据能说明让陆蛇的心血管系统更强水蛇,而且也不是作者的主题。
E选项:解释海蛇如何抵消重力对循环系统的影响。这个选项文中提到了,是靠海水浮力(这不是海蛇的能力,be able to 在选项中给我们的理解是水蛇的某种自身能力抵消的重力),而且这不是作者的中心意思。
主题句:Terrestrial snakes, in particular, exhibit adaptations that aid in circulating blood against the force of gravity.
我自己也认为主旨是与gravitation和适应性有关的,a选项因为只涉及了陆地蛇所以给排除掉了,但剩下的bc都没有提到适应性,所以纠结了很久
文章主要的目的是向读者介绍蛇对与重力系统的适应性。其中包括了水蛇怎么怎么样,来引出陆地上的蛇必然有的适应性。
BC还有个问题在于只讲了陆蛇和海蛇,但其实文章还大篇幅讲了树蛇,所以BC都是文章细节,不是主旨
本文章内容引起强烈不适。。。snake is all over the place, too bloody scary 还考这么多道
真的!
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第一段最后一句就点明了中心啦 专门说陆地的蛇
adaptation是重点词
仅出现文章细节,而没有主要讨论对象的选项极有可能是错误选项。
A选项:陆生蛇能够配合重力系统影响的适应性,利用sea蛇和A蛇举例论证;
B选项:比较的目的是证明T蛇的适应性对于重力的影响;
C选项:重点不在于why,而是how循环系统不同,去适应
D选项:no judgement,没有想要比较superior,
E选项:本文是没有解释海蛇海蛇如何抵消重力对循环系统的影响,但是说明T蛇的这种适应力
主旨题,第二段和第一段一样都是总起,并没有将重点放在陆蛇和海蛇的对比