Space Travel AND Health - IELTS Reading Answers & Explanations
From Oxford IELTS Practice Tests Academic Reading Test 1 · Part 1 · Questions 1–14
Reading Passage
You should spend about 20 minutes on Questions 1–14, which are based on Reading Passage 1.
Space travel AND health
A Space biomedicine is a relatively new area of research both in the USA and in Europe. Its main objectives are to study the effects of space travel on the human body, identifying the most critical medical problems and finding solutions to those problems. Space biomedicine centres are receiving increasing direct support from NASA and/or the European Space Agency (ESA).
B This involvement of NASA and the ESA reflects growing concern that the feasibility of travel to other planets, and beyond, is no longer limited by engineering constraints but by what the human body can actually withstand. The discovery of ice on Mars, for instance, means that there is now no necessity to design and develop a spacecraft large and powerful enough to transport the vast amounts of water needed to sustain the crew throughout journeys that may last many years. Without the necessary protection and medical treatment, however, their bodies would be devastated by the unremittingly hostile environment of space.
C The most obvious physical changes undergone by people in zero gravity are essentially harmless; in some cases they are even amusing. The blood and other fluids are no longer dragged down towards the feet by the gravity of Earth, so they accumulate higher up in the body, creating what is sometimes called 'fat face', together with the contrasting 'chicken legs' syndrome as the lower limbs become thinner.
D Much more serious are the unseen consequences after months or years in space. With no gravity, there is less need for a sturdy skeleton to support the body, with the result that the bones weaken, releasing calcium into the bloodstream. This extra calcium can overload the kidneys, leading ultimately to renal failure. Muscles too lose strength through lack of use. The heart becomes smaller, losing the power to pump oxygenated blood to all parts of the body, while the lungs lose the capacity to breathe fully. The digestive system becomes less efficient, a weakened immune system is increasingly unable to prevent diseases and the high levels of solar and cosmic radiation can cause various forms of cancer.
E To make matters worse, a wide range of medical difficulties can arise in the case of an accident or serious illness when the patient is millions of kilometres from Earth. There is simply not enough room available inside a space vehicle to include all the equipment from a hospital's casualty unit, some of which would not work properly in space anyway. Even basic things such as a drip depend on gravity to function, while standard resuscitation techniques become ineffective if sufficient weight cannot be applied. The only solution seems to be to create extremely small medical tools and 'smart' devices that can, for example, diagnose and treat internal injuries using ultrasound. The cost of designing and producing this kind of equipment is bound to be, well, astronomical.
F Such considerations have led some to question the ethics of investing huge sums of money to help a handful of people who, after all, are willingly risking their own health in outer space, when so much needs to be done a lot closer to home. It is now clear, however, that every problem of space travel has a parallel problem on Earth that will benefit from the knowledge gained and the skills developed from space biomedical research. For instance, the very difficulty of treating astronauts in space has led to rapid progress in the field of telemedicine, which in turn has brought about developments that enable surgeons to communicate with patients in inaccessible parts of the world. To take another example, systems invented to sterilize waste water on board spacecraft could be used by emergency teams to filter contaminated water at the scene of natural disasters such as floods and earthquakes. In the same way, miniature monitoring equipment, developed to save weight in space capsules, will eventually become tiny monitors that patients on Earth can wear without discomfort wherever they go.
G Nevertheless, there is still one major obstacle to carrying out studies into the effects of space travel: how to do so without going to the enormous expense of actually working in space. To simulate conditions in zero gravity, one tried and tested method is to work under water, but the space biomedicine centres are also looking at other ideas. In one experiment, researchers study the weakening of bones that results from prolonged inactivity. This would involve volunteers staying in bed for three months, but the centre concerned is confident there should be no great difficulty in finding people willing to spend twelve weeks lying down. All in the name of science, of course.
Questions
Questions 1–5 Matching Headings
Reading Passage 1 has seven paragraphs A–G.
Choose the correct heading for paragraphs B–E and G from the list of headings below.
Write the correct number (i–x).
i. The problem of dealing with emergencies in space
ii. How space biomedicine can help patients on Earth
iii. Why accidents are so common in outer space
iv. What is space biomedicine?
v. The psychological problems of astronauts
vi. Conducting space biomedical research on Earth
vii. The internal damage caused to the human body by space travel
viii. How space biomedicine first began
ix. The visible effects of space travel on the human body
x. Why space biomedicine is now necessary
Questions 6–7 Short Answers
Answer the question below using NO MORE THAN THREE WORDS for each answer.
Questions 8–12 Yes / No / Not Given
Do the following statements agree with the writer's views in Reading Passage 1?
YES if the statement agrees with the views of the writer
NO if the statement does not agree with the views of the writer
NOT GIVEN if there is no information about this in the passage
Questions 13–14 Table Completion
Complete the table below
Choose NO MORE THAN THREE WORDS from the passage for each answer.
| Research area | Application in space | Application on Earth |
|---|---|---|
| Telemedicine | treating astronauts | 13 in remote areas |
| Sterilization | sterilizing waste water | 14 in disaster zones |
| Miniaturization | saving weight | wearing small monitors comfortably |
Answers & Explanations Summary
| # | Answer | Evidence | Explanation |
|---|---|---|---|
| Q1 | x | This involvement of NASA and the ESA reflects growing concern that the feasibility of travel to other planets, and beyond, is no longer limited by engineering constraints but by what the human body can actually withstand | Excerpt/Passage Explanation: The passage explains that space agencies are worried because the biggest challenge for space travel is no longer the machines, but how much the human body can endure. Answer Explanation: The answer heading 'x' means 'Why space biomedicine is now necessary'. Reason For Correctness: The correct answer is heading x because Paragraph B explains that long space trips are no longer held back by building spacecraft (engineering), but by what the human body can survive. It states that without medical protection and treatment, human bodies would be severely harmed by the harsh conditions in space. This shows why medical research for space (space biomedicine) has become essential and needed right now. |
| Q2 | ix | The most obvious physical changes undergone by people in zero gravity are essentially harmless; in some cases they are even amusing. The blood and other fluids are no longer dragged down towards the feet by the gravity of Earth, so they accumulate higher up in the body, creating what is sometimes called 'fat face', together with the contrasting 'chicken legs' syndrome as the lower limbs become thinner | Excerpt/Passage Explanation: The passage explains that in space without gravity, fluids move upward in the body. This causes noticeable body changes, making a person's face look fatter and their legs look thinner. Answer Explanation: The answer 'ix' means that the best heading for Paragraph C is 'The visible effects of space travel on the human body'. Reason For Correctness: The correct answer is 'ix' because Paragraph C describes changes to an astronaut's appearance that can be clearly seen from the outside, such as a puffy face ('fat face') and very thin legs ('chicken legs'). The passage uses the phrase 'most obvious physical changes' as a synonym for 'visible effects'. |
| Q3 | vii | Much more serious are the unseen consequences after months or years in space. With no gravity, there is less need for a sturdy skeleton to support the body, with the result that the bones weaken, releasing calcium into the bloodstream. This extra calcium can overload the kidneys, leading ultimately to renal failure. Muscles too lose strength through lack of use. The heart becomes smaller, losing the power to pump oxygenated blood to all parts of the body, while the lungs lose the capacity to breathe fully. The digestive system becomes less efficient, a weakened immune system is increasingly unable to prevent diseases and the high levels of solar and cosmic radiation can cause various forms of cancer | Excerpt/Passage Explanation: The passage explains that living in zero gravity for a long time causes serious hidden damage inside the body, including weak bones, kidney problems, smaller and weaker heart and muscles, poor breathing, digestive issues, a weak immune system, and an increased risk of cancer. Answer Explanation: The answer heading 'vii' means the harm and health problems that happen inside a person's body because of traveling in space. Reason For Correctness: The correct answer is heading vii because Paragraph D focuses entirely on the hidden, internal harm done to organs and systems inside the body during long space missions. The paragraph describes how bones become weak, kidneys can fail ('renal failure'), muscles lose strength, the heart gets smaller, the lungs and digestive system lose efficiency, the immune system weakens, and radiation can cause cancer. These match the keywords 'internal damage' in heading vii, contrasting with the visible, external changes mentioned in the previous paragraph. |
| Q4 | i | To make matters worse, a wide range of medical difficulties can arise in the case of an accident or serious illness when the patient is millions of kilometres from Earth. There is simply not enough room available inside a space vehicle to include all the equipment from a hospital's casualty unit, some of which would not work properly in space anyway | Excerpt/Passage Explanation: The passage explains that treating a sudden accident or bad illness far away in space causes major challenges because a spacecraft does not have enough room for emergency hospital equipment, and some medical tools cannot function properly in zero gravity. Answer Explanation: The answer heading "i" means it is difficult and challenging to treat sudden medical emergencies, such as severe accidents or sudden sicknesses, while people are in outer space. Reason For Correctness: The correct answer is heading "i" because Paragraph E focuses on the medical problems that happen during unexpected accidents or severe illnesses far from Earth. The paragraph explains that spacecraft have limited space to store hospital casualty equipment and that normal emergency procedures, like using an IV drip or performing resuscitation, do not work well without gravity. The keywords in the heading "emergencies in space" match the passage's discussion of an "accident or serious illness" and a "hospital's casualty unit". |
| Q5 | vi | Nevertheless, there is still one major obstacle to carrying out studies into the effects of space travel: how to do so without going to the enormous expense of actually working in space. To simulate conditions in zero gravity, one tried and tested method is to work under water, but the space biomedicine centres are also looking at other ideas. In one experiment, researchers study the weakening of bones that results from prolonged inactivity. This would involve volunteers staying in bed for three months | Excerpt/Passage Explanation: The passage explains that going to space for experiments is very expensive, so scientists recreate space conditions on Earth, such as testing people underwater or asking volunteers to lie in bed for three months. Answer Explanation: The answer 'vi' means doing research and experiments about space medicine down on Earth instead of in outer space. Reason For Correctness: The correct answer is 'vi' because Paragraph G talks about how scientists study the physical effects of space travel without having to spend huge amounts of money going to space. To do this, researchers do experiments on Earth, such as working underwater to imitate zero gravity or having volunteers stay in bed for three months to study bone weakness. Keywords like 'carrying out studies', 'simulate conditions', 'work under water', and 'staying in bed' match the idea of 'conducting space biomedical research on Earth'. |
| Q6 | on Mars / from Mars / Mars | The discovery of ice on Mars, for instance, means that there is now no necessity to design and develop a spacecraft large and powerful enough to transport the vast amounts of water needed to sustain the crew throughout journeys that may last many years | Excerpt/Passage Explanation: The passage states that because ice exists on Mars, spaceships do not need to carry huge supplies of water from Earth for long journeys. Answer Explanation: The answer means that space travellers can find water (in the form of ice) on the planet Mars. Reason For Correctness: The correct answer is "Mars" (or "on/from Mars") because the text mentions in Paragraph B that ice was discovered on Mars. Since ice is frozen water, astronauts do not have to carry all the water they need from Earth for long trips. Therefore, Mars is the location outside of Earth where space travellers can get water. |
| Q7 | become thinner / they become thinner / thinner | together with the contrasting 'chicken legs' syndrome as the lower limbs become thinner | Excerpt/Passage Explanation: The passage explains that in space, a person's legs (lower limbs) get thinner, giving them thin legs known as 'chicken legs'. Answer Explanation: The answer means that during space travel, a person's legs get skinnier or lose thickness. Reason For Correctness: The correct answer is supported by Paragraph C, which discusses how a person's body changes in zero gravity. Because bodily fluids move upward instead of being pulled down into the legs, astronauts develop what is called 'chicken legs', meaning their "lower limbs" (a synonym for legs) "become thinner". |
| Q8 | YES | the feasibility of travel to other planets, and beyond, is no longer limited by engineering constraints but by what the human body can actually withstand | Excerpt/Passage Explanation: The passage explains that traveling far into space is not stopped by building or engineering problems anymore, but by the physical limits of what the human body can endure. Answer Explanation: The answer YES means the statement agrees with what the author says in the text. Reason For Correctness: The correct answer is YES because paragraph B directly states that traveling to other planets and beyond is no longer held back by machine or building limits ("engineering constraints"), but rather by how much the human body can survive ("what the human body can actually withstand"). Therefore, the main challenges are now related to human health and medicine, rather than technology. |
| Q9 | NOT GIVEN | The discovery of ice on Mars, for instance, means that there is now no necessity to design and develop a spacecraft large and powerful enough to transport the vast amounts of water needed to sustain the crew throughout journeys that may last many years | Excerpt/Passage Explanation: The passage states that space missions might last for many years, but it does not mention whether astronauts are unable to survive past two years. Answer Explanation: The answer "NOT GIVEN" means that the passage does not provide any information to confirm or deny whether astronauts can survive more than two years in space. Reason For Correctness: The correct answer is NOT GIVEN because although the text mentions that space journeys "may last many years" and describes health problems after "months or years in space," it never specifies a maximum time limit like two years for human survival in space. Key terms like "two years" or an exact survival limit are missing from the text. |
| Q10 | NO | It is now clear, however, that every problem of space travel has a parallel problem on Earth that will benefit from the knowledge gained and the skills developed from space biomedical research | Excerpt/Passage Explanation: The passage explains that medical research done for astronauts in space also provides useful knowledge and solutions to help people with similar health problems on Earth. Answer Explanation: The answer "NO" means that the statement does not match what the writer believes. The writer does not think it is morally wrong to spend large amounts of money on space biomedicine. Reason For Correctness: The correct answer is "NO" because the writer argues in favour of spending money on space biomedicine. While the author acknowledges that "some" people question the ethics of spending so much money, the writer explains that this research actually helps people on Earth too. The writer points out that "every problem of space travel has a parallel problem on Earth that will benefit", showing that the investment is worthwhile and justified rather than morally wrong. |
| Q11 | NOT GIVEN | For instance, the very difficulty of treating astronauts in space has led to rapid progress in the field of telemedicine, which in turn has brought about developments that enable surgeons to communicate with patients in inaccessible parts of the world | Excerpt/Passage Explanation: The passage explains that medical research for space helps doctors and surgeons talk to patients in hard-to-reach places on Earth, but it does not mention doing surgeries in space or their success rates. Answer Explanation: The answer means that the text does not say whether any operations or surgeries work better when done in space compared to Earth. Reason For Correctness: The correct answer is NOT GIVEN because the passage never discusses whether some types of surgery are more successful in space. While the text mentions that treating astronauts has helped developed telemedicine so that "surgeons" can talk to distant patients on Earth, it provides no information about surgical success rates in outer space. |
| Q12 | NO | To simulate conditions in zero gravity, one tried and tested method is to work under water, but the space biomedicine centres are also looking at other ideas. In one experiment, researchers study the weakening of bones that results from prolonged inactivity. This would involve volunteers staying in bed for three months | Excerpt/Passage Explanation: The passage shows that scientists conduct space research on Earth by using underwater environments and long bed-rest experiments instead of only going to space. Answer Explanation: The answer "NO" means that the statement is incorrect according to the text. Reason For Correctness: The correct answer is "NO" because the passage explains that researchers do not only do space biomedical research in space. Instead, they try to avoid the huge costs of going to space by testing and simulating conditions on Earth, such as doing experiments underwater or having volunteers stay in bed for three months. |
| Q13 | communicating with patients / communicate with patients | developments that enable surgeons to communicate with patients in inaccessible parts of the world | Excerpt/Passage Explanation: The passage explains that new medical technology helps doctors reach and speak to sick people living in hard-to-reach places on Earth. Answer Explanation: The answer means doctors talking to or checking on sick people from far away using technology. Reason For Correctness: The correct answer is supported by Paragraph F, which discusses how telemedicine helps people on Earth. The passage states that advances in telemedicine allow doctors to "communicate with patients" who live in "inaccessible parts of the world" (which means "remote areas"). Therefore, the earth application for telemedicine in remote areas is communicating with patients. |
| Q14 | filtering contaminated water / filter contaminated water | To take another example, systems invented to sterilize waste water on board spacecraft could be used by emergency teams to filter contaminated water at the scene of natural disasters such as floods and earthquakes | Excerpt/Passage Explanation: The passage explains that machines created to clean used water in space can also be used by rescue workers to clean dirty water during natural disasters on Earth. Answer Explanation: The answer refers to cleaning dirty or unsafe water so that it becomes safe to use. Reason For Correctness: The correct answer is supported by Paragraph F, which discusses how water sterilization systems invented for space travel can be used on Earth. The text explains that these systems can help emergency teams "filter contaminated water" in places affected by natural disasters. Therefore, "filtering contaminated water" correctly fills in the application on Earth. |
