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1 . A team of researchers at Brigham and Women’s Hospital, Harvard Medical School, has developed a system to use a smartphone camera to test for viral infections. In their paper published in the journal Science Advances, the group describes their system, which involves the use of an external microchip device and a smartphone system that uses a trained deep-learning algorithm.

As the pandemic has gripped the world for most of this year, scientists have been looking for ways to slow the spread of the next one. In this new effort, the team has developed a smartphone-based system that can be used by non-medical people to test for a variety of viral infections.

The system is made up of a smartphone, an external microchip device and software. Body fluid samples are placed into a channel on the microchip device, which is then dipped in a small amount of H2O2. The resulting reaction leads to the formation of bubbles. The bubbles develop in unique patterns based in part on viruses in the fluid sample. The user points their smartphone camera at the bubbling sample and starts the deep-learning algorithm that has already been trained to identify the patterns and therefore recognize the presence of viruses. The whole process takes about 50 minutes. The researchers have thus far taught their system to recognize just three viruses, Zika and Hepatitis B and C. But testing shows the system to be 99% accurate. They note that their system is more portable and cost-effective than other solutions in the works.

The researchers suggest that their system could be rapidly trained to recognize new viruses if the need arises, and the microchip device could be sent to hot spots in the future. Such technology, the researchers suggest, could help to stop future pandemics if used widely. The researchers also note that the system could be immediately useful in infection prone areas lacking testing labs.

1. What’s the purpose of the text?
A.To advise people to use a new smartphone camera.
B.To introduce the development of deep-learning algorithm.
C.To explain the invention of a new microchip device.
D.To show a new finding about testing for viral infections.
2. Why did the researchers develop the new system?
A.To educate ordinary people with medical skills.
B.To help prevent the pandemic from spreading fast.
C.To try to treat an illness with a smartphone camera.
D.To make smartphones more portable and powerful.
3. Which is the right working order of the system?
①Bubbles of a liquid sample are formed.                         ②Samples react with H2O2.
③Fluid samples are collected in a special device.            ④Viruses in bubbles are recognized automatically.
⑤The software is started to examine the bubbles.
A.③②①⑤④B.③①②④⑤
C.②③①⑤④D.②①③④⑤
4. What is the attitude of the researchers to the new system?
A.Indifferent.B.Doubtful.C.Confident.D.Curious.

2 . A ship that sank off the coast of California decades ago was recently reconstructed in detail. The 3D digital model even included hundreds of sponges (海绵动物) that have gathered on the ship’s surface since it sank.

Named American Heritage, the supply ship sank in Santa Monica Bay on May 4, 1995, and for decades its exact location was unknown. Researchers with the Monterey Bay Aquarium Research Institute (MBARI) spotted a strange shape in that area in 2008. But it wasn’t until May 2018 that MBARI scientists identified its exact location and mapped the site in detail, showing what appeared to be a shipwreck (失事船只).

Even then, the identity of the shipwreck was uncertain. Yet another MBARI team revisited the location to do further exploration. They sent remotely operated vehicles (ROVs) and took photos of the damaged ship. Though it was covered with deep-sea sponges and other animals, the scientists were able to spot letters spelling out its name, confirming that the shipwreck was American Heritage.

As one of the MBARI scientists who found American Heritage, chief ROV pilot Knute Brekke had worked on the ship before. And he was on duty with the diving company American Pacific Marine — the owner of American Heritage — the night the ship began taking in water and eventually sank.

MBARI spokesperson Kim Fulton -Bennett said to Live Science about the discovery, “The model is not complete, as floating ropes and poor visibility kept the pilots from getting too close to the wreck. But the 3D reconstruction is detailed enough to show that American Heritage is now home to thousands of sponges. Shipwrecks often turn into the shelter for diverse communities of ocean life.”

1. What is the main idea of the text?
A.A valuable treasure was discovered.
B.Special sponges were found under sea.
C.3D model reconstructed a sunken ship.
D.A sunken ship was gotten out of water.
2. Which is the right order of the following events?
① Something strange was found in the area.
② ROVs were sent under sea to take photos.
③ A ship sank in Santa Monica Bay.
④ The identity of the ship was confirmed.
⑤ Scientists tried to locate the shipwreck.
A.②③⑤④①B.③①⑤②④
C.⑤③①④②D.④③①②⑤
3. What can we learn about Knute Brekke?
A.He was familiar with the sunken ship.
B.He was in charge of a diving company.
C.He was responsible for the rescue work.
D.He was the first one to witness the accident.
4. What’s Kim Fulton-Bennett’s attitude towards the 3D model?
A.Critical.B.Doubtful.C.Amazed.D.Objective.
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3 . It is difficult for doctors to help a person with a damaged brain. Without enough blood, the brain lives for only three to five minutes. More often the doctors can' t fix the damage. Sometimes they are afraid to try something to help because it is dangerous to work on the brain. The doctors might make the person worse if he operates on the brain.
Dr. Robert White, a famous professor and doctor, thinks he knows a way to help. He thinks doctors should make the brain very cold. If it is very cold, the brain can live without blood for 30 minutes. This gives the doctor a longer time to do something for the brain.
Dr. White tried his idea on 13 monkeys. First he taught them to do different jobs, then he operated on them. He made the monkeys' blood go through a machine. The machine cooled the blood. Then the machine sent the blood back to the monkeys' brains. When the brain' s temperature was 10°C, Dr. White stopped the blood to the brain. After 30 minutes he turned the blood back on. He warmed the blood again. After their operations the monkeys were like they had been before. They were healthy and busy. Each one could still do the jobs the doctor had taught them.
1. The biggest difficulty in operating on the damaged brain is that _______.
A.the time is too short for doctors
B.the patients are often too nervous
C.the damage is extremely hard to fix
D.the blood-cooling machine might break down
2. The brain operation was made possible mainly by _______.
A.taking the blood out of the brain
B.trying the operation on monkeys first
C.lowering the brain' s temperature
D.having the blood go through a machine
3. What is the right order of the steps in the operation?
a. send the cooled blood back to the brain
b. stop the blood to the brain
c. have the blood cooled down
d. operate on the brain
A.a,b,c,dB.c,a,b,d
C.c, b, d, aD.b, c, d, a
4. With Dr. White's new idea, the operation on the damaged brain _______.
A.can last as long as 30 minutes
B.can keep the brain's blood warm
C.can keep the patient's brain healthy
D.can help monkeys do different jobs
2016-11-26更新 | 296次组卷 | 12卷引用:2016-2017学年山东省微山县第一中学高二下学期第一次月考英语试卷2
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