Showing posts with label animals. Show all posts
Showing posts with label animals. Show all posts

Goats Could Increase the Risk of a Rare Lung Cancer, Researchers Find 0

JohnHumtsoe | 13:14 | , , , ,

Exposure to goats could increase the risk of a certain type of lung cancer, according to French researchers.
The study, presented at the European Respiratory Society's Annual Congress in Amsterdam, has linked a professional exposure to goats with a distinct subset of lung cancer, known as pneumonic-type lung adenocarcinoma (P-ADC).
This form of lung cancer has a weak association with tobacco smoking when compared with other types of the disease. In attempting to identify other triggers that may cause the disease, scientists have previously noticed similarities between P-ADC and a viral infection which causes growths in the lungs of sheep. Given these similarities, the researchers have investigated whether a viral agent found in sheep and goats could be easily transferred to people who work with the animals, leading to a partiality for P-ADC.
The current epidemiologic study involved 44 patients with P-ADC and 132 controls without the disease. All participants were given a questionnaire assessing a number of risk factors including their smoking status, their personal history of cancer and their exposure to goats.
The results showed that people who had experienced a professional exposure to goats during their lifetime were five times more likely to get P-ADC compared with other types of lung cancer.
The findings also showed that P-ADC was significantly associated with females, and people who had never smoked or had any personal history of cancer.
Dr Nicolas Girard, from the Louis Pradel Hospital, Hospices Civils de Lyon, said: "Scientists have noticed similarities between P-ADC and a contagious viral infection in sheep before. This led us to explore the possibility that professional exposure to cattle could make humans more susceptible to P-ADC. These findings demonstrate that exposure to goats could be a risk factor for this type of lung cancer, however further studies are needed to assess other potential risk factors for the disease."
via ScienceDaily

Climate Change Could Shrink Animals 0

JohnHumtsoe | 01:34 | , , ,

Climate change could result in a planet full of cold-blooded runts.
 A whale shark feasts on plankton. (Wikimedia Commons)
In a warming world, copepods, tiny crustaceans that make up the bulk of the ocean's animal plankton, could end up stunted. Copepods cope with warmer temperatures by maturing faster, but they don't grow as fast as they mature, so they end up runts.
The same phenomenon, called the “temperature-size rule,” affects most cold-blooded animals, so as the planet heats up, many animals' sizes may go down.
Researchers at the University of London examined the case of the incredible shrinking organisms in the journal The American Naturalist.
“We’ve shown that growth and development increase at different rates as temperatures warm. The consequences are that at warmer temperatures a species grows faster but matures even faster still, resulting in them achieving a smaller adult size,” said lead author Andrew Hirst in a press release.
Since copepods are food for marine animals, from fish to whales, what happens developmentally to the shrimp-y crustaceans could affect the entire ocean's food web.
“Decoupling of these rates could have important consequences for individual species and ecosystems,” Hirst added.

World's Deepest Known Animal: Worm That Lives Under Almost a Mile of Rock 0

JohnHumtsoe | 02:51 | , , , ,

Researchers dubbed it "Halicephalobus mephisto," from the Greek for “he who loves not the light.” Credit: G.Borgone/Ghent University, Belgium
When it comes to indestructible species, the cockroach is a kitten compared with the nematode. Nematode worms thrive in desert, mountain, and ocean environments. Nematodes aboard the space shuttle Columbia even survived after the spacecraft disintegrated during reentry in 2003. Now Belgian biologist Gaetan Borgonie has discovered a new species of nematode in a rock fracture nearly
a mile underground, where no other animal has ever been found.
Earth’s first few miles of bedrock teem with life, but scientists had long assumed that only simple, single-celled organisms could survive there. Borgonie teamed with Tullis Onstott of Princeton University to prove that assumption wrong. For a year they made intermittent descents to sample the Beatrix gold mine in South Africa, funded by their own savings. Finally, in late 2008, Borgonie looked into a microscope and saw a worm with a broken tail squirming across the slide. “I became an ICU nurse, looking every few hours to make sure she was still alive,” he says. “She laid 12 eggs before dying.”
Now they plan to expand their expedition to find other animals lurking in the depths.

10 Amazing Albino Animals 0

JohnHumtsoe | 13:50 | , , , ,


Albinism is defined by a lack of pigmentation in the skin, eyes and hair. Depending on the animal, albinism expresses itself to varying degrees, such as the albino python, which has yellow patterns instead of the standard brown. Animals that are unusually snowy-white but do not have red eyes are not albino, however. A different, rare genetic disorder known as leucism causes reduction in pigmentation in the skin and hair, but does not affect eye color.
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10. Kangaroo 
Credit: nitram0864 | flickr
Unlike the kangaroo's usual dark caramel or gray fur color, those born as albinos have white fur and pink eyes, paws and muzzles.
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09. Squirrel 
Credit: Andrea Browning
Albino squirrels are quite popular in some parts of the United States. Olney, Ill., is one of the towns that calls itself "Home of the White Squirrels," along with Marionville, Mo., and Brevard, N.C. The township of Kenton, Tenn., proudly boasts a population of 200 of the furry, pale rodents.
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08.Deer 
Credit: Mike Lewis | pescatello - flickr  
A lack of pigmentation in the irises of albino animals' eyes causes blood vessels to show through, giving them their crimson hue, such as the case with this tiny fawn. Approximately one in every 30,000 deer births is albino.
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07. Alligator 
Credit: Mila Zinkova 
Because they are so pale, albino alligators can get a pink sunburn from being out in direct sunlight for too long. To accommodate them, zoos such as the Knoxville Zoo in Knoxville, Tenn., create heavily shaded habitats with special heat lamps for the pigment-challenged alligators
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06. Skunks 
Credit: jenni-skunks | flickr 
These skunks look much less menacing without their trademark black and white stripes, but their scent glands are just as stinky as their normal counterparts.
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05.Albino pythons
Albino pythons have light yellow patterns on their pale, pinkish-white skin instead of the standard brown and tan designs.
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04.Hedgehog
Credit: deniscarl.com 
Only one in 10,000 hedgehogs is born albino, with red eyes. Although it seems as though the creamy hue of their spines would make it difficult for them to hide from predators, hedgehogs in the wild often rummage through dirt, which aides in camouflaging their bodies.
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03. Eastern Screech Owl 
Credit: Jon P. Inghram
Screech owls normally range in color from gray to rusty brown, with distinct, buttercup-yellow irises. Albino owls, however, have pink skin around their eyes, whose color can range from pink to a dark cherry-red. Pink toes are another indicator of albinism in owls. (Snowy owls are often confused with albino owls, but snowy owls have black specks on their lower bodies and golden eyes that are ringed with black skin.)
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02. Chipmunk
Credit: Kevin James | k.d.james | flickr 
Rather than having the characteristic black-and-white stripes running down their tawny bodies, albino chipmunks are white with pale butterscotch stripes. This albino chipmunk was photographed at Noah's Ark Zoo Farm in North Somerset, United Kingdom, in June 2011.
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01. Albino Iguana 
Credit: Mgkuijpers | Dreamstime 
Similar to albino pythons, albino iguanas have light yellow coloring over their light pink skin. Though albino animals are not usually blind, as one myth puts forth, the lack of pigmentation in their eyes allows light to penetrate directly through the structures of the eye rather than only pass through the pupil. This can lead to vision problems over time, but does not cause them to completely lose their eyesight.
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Monkeys Use Minds to Control Computer 0

JohnHumtsoe | 21:54 | , ,

Being able to control objects by simply thinking about them has long been the realm of science fiction, but a few smart monkeys are inching it toward reality. For the first time, neurobiologists have successfully demonstrated two-way interaction between a primate brain and a machine interface.
A screenshot of a virtual monkey selecting among identical objects, controlled by the monkey's brain.
“We liberated the brain from the physical constraints of the body and allowed it to gain an extra virtual arm that can be used to explore a virtual world,” said Miguel Nicolelis, a medical doctor, Duke University neurobiology professor, and director of the Duke Center for Neuroengineering.
Their work, which was published in the current issue of Nature, could lead to a brain-controlled robotic exoskeleton that could give a paralyzed person mobility.
For this study, devices containing hundreds of hair-like filaments were implanted in different regions of the monkeys’ brains. These implants both record brain activity and deliver neural stimulation simultaneously and in real time, an accomplishment that until now had not been done.
The experiments involved two trained monkeys that already knew how to move a cursor across a computer screen with a joystick. The researchers showed the monkeys several objects that looked identical on the screen, but were encoded with a special pattern that the monkeys couldn't see and could only sense through the brain implants.
The goal for the monkeys was to touch the one object that they sensed was different by moving a virtual arm across a computer screen using only their minds. When they virtually touched the correct object, they were rewarded with juice. After several initial attempts, the monkeys started consistently picking the correct object, behavior that was proven not to be random.
While the experiment was going on, the neuroengineers used the implants to record the monkeys' sensing and decision-making in real time. The ability to record and sense brain activity in real time is a necessary step in the development of brain-controlled prosthetics. In order to work effectively, these devices must mimic the natural feedback and response between the brain and the limbs that occurs in people who aren't paralyzed.
“This is a major step forward into the translation of this whole field into clinical applications,” Nicolelis said.
After completing the Nature paper, Nicolelis says his team finalized a wireless interface that picks up signals from a tiny brain implant without the need to attach cables. The implants are comparable to pacemakers in the sense that they are worth the simple neurosurgical procedure to put them in, especially for completely paralyzed patients who can’t move at all, Nicolelis added.
Next, the neuroengineers plan to work on a prototype for a brain-controlled robotic exoskeleton with the international nonprofit the Walk Again Project, as well as specialists from neuroscience institutions in Brazil, Germany, and Switzerland. They want to debut a functional exoskeleton at the 2014 World Cup in Nicolelis’s native Brazil, giving an as-yet unknown paralysis patient the chance to walk onto the field.
“That would be a demonstration that this technology is becoming ready and can be very helpful to restore ability to patients,” Nicolelis said.
Philip Troyk is an associate professor of biomedical engineering at the Illinois Institute of Technology who researches neuroprosthesis and leads a Chicago-based company called Sigenics that makes the integrated circuits for implantable brain devices.
While we do know that the monkeys make choices based on sensing patterns, we still don’t know what their actual perception was, he said. In addition, neuroengineers will need to develop a permanent hardware system that could be implanted.
These challenges don’t diminish the importance of the study, though, Troyk said. “It allows us all to realize that if we can overcome some of the major technical problems of a chronic implant, then we may in fact be able to permanently have this communication with the brain.”
Todd Coleman is an associate bioengineering professor at the University of California, San Diego, who works on brain-machine interfaces. Coleman wonders what kind of implications the study will have in the distant future for people with neurological disorders such as autism.
“These findings need not be limited to thinking about someone who has some type of motor deficit,” he said.
At the University of Chicago, Nicholas Hatsopoulos is an associate professor of organismal biology and anatomy with a focus on researching neural prosthetic systems. Robotic exoskeletons bring Iron Man’s powerful suit to mind.
“In the movie he gets into this suit, and he’s using arms and hands to control this thing,” he says. “But imagine controlling it with your brain.”
Hatsopoulos sees research into brain-machine interfaces heating up at the moment. “This paper is an important contribution to that whole endeavor,” he said of the Duke study. “What we still need to do is to really develop a system that we feel confident provides genuine sensory perception.”
| Discovery News


 
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