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HIBERNATION: ANIMALS GO WITHOUT FOOD OR WATER FOR MONTHS AT A TIME

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Discover why animals go without food or water for months at a time?
Winter in the wild can be extreme, low temperatures and a scarce amount of food make it difficult 
for many animals to survive. Some will migrate south during the winter months, but certain species of mammals, rodents and reptiles simply bed down and hibernate until spring. Hibernation is an extremely effective survival strategy that suspends the animal’s body functions and metabolism so it can preserve energy. This state of suspended animation will allow its body temperature to drop and the breathing and heart rate slow right down. In fact, a chipmunk’s heart rate can drop from a frantic 200 to just five beats per minute during hibernation, and fat-tailed dwarf lemurs will only take a breath once every 20 minutes! Hibernation is triggered by seasonal changes within the animal’s habitat. Hibernating species are sensitive to alterations in their environment and can therefore predict the onset of winter. They also produce a hormone called hibernation-specific protein, which prompts the physiological changes needed to conserve energy while in asleep-like state.Prior to hibernating, many animals will eat excessively over the summer months in order to build up a reserve of fat. For instance, bears can consume up to 20,000 calories a day. Some species that hibernate even store imperishable food within their den and wake for short periods during hibernation to eat. Once spring arrives and the temperatures begin to climb once again, the hibernating animal will start to rouse. The length of hibernation varies depending on the species, individual animals and even the weather patterns that year. 


What’s the difference between hibernation and sleep?

Hibernation is a much longer process than sleep, and the animal will go through physiological changes that, although similar to those that occur during sleep, are much more extreme. For instance, warm-blooded animals that hibernate turn almost coldblooded as their body temperature can drop significantly. Their metabolism, breathing and heart rate also slow down dramatically, and they can remain motionless in a coma-like state for days at a time. Waking from hibernation is also a much longer, gradual process when compared to waking from sleep. Sleep itself is also considered more of a mental process, as changes occur to brain activity. On the other hand, hibernating animals have shown brain waves that resemble wakeful brain activity, although they are suppressed. Once an animal wakes from hibernation they will still require a lot of sleep in order to recuperate from the long slumber. In fact, it can take weeks for some animals to recover from several months of hibernation.

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ANIMAL VISION:Take a look at the world through a different set of eyes

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DOG For a long time, it was thought dogs saw the world in black and white, distinguishing between objects only based on differences in light and contrast. It is now known that they have two-colour vision, seeing the world in shades of yellow and blue. Dogs have good night vision and the back of their eye contains a reflective layer known as tapetum, which helps to maximise light detection in the dark. However, the central part of their retina is only 20 per cent cone cells (compared to 100 per cent in humans), so although they see better in low light, their daytime vision is much less detailed than our own.

BIRD Birds have arguably the most advanced vision in the animal kingdom. Rather than seeing in three colours, most birds can see four, extending their visual range into the ultraviolet part of the spectrum. Each of their cone cells also contains a drop of oil, which acts as a filter, further increasing their visual acuity. Why birds evolved the ability to see ultraviolet light is unclear. Some have UV-reflective feathers, others use their keen eyesight to spot UV-bright moths, butterflies, and fruits, and birds of prey use their UV vision to track rodents, picking up on their bright urine trails among the dense vegetation in the fields.

INSECT Insects are so small that if they had eyes like ours, the tiny lens would be unable to bend and focus the light. Instead, they have compound eyes, built from many smaller units known as ommatidia. Each has its own lens, a crystalline cone, pigments and light-sensitive cells, and together they create a mosaic, similar to the pixels on a television screen. The more ommatidia an insect has, the higher the resolution of the image. Some insects, like dragonfl ies, have around 50,000 of these units, giving them a clear view of the world around them, allowing them to rapidly detect movement in their environment.

SNAKE Pythons, boas and pit vipers have eyes surprisingly similar to our own, but they are able to see something we can’t. Using specialist pit organs near their noses, these snakes can ‘see’ heat. The pits have a pinhole opening and at the bottom is a membrane similar to the retina, with a tightly packed network of heatsensitive neurones – between 500 and 1,500 cells per square millimetre. The signals from the eyes and the pits converge on the same point in the brain, allowing the snakes to produce a combined visual and thermal image, or to switch between the two, like putting on a pair of night-vision goggles. 

RAT Rats are much more responsive to changes in brightness than colour, and they were originally thought to be colour-blind – 99 per cent of the light-sensitive cells in their eyes are rods. However, it is now known that they are able to detect some colour. Most (88 per cent) of their cone cells are sensitive to green light, but the remainder allow them to detect light in the blue-ultraviolet end of the spectrum. This ability allows the rodents to see territorial urine marks left by other animals. Because they rely on rod cells to see, their visual acuity is low and their vision is much blurrier than our own.

HORSE Horses have their eyes on the sides of their head, so they have a much wider fi eld of view that we do. However, they cannot see directly in front of themselves at close range and have a triangular blind spot that extends about 1.2 metres (4 feet) in front of their faces. At longer distances, the horse can use both eyes together for binocular vision, but they are also able to use each eye separately. With one eye looking forward and one looking back, they can keep a careful watch for potential danger. Like most other mammals, they cannot see red, so their world is a combination of shades of yellow, blue, green and grey

Each pictures shows how each animal would see 


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LATEST DISCOVERIES UPDATES

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10 Ants to help in climate change battle
Though most renowned for their unerring ability to ruin picnics, it seems ants may prove to be vital allies in the fight against climate change. Rocks containing calcium and magnesium naturally absorb the greenhouse gas carbon dioxide as they break down, locking CO2 into calcium carbonate. Ronald Dorn of Arizona State University has found that ants increase the amount of calcium carbonate by 300 times, locking up more CO2. If the process can be further studied and enhanced, it may be 

09 Biological  pacemakers
Innovative gene therapy techniques could potentially replace the need for electronic pacemakers. Researchers in LA injected pigs suffering from heart block, a condition in which the electrical pulses controlling the heartbeat are disrupted, with a gene called TBX18. After 24 hours, regular heart cells began changing into specialised cells that keep the heart beating, they say.

08 Electricity from water
From cooking and cleaning to keeping us hydrated, water is essential. But now, scientists have found another potential use for the wet stuff: generating electricity in gadgets. Last year, MIT researchers found that water droplets gain electric charge when they ‘jump’ away from superhydrophobic surfaces – materials designed to repel water. By layering together many sheets of material, the team has produced

07 Cancer-halting gene found 
Eighty per cent of patients diagnosed with lung cancer die within five years. Now, researchers have found a gene that can halt the movement of cancer from the lungs to other body parts. The research could lead to more effective treatments. The team found that ‘turning on’ the gene DIXDC1 reduces the cancer’s tendency to spread.

06 Nanotubes used to make hydrogen 
With fossil fuels possibly running out by the end of the century, the search for new energy sources is gathering pace. Now, a team at Rutgers University has developed a low-cost method for producing clean-burning hydrogen fuel. The technology uses carbon nanotubes as a catalyst to create hydrogen and oxygen from water using electrolysis. The fuel could be used to power cars

05 Immunity to alcohol
Ever woken up regretting the previous night’s overindulgence? Read on. Neuroscientists at the University of Texas have created ‘mutant’ worms that don’t get intoxicated by alcohol, a discovery that may help those struggling with addiction and withdrawal. The team implanted a molecule into nematode worms that’s responsible for binding to alcohol and triggering drunken behaviour in humans. They found the worms did not get drunk regardless of how much alcohol they consumed.

04 Artificial blood from stem cells
The ability to create human blood in the laboratory has come one step closer to reality. Researchers at the University of Wisconsin-Madison have discovered two genetic pathways by which blood cells develop from pluripotent stem cells. The discovery pins down exactly how blood is produced in nature and gives the scientists the means to produce the whole range of human blood cells, including the essential white and  red cells.

03 Liquid  hard drive
Next time you see a glass of liquid next to someone’s laptop think twice before taking a swig. You may be downing important documents or even their holiday snaps. A team at the University of Michigan has created a hard drive that suspends nanoparticles in water in special arrangements to st oer data. The technology could potentially store a terabyte of data in just one tablespoon  of liquid. The hope is that the technology could eventually be used in medical devices placed inside the body.

02 Better glue from barnacles 
When it comes to staying put there are few creatures that can compete  with the barnacle. The arthropods can stick themselves to any surface, even underwater. Biologists at Newcastle University discovered that they achieve this by first secreting an oil to repel water from a surface. They then secrete a powerful protein-based adhesive that sticks them fast. Further study could lead to synthetic bio adhesives for use in medical implants.

01 Shape-shifting robots
Remember the morphing form of the robot in Terminator 2? Well, researchers at MIT have developed a ‘squishy’ material that could allow real-life robots to accomplish the same feat. Working with robotics experts Boston Dynamics, the team has created a substance built 
from wax and foam that can switch between hard and soft states, thanks to heat that partially melts the wax. The technology could be used to build everything from deformable surgical robots to octopus-like limbs for search and rescue drones.


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Super Oversized Animals

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Largest Insect 
Goliath Beetle Goliathus spp. 60-110mm, 100g

Largest mammal  (and largest animal ever)
Blue whale  Balaenoptera musculus 30m, 170 tonnes Larger than any prehistoric giant, the blue whale would dwarf the largest known dinosaur, Argentinosaurus, which weighed a ‘mere’ 80 tonnes or so.

Largest fish Whale shark 
Rhincodon typus 12.65m, 21.5 tonnes

Largest amphibian 
Chinese giant salamander andrias davidianus 2m, 30kg

Largest carnivore 
Southern  elephant seal Mirounga leonina 3m, 4 tonnes

Largest Land Mammal 
African elephant Loxodonta africana 7.5m, 6 tonnes

Largest reptile 
Saltwater crocodile Crocodylus porosus 6.7m, 2 tonnes

Largest snake
Green anaconda eunectes murinus 6.6m, 70kg

Largest Dinosaur
Argentinosaurus estimated to be 30-35m long, 80-100 tonnes

Largest Bird 
Ostrich struthio camelus 2.1-2.8m, 145kg
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Longest-Lived Vertebrates in History

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10 Polar Bear: Ursus Maritimus 
42 years ‘Debbie’ died at  Assiniboine Zoo in Winnipeg in 2008.

09 Goldfish :Carassius Auratus Auratus 
43 years tish died in north yorkshire in 1999.

08 Cow :Bos Primagenius 
48 years ‘Big Bertha’ died three months before her  49th birthday.

07 Horse :Equus Ferus Caballus 
51 years the liver chestnut  stallion named shayne died in essex in 2013.

06 Asian Elephant :Elephas Maximus
86 years lin Wang or  ‘Grandpa lin’ died in taipei Zoo in 2003.

05 Blue and Yellow Macaw Ara Ararauna 
104 years churchill reputedly owned the macaw named charlie.

04 Tuatara :Sphenodon Punctatus
115 years old Henry, a tuatara in new Zealand, became a father at the age of 111 in 2009.

03 Bowhead Whale :Balaena Mysticetus 
211 years 200-year-old spears have been found in some bowheads

02 Koi Fish :Cyprinus Carpio Haema- Topterus 
226 years the oldest-known koi,  called Hanako, died in 1977

01 Aldabra Giant Tortoise :Aldabrachelys gigantea                 
Oldest individual recorded:255 years
Adwaita was a male tortoise reputedly given to Robert Clive in the 18th century. in around 1876 it was transferred to the Alipore Zoo in Kolkata, where it lived until its death in 2006. Adwaita’s age cannot be definitively confirmed; the longestlived reptile for which an age has been verified was Tu’i Malila, a radiated tortoise reputedly given to the Tongan royal family by Captain Cook in 1777, and which died in 1965 at the age of 188.

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Most Dangerous Animals on the PLanet

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10 Poison Dart Frog: Phyllobates Terribilis

Human deaths/year: Unknown  living in the rainforest of colombia, this frog’s skin is coated with enough batrachotoxins to kill at least ten men.

09 Box Jellyfish :Chironex Fleckeri

Human deaths: at least 60  since 1883 each of the sea wasp’s tentacles is armed with about 5000 stinging cells.

08 Sloth Bear :Melursus Ursinus 

Human deaths/year: <2 like other bear species, sloth bears don’t predate humans, but chance encounters can result in deaths

 07 Great White Shark :Carcharodon Carcharias 

Human deaths/year: <30 unprovoked shark attacks on humans are extremely rare – and fatalities even rarer. Great white, tiger and bull sharks are responsible for most.

06 Lion :Panthera Leo

Human deaths/year: ≤100 lion attacks on humans often occur during harvests, but rare outbreaks of mass ‘man eating’ also occur.

 05 African Elephant :Loxodonta Africana 

Human deaths/year: ≤300 elephants probably kill a few hundred people annually – though more  than 20,000 elephants are killed  by poachers each year.

 04 Nile Crocodile :Crocodylus Niloticus 

Human deaths/year: >300  Attacks by this large reptile on people on the water or on riverbacks are relatively frequent in Africa.

03 Hippopotamus :Hippopotamus Amphibius 

Human deaths/year: <3,000  Accurate figures are hard to obtain, but hippos are certainly responsible for many deaths every year in Africa

 02 Asian cobra :Naja Naja

Human deaths/year: ≤50,000  though not India’s most venomous snake, this cobra is responsible for the majority of snakebite deaths.

01 Mosquito :Anopheles Spp.

Human deaths/year: 2 million  Bites from these insects transmit the plasmodium blood parasites that  cause malaria.
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Super Strong Animals Count Down

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10 Brown Bear :Ursus Arctos 

Five times as strong as a human Grizzly bears grow to 500kg and over, and prey on large mammals such as moose, elk and even black bears.

09 Green Anaconda :Eunectes Murinus

Constricts at 90psi though figures are debated, the green anaconda is believed to be the world’s largest snake, and has the most powerful squeeze at a reported 90psi.

08 Ox :Bos Primigenius

Pulls 150% of own weight  the phrase ‘strong as an ox’ is well  coined: for millennia oxen have been  used for hauling heavy loads and ploughing heavy soil.

07 Asian Elephant :Elephas Maximus

Pulls 170% of own weight  But Asian elephants used in the timber industry have hauled logs weighing up  to 9 tonnes – nearly twice as heavy  as a large male tusker.

06 Tiger Panthera :Tigris

Lifts double own weight Prey varies across the ranges of the subspecies, but the largest tigers have been known to hunt and carry water buffalo and even young elephants

05 Crowned Hawk-Eagle :Stephanoaetus Coronatus

Lifts four times own weight one of Africa’s most powerful raptors, the crowned hawk-eagle preys on mammals such as monkeys and bushbucks that weigh up to 30kg

04 Eastern Gorilla :Gorilla Beringei

Lifts 10 times own weight  B ig male gorillas – silverbacks – are immensely strong. By comparison,  the strongest human weightlifters can  lift two or three times their own weight.

03 Leaf-cutter ants :Atta Cephalotes

Lifts 50 times its own weight  the various species of leafcutter ant carry relatively enormous chunks of leaves back to their nest to fertilise the fungi on which they feed.

02 Hercules Beetle :Dynastes Hercules

Lifts 850 times own weight the hefty insects known as rhinoceros beetles carry huge loads anecdotal evidence suggests this species can lug 850 times its own weight.

01 Dung Beetle :Onthophagus Taurus

Hauls 1141 times own weight  in 2010, researchers rob Knell and Leigh Simmons demonstrated that the strongest males can pull a load  1,141 times its own weight.
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Weird Parasites:The List

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Zombie-making Wasp

The female emerald cockroach wasp stings a cockroach’s brain, then lays an egg on its belly  and the wasp larva devours its host from the inside.

Tongue-eating Louse

The sea louse cymothoa exigua feeds on blood from a fish’s tongue till it withers away, then attaches itself to the stump to feed on blood and mucus.

Eye-inflating  Flatworm

Larvae of the green banded broodsac fill the eye-stalks of infected snails, making them look (and wriggle) like little caterpillars – luring hunting birds.

Eye Worm 

The larvae of the nematode worm loa loa infect human eyes, and can be seen and, more horribly, felt as they squirm across the tissue beneath the cornea.

Skin-boiling Worm

The guinea worm Dracunculus medinensis grows up to 1m long in humans, causing a burning pain as it emerges through the skin of legs.

Head-splitting Fungus

An ant infected with ophiocordyceps unilateralis climbs to the top of a plant and die. the fungus’ fruiting body then bursts from the ant’s head.

Sex-change Bacteria

Wolbachia are transmitted to their insect hosts’ offspring in eggs. to increase dispersal, these bacteria can change hosts’ sex from male to female.

Vampire Fish 

The tiny, eel-like candiru of the Amazon swims into the gills of other fish and feasts on their blood. reports suggest that it sometimes swims into human orifices.

Mind-control Bug

The single-celled parasite toxoplasma gondii eliminates infected rodents’ fear of cats – which then easily catch the rodents and are themselves infected.

Crab- castrating  Barnacle

When a female sacculina barnacle infects a crab, it changes the host’s hormones, effectively sterilising it.
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