
shark vs the universe
Lint Roller? I Barely Know Her
let's talk about Bridgerton tea, my ask is open
No title available

if i look back, i am lost
Cosimo Galluzzi
The Stonewall Inn
Phantogram Three

izzy's playlists!
Fai_Ryy
almost home
EXPECTATIONS
Show & Tell
𓃗

Jimmy Eat World
macklin celebrini has autism
$LAYYYTER

bliss lane

No title available
No title available

seen from United Kingdom
seen from India

seen from United States
seen from Argentina

seen from United States
seen from Argentina
seen from Venezuela
seen from Ukraine
seen from United States
seen from Germany
seen from Bangladesh
seen from Ireland
seen from Taiwan
seen from China
seen from South Africa

seen from Japan
seen from Germany
seen from Indonesia
seen from United States
seen from Italy
@katmusik-blog
[video]
THESE PICTURES MADE ME LAUGH OH GOD SO CUTE
ベリボ! nightclub “Heaven’s Door” Nishiogikubo, Tokyo. Nov 24, 2013.
camera : nimslo 3D / film : Lomography Color Negative 100 / scanner : Epson GT-F730
hearing bjork like:
@martigro
Every episode of “Are You Afraid of the Dark?” is on YouTube.
Watch them all here
i recommend “The Tale of The Phone Police”, for a cautionary story on the perils of making prank telephone calls.
dj bjork getting turnt up
Malala Yousafzai tiene 17 años, muy joven demasiado joven para tener sobre sus hombros una historia de sufrimiento y lucha tan dura.
Su historia comienza en 2009, cuando tenía 12 años y los talibanes que controlaban el valle del Swat en Pakistán, impusieron su versión del islam a todos los...
DARWIN WAS RIGHT: RESEARCH CONFIRMS CONTROVERSIAL DARWIN THEORY OF JUMP DISPERSAL
More than one hundred and fifty years ago, Charles Darwin hypothesized that species could cross oceans and other vast distances on vegetation rafts, icebergs, or in the case of plant seeds, in the plumage of birds.
Though many were skeptical of Darwin’s “jump dispersal” idea, a new study suggests that Darwin might have been correct.
A new computational method, published in the journal Systematic Biology, tested two competing theories about how species came to live where they do and found strong evidence for jump dispersal, especially for island species.
The question of how species came to live where they live, which is studied by the field of biogeography, has long been debated among biologists, especially in cases where organisms that are related live on distant continents separated by vast oceans. Examples are flightless birds like the African ostrich and the Australian emu and Southern Beeches, a genus of 36 species of trees and shrubs which appear in temperate forests from South America to Australia and New Zealand.
Others found Darwin’s “jump dispersal” theory too fanciful and suggested instead that “land bridges” were used when continents were contiguous. This view, called “vicariance biogeography,” became the dominant paradigm.
In fact, the vicariance view became so dominant that computer programs designed to estimate the biogeographic history of a species left out jump dispersal entirely, and these programs have been used in hundreds of studies in recent years.
Yet, in many cases, statistical dating of evolutionary events indicated that the breakup of land masses occurred tens of millions of years before some species’ ancestors evolved, bringing into question the validity of vicariance methods.
The new study compares the theories of jump dispersal and vicariance in a new computational program developed by Nicholas J. Matzke, a postdoctoral fellow at the National Institute for Mathematical and Biological Synthesis. Using data from many species that live on the Hawaiian Islands and on other archipelagos, Matzke found that jump dispersal was able to explain the biogeography of the species with a far greater statistical probability than through the vicariance method.
“Conventional biogeography said vicariance was a more scientific explanation than jump dispersal because vicariance relied on normal, predictable processes, and jump dispersal relied on extremely rare, near-miraculous events,” Matzke said. “Now the shoe is really on the other foot because the jump dispersal pattern appears to be much more common. It looks like Darwin was right after all.”
Matzke suggests that researchers need to include jump dispersal in order to accurately reconstruct evolutionary history.
“Jump dispersal helps us remember that events that are rare on human timescales can be common over geological timescales, and that biodiversity might be structured largely by these rare chance events.”
Reference: Matzke 2014. Model selection in historical biogeography reveals that founder-event speciation is a crucial process in island clades. Systematic Biology
More: NIMBios
Photo Grand Cayman blue-throated anole,by Christopher R. Peterson
DARWIN WAS RIGHT: RESEARCH CONFIRMS CONTROVERSIAL DARWIN THEORY OF JUMP DISPERSAL
More than one hundred and fifty years ago, Charles Darwin hypothesized that species could cross oceans and other vast distances on vegetation rafts, icebergs, or in the case of plant seeds, in the plumage of birds.
Though many were skeptical of Darwin’s “jump dispersal” idea, a new study suggests that Darwin might have been correct.
A new computational method, published in the journal Systematic Biology, tested two competing theories about how species came to live where they do and found strong evidence for jump dispersal, especially for island species.
The question of how species came to live where they live, which is studied by the field of biogeography, has long been debated among biologists, especially in cases where organisms that are related live on distant continents separated by vast oceans. Examples are flightless birds like the African ostrich and the Australian emu and Southern Beeches, a genus of 36 species of trees and shrubs which appear in temperate forests from South America to Australia and New Zealand.
Others found Darwin’s “jump dispersal” theory too fanciful and suggested instead that “land bridges” were used when continents were contiguous. This view, called “vicariance biogeography,” became the dominant paradigm.
In fact, the vicariance view became so dominant that computer programs designed to estimate the biogeographic history of a species left out jump dispersal entirely, and these programs have been used in hundreds of studies in recent years.
Yet, in many cases, statistical dating of evolutionary events indicated that the breakup of land masses occurred tens of millions of years before some species’ ancestors evolved, bringing into question the validity of vicariance methods.
The new study compares the theories of jump dispersal and vicariance in a new computational program developed by Nicholas J. Matzke, a postdoctoral fellow at the National Institute for Mathematical and Biological Synthesis. Using data from many species that live on the Hawaiian Islands and on other archipelagos, Matzke found that jump dispersal was able to explain the biogeography of the species with a far greater statistical probability than through the vicariance method.
“Conventional biogeography said vicariance was a more scientific explanation than jump dispersal because vicariance relied on normal, predictable processes, and jump dispersal relied on extremely rare, near-miraculous events,” Matzke said. “Now the shoe is really on the other foot because the jump dispersal pattern appears to be much more common. It looks like Darwin was right after all.”
Matzke suggests that researchers need to include jump dispersal in order to accurately reconstruct evolutionary history.
“Jump dispersal helps us remember that events that are rare on human timescales can be common over geological timescales, and that biodiversity might be structured largely by these rare chance events.”
Reference: Matzke 2014. Model selection in historical biogeography reveals that founder-event speciation is a crucial process in island clades. Systematic Biology
More: NIMBios
Photo Grand Cayman blue-throated anole,by Christopher R. Peterson
Films of 2014
Dancer in the Dark: ★★★★1/2