A new microraptorine specimen (Theropoda: Dromaeosauridae) with a brief comment on the evolution of compound bones in theropods
Authors:
Xu et al
Abstract:
Microraptorinae is a recently discovered subgroup of dromaeosaurid theropods, mostly comprising species from the Lower Cretaceous Jehol Group of western Liaoning, China. Here we describe a new microraptorine specimen from the Jiufotang Formation (the upper section of the Jehol Group) of Dapingfang, Chaoyang, Liaoning, which displays interesting morphological features not previously documented within Microraptorinae. Noteworthy are several osteological features, including dental and ischial ones, which are transitional between the condition of Sinornithosaurus and that of Microraptor. These features highlight the existence of a spectrum of morphological variation between Sinornithosaurus, which is more like a typical dromaeosaurid, and Microraptor, which shares many characteristics with troodontids. However, the taxonomic significance of these variations has not to be fully assessed yet. A feature deserving special mention is the fusion of the pubes to the ilia in this specimen, which has implications for the evolution of compound bones in theropods+. Our preliminary analysis suggests that many compound bones in birds have been formed by sequential fusion of multiple elements in a peramorphic process.
Showing posts with label microraptorines. Show all posts
Showing posts with label microraptorines. Show all posts
Wednesday, June 01, 2016
A new Microraptor Relative Found in Cretaceous China?
Labels:
china,
cretaceous,
dinosaurs,
dromaeosaur,
fossils,
maniraptor,
mesozoic,
microraptorines,
paleontology,
theropods
Wednesday, July 16, 2014
Changyuraptor yangi: a new ‘Four-winged’ Microraptorine From Barremian Cretaceous China's Jehol Biota
A new raptorial dinosaur with exceptionally long feathering provides insights into dromaeosaurid flight performance
Authors:
Han et al
Abstract:
Microraptorines are a group of predatory dromaeosaurid theropod dinosaurs with aerodynamic capacity. These close relatives of birds are essential for testing hypotheses explaining the origin and early evolution of avian flight. Here we describe a new ‘four-winged’ microraptorine, Changyuraptor yangi, from the Early Cretaceous Jehol Biota of China. With tail feathers that are nearly 30 cm long, roughly 30% the length of the skeleton, the new fossil possesses the longest known feathers for any non-avian dinosaur. Furthermore, it is the largest theropod with long, pennaceous feathers attached to the lower hind limbs (that is, ‘hindwings’). The lengthy feathered tail of the new fossil provides insight into the flight performance of microraptorines and how they may have maintained aerial competency at larger body sizes. We demonstrate how the low-aspect-ratio tail of the new fossil would have acted as a pitch control structure reducing descent speed and thus playing a key role in landing.
Labels:
barremian,
birds,
cretaceous,
dinosaurs,
dromaeosaur,
feathers,
flight,
fossils,
jehol biota,
maniraptor,
mesozoic,
microraptorines,
paleontology,
theropods
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