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Humans inherited their flexible joints from the earliest jawed fish

Researchers discovered synovial joints in ancient fish lineages, suggesting these features first evolved in jawed vertebrates. The study's findings shed light on the origins of humans' flexible joints and provide critical information for research into vertebrate skeletal architecture.

SourcePLOS·JournalPLOS Biology·TypeObservational study·DateFeb 25, 2025

A matter of time

Researchers at ISTA used miniature 2D organs and rubbery silicone molds to study morphogen signaling dynamics during spinal cord development. The study found that BMP morphogen signaling gradients emerge quickly, then fade away, only to reappear again, shedding light on the complex process of tissue development.

SourceInstitute of Science and Technology Austria·JournalDevelopmental Cell·TypeExperimental study·DateNov 26, 2024

‘Some pterosaurs would flap, others would soar’ – new study further confirms the flight capability of these giants of the skies

Scientists have discovered that some pterosaurs flew by flapping their wings while others soared like vultures. The new findings were made possible by the discovery of remarkably well-preserved fossils in Jordan, including a species with a five-meter wingspan and unique internal structures.

SourceTaylor & Francis Group·JournalJournal of Vertebrate Paleontology·TypeImaging analysis·DateSep 6, 2024

A whale of a tail: Unraveling the evolutionary secrets of how whales and dolphins adapted their backbones for aquatic life

Researchers found that cetaceans' backbones are highly regionalized, with a shift in vertebral column driving locomotion in aquatic environments. The team developed a computational software, MorphoRegions, to analyze the backbone of each specimen individually.

Ancient polar sea reptile fossil is oldest ever found in Southern Hemisphere

A 246 million-year-old nothosaur vertebra was discovered on New Zealand's South Island, shedding new light on early sea reptiles from the Southern Hemisphere. The find reveals that these marine reptiles originated near the equator and rapidly spread to other regions, challenging long-standing hypotheses about their migration patterns.

SourceUppsala University·JournalCurrent Biology·TypeObservational study·DateJun 17, 2024

Tiny scales reveal megalodon was not as fast as believed, but it had a mega-appetite explaining its gigantism

A new study reveals that Megalodon, the iconic extinct shark, was not as fast as believed but had a mega-appetite that explained its gigantism. The discovery of tiny scales found in rock pieces surrounding fossil teeth suggests that Megalodon used its warm-bloodedness to promote visceral food processing and absorb nutrients.

SourceTaylor & Francis Group·JournalHistorical Biology·DateJul 11, 2023

New dinosaur named for Natural History Museum Professor

A new armoured dinosaur, Vectipelta barretti, has been described from the Isle of Wight, revealing differences in neck and back vertebrae and a unique spiky armour. The discovery provides new insights into ankylosaur diversity in the Wessex formation during the Early Cretaceous period.

SourceTaylor & Francis Group·JournalJournal of Systematic Palaeontology·TypeObservational study·DateJun 15, 2023

NRG Oncology study results confirm conventional external beam radiotherapy should remain standard of care in treating localized vertebral metastases of the spine

The NRG Oncology study found that stereotactic radiosurgery was not superior to conventional external beam radiotherapy in terms of pain response, and even showed worse pain response at 3 months. Conventional radiotherapy remained effective with a 50-60% pain relief rate, but only lasting four months.

SourceNRG Oncology·JournalJAMA Oncology·DateApr 27, 2023

Palaeontology: No supersonic boom for dinosaur tails

A modelling study published in Scientific Reports found that diplodocid tails were unlikely to create a supersonic boom due to their slow movement speed. The authors simulated tail movements using a model and found that adding hypothetical structures to the end of the tail did not allow it to reach the speed of sound without breaking.

SourceScientific Reports·JournalScientific Reports·DateDec 8, 2022

Smart implants to monitor healing

Researchers at the University of Pittsburgh have developed self-powered smart implants that can monitor spinal fusion healing in real-time. The implants use a new class of multifunctional mechanical metamaterials to record pressure and stresses, generating their own power and providing crucial information about the healing process.

SourceUniversity of Pittsburgh·JournalAdvanced Functional Materials·DateJun 23, 2022

New wireless photoelectric implant controls the activity of spinal neurons

Researchers have developed a revolutionary wireless photoelectric implant that can control the activity of spinal neurons, enabling the study of neural function and the development of new treatments for neurological disorders. The breakthrough technology uses pulses of light to stimulate or inhibit specific spinal-cord neurons, potenti...

SourceEcole Polytechnique Fédérale de Lausanne·JournalNature Biotechnology·TypeExperimental study·DateSep 27, 2021

How the amphibians got their vertebrae

A study found that ancient amphibians' spine stiffness varied with habitat, with more aquatic species having more rigid backbones. The researchers collected measurements on over 40 species of temnospondyls, providing valuable information on early vertebrate adaptations to water-to-land transitions.

SourcePLOS·JournalPLOS ONE·DateJun 9, 2021

How dinosaur research can help medicine

A team of researchers led by Dr. Tanja Wintrich discovered that even Tyrannosaurus rex could have suffered a slipped disc, as ancient reptiles had intervertebral discs similar to those in humans. This finding provides new insights into human spine mobility and medicine.

SourceUniversity of Bonn·JournalScientific Reports·DateAug 24, 2020

How and when spines changed in mammalian evolution

A new study from Harvard University and the Field Museum of Natural History sheds light on how changes in spines happened in mammal evolution. Researchers found that regions evolved long before new spinal functions, suggesting a combination of developmental changes and adaptive pressures played a significant role.

SourceHarvard University·JournalNature Ecology & Evolution·DateFeb 3, 2020

New global task force report questions effectiveness of spinal fusion procedures, provides recommendations

A new report from a global task force of bone health experts suggests that surgical procedures for spinal fractures may not be effective in reducing pain or improving quality of life. The report recommends against the use of vertebroplasty and balloon kyphoplasty, citing a lack of evidence supporting their benefits.

SourceBurness·JournalJournal of Bone and Mineral Research·DateJan 24, 2019

Breaking down backbones

Researchers found that mammal backbones gained distinct regions during evolution, enabling adaptation to various lifestyles such as running, flying, and digging. The study analyzed fossil records and living animals' vertebrae, challenging the notion of specialization in early land animals.

SourceHarvard University·JournalScience·DateSep 20, 2018