Researchers identify bone-forming cells as the driver of scoliosis caused by a genetic disorder, which can be prevented ...
Silent cells deep in your spinal cord may hold a surprising key to healing after devastating injuries and brain disease. A ...
Variation in spine care, from when surgeons operate to how they operate, is drawing renewed scrutiny as costs rise and new technologies reshape training. Spine leaders told Becker’s the specialty ...
A neural circuit, called the caudal granular insular complex, in an understudied region of the brain plays a critical role in turning temporary pain into chronic pain.
Zebrafish, unlike people, can recover from spinal cord injuries, thanks to a healing process that’s controlled by immune cells called macrophages. Gaining a better understanding of this phenomenon ...
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RAS-MAPK inhibition halts spinal deformity in neurofibromatosis type 1 mouse model
Spinal deformities such as scoliosis and kyphosis are among the most serious complications of neurofibromatosis type 1 (NF1), a genetic disorder that affects about one in 3,000 people. These ...
As pain management makes its own advancements, spine surgeons are putting increased emphasis on multidisciplinary collaborations. Spine surgeons discuss how pain management’s advances are reshaping ...
A research team from the University of Cologne has shown how zebrafish can rebuild their nerve pathways and restore their locomotor function after a spinal cord injury. People who suffer severe spinal ...
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