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Brain compensatory mechanisms enhance the recovery from spinal cord injury
A research team led by Tadashi Isa, a professor at the Japanese National Institute for Physiological Sciences, NIPS (SEIRIKEN), and Dr. Yukio Nishimura (University of Washington, Seattle), have found that brain compensatory mechanisms contribute to recovery from spinal cord injury.   view more (2007-11-16)

Promising new nanotechnology for spinal cord injury
A spinal cord injury often leads to permanent paralysis and loss of sensation below the site of the injury because the damaged nerve fibers can't regenerate. The nerve fibers or axons have the capacity to grow again, but don't because they're blocked by scar tissue that develops around the injury.   view more (2008-04-03)

Medication appears helpful for treatment of erectile dysfunction in men with spinal cord injuries
The drug tadalafil appears to improve erectile function in men with spinal cord injuries, according to an article posted online today that will appear in the November 2007 print issue of Archives of Neurology, one of the JAMA/Archives journals.   view more (2007-09-11)

U of M performs first systemic therapy for fatal childhood disease
University of Minnesota Children's Hospital, Fairview physicians have performed the first bone marrow and cord blood transplant to treat recessive dystrophic epidermolysis bullosa (RDEB).   view more (2007-11-05)

No link between high blood pressure and headaches
Severe headaches are not a sign of high blood pressure, as is commonly thought, finds research in the Journal of Neurology Neurosurgery and Psychiatry. If anything, high blood pressure seems to reduce the risk of these headaches, the study shows.   view more (2002-03-21)

Radiation therapy combined with microsurgery shows promise for curing injured spinal cord
Research on rats with crushed spinal cords, similar to human injury, reveals that treatment soon after injury combining radiation therapy to destroy harmful cells and microsurgery to drain excess fluids significantly increases the body's ability to repair the injured cord leading to permanent recovery from injury.   view more (2007-07-25)

Identification of a key molecular pathway required for brain neural circuit formation
The research group of Dr. Frédéric Charron, a researcher at the Institut de recherches cliniques de Montréal (IRCM), has made a discovery which could help treat spinal cord injuries and neurodegenerative diseases.   view more (2009-05-18)

UCI embryonic stem cell therapy restores walking ability in rats with neck injuries
The first human embryonic stem cell treatment approved by the FDA for human testing has been shown to restore limb function in rats with neck spinal cord injuries - a finding that could expand the clinical trial to include people with cervical damage.   view more (2009-11-10)

Researchers Discover New Factor in Nerve Regeneration
Researchers in Oxford University's Department of Human Anatomy have identified a factor involved in the regeneration of neurons in the central nervous system. The discovery and use of this factor could provide the basis for a reparative treatment for both brain and spinal cord injuries. Unlike lower vertebrates, mammals have lost the ability to... view more... (2003-04-07)

Response to immune protein determines pathology of multiple sclerosis
New research may help reveal why different parts of the brain can come under attack in patients with multiple sclerosis (MS). According to a new study in mice with an MS-like disease, the brain's response to a protein produced by invading T cells dictates whether it's the spinal cord or cerebellum that comes under fire.   view more (2008-10-14)

Spinal cord repair: pilot trials "within sight"
When the brain and spinal cord are injured, the damage is permanent, because the tissues cannot repair themselves in the way that bone and skin can. Writing in the June Journal of the Royal Society of Medicine, Dr Geoffrey Raisman describes encouraging results from a new approach to the problem, which he believes will make it possible to plan a... view more... (2003-05-28)

Fast and slow — How the spinal cord controls the speed of movement
Using a state-of-the-art technique to map neurons in the spinal cord of a larval zebrafish, Cornell University scientists have found a surprising pattern of activity that regulates the speed of the fish's movement.   view more (2007-03-01)

Pathways of emotion - from cortex to peripheral organs
Walking down a dark alley late at night is enough to give anyone the heebie-jeebies. Your heart starts racing, your palms get clammy and you get ready to run. Now researchers from Boston University have unravelled the neural pathways that transmit information about your surroundings to your organs, enabling them to respond appropriately. The... view more... (2003-10-07)

UCLA scientists restore walking after spinal cord injury
Spinal cord damage blocks the routes that the brain uses to send messages to the nerve cells that control walking. Until now, doctors believed that the only way for injured patients to walk again was to re-grow the long nerve highways that link the brain and base of the spinal cord.   view more (2008-01-07)

Rise in serious head injuries among snowboarders and skiers
Serious head injuries among alpine skiers and snowboarders have risen over the past 15 years, reveals research in Injury Prevention.   view more (2007-12-04)

MIT identifies cells for spinal-cord repair
A researcher at MIT's Picower Institute for Learning and Memory has pinpointed stem cells within the spinal cord that, if persuaded to differentiate into more healing cells and fewer scarring cells following an injury, may lead to a new, non-surgical treatment for debilitating spinal-cord injuries.   view more (2008-07-22)

U of M begins nation's first clinical trial using T-reg cells from cord blood in leukemia treatment
University of Minnesota researchers have initiated a ground breaking clinical trial to determine the optimal dose and safety of T regulatory cells (T-regs) to decrease the risk of immune reactions common in patients undergoing blood and marrow transplantation.   view more (2007-09-06)

Vocal cord dysfunction may be caused by work
Researchers from the UAB and the Vall d'Hebron Hospital have diagnosed two patients affected with vocal cord dysfunction, which causes coughing and difficulty in breathing due to irritating agents that are breathed in at the workplace.   view more (2007-09-07)

Study establishes safety of spinal cord stem cell transplantation
Transplanting human embryonic stem cells does not cause harm and can be used as a therapeutic strategy for the treatment of acute spinal cord injury.   view more (2006-07-20)

Jefferson Orthopaedic Surgeons Leading International Study of Timing of Spinal Surgery
When it comes to a devastating spinal injury, says spine surgeon Alexander Vaccaro, M.D., timing might be nearly everything. It's also a topic of great debate and discussion among orthopaedic surgeons.   view more (2006-10-05)
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