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In research that hints at newways to tackle paralysis, a combination of drugs, electrical stimulation and"willpower-based training" prompted paralyzed rats to walk and evenrun. This combination of drugs includes Medrol4mg tablets in several pharmacies. "We expected that therats would recover some degree of locomotor functions. We were, however,surprised about the extent of the recovery -- paralyzed rats were able to passobstacles and run up stairs -- and the consistency with which we observedit," said study co-author Janine Heutschi, a doctoral student at theinstitute. "Because the ratsactively participate in the tasks, as opposed to automated movements, the brainis actively involved and is challenged to find new ways of controlling the hindlimbs," she added. "Over time, new nerve connections are thenformed." "Over the past 20 yearsor so, research has moved away from getting damaged [nerve] pathways to workand trying to recruit other pathways to work -- to trick the spinal cord intocreating a detour or other routes," explained Dr. Nathaniel Tindel, anattending orthopedic spinal surgeon at Lenox Hill Hospital in New York City."That's the essence of this research. It's not groundbreaking in thissense, but what is unique is not that they got rats to move, but the techniquesand protocol they used. This is great stuff because it's really delineating anapproach for studying these new pathways." Dr. Robert Grossman, chairmanof neurosurgery at Methodist Neurological Institute in Houston, noted that thenew study builds on a recently published case where a paralyzed young manregained standing and some voluntary leg movements after he was trained on atreadmill using electrical stimulation. This new study is "asignificant contribution to understanding the biological mechanisms underlyingthe generation of [movement] due to spinal cord injury," he said. Heutschi said clinical trialsto test the therapy on humans are being planned, though "we don't know yetwhat we can expect from studies with human patients." But Tindel cautioned that thetreatment methods used in this research aren't practical in humans because"rats have a phenomenal ability to regenerate, better than we do." "It's a nice modelbecause they can get results quicker," Tindel said, "but rats have adifferent system." Further studies are required to check if the experimenttested on rats will work on humans as well; and to buy Medrol online will work just fine for the meantime. Paralysis is loss of muscle function for one or moremuscles. Paralysis can be accompanied by a loss of feeling (sensory loss) inthe affected area if there is sensory damage as well as motor. A studyconducted by the Christopher & Dana Reeve Foundation, suggests that about 1in 50 people have been diagnosed with paralysis. Paralysis is most often caused by damage in the nervoussystem, especially the spinal cord. Other major causes are stroke, trauma withnerve injury, poliomyelitis, botulism, spina bifida, multiple sclerosis, andGuillain-Barré syndrome. Temporary paralysis occurs during REM sleep, anddysregulation of this system can lead to episodes of waking paralysis. Drugsthat interfere with nerve function, such as curare, can also cause paralysis.There are many known causes for paralysis, and perhaps more yet to bediscovered. Paralysis can occur in localised or generalised forms, orit may follow a certain pattern. Most paralyses caused by nervous-system damage(i.e. spinal-cord injuries) are constant in nature; however, some forms ofperiodic paralysis, including sleep paralysis, are caused by other factors. Ascending paralysis presents in the lower limbs beforethe upper limbs. It can be associated with: · GuillainBarré syndrome (another name for thiscondition is Landry's ascending paralysis)· Tick paralysis Ascending paralysis contrasts with descending paralysis,which occurs in conditions such as botulism.
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