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Criteria for trading in an insensate and nonfunctional hand for a myoelectric prosthetic device.
Bionic hand? No longer only an image conjured by science fiction, bionic hands return functionality in cases of traumatic nerve and muscle loss. Certainly something to consider if you’ve lost your hand in an accident, but what if you still retain your hand, albeit a useless one? What would make a person voluntarily trade in a biological hand composed of flesh, blood, and bone for a prosthesis consisting of wires and synthetic material? And would the results be well worth the loss? An answer to these questions can be found in a new Journal of Neurosurgery article, “Algorithm for bionic hand reconstruction in patients with global brachial plexopathies,” by Laura A. Hruby, M.D., and colleagues from the Medical University of Vienna and the University of Applied Sciences FH Campus (Vienna). These researchers offer a treatment algorithm, or protocol, for identifying patients with global (flail arm) brachial plexus injuries who are likely to benefit from trading in their insensate and nonfunctional hand for a myoelectric prosthetic device. Background The brachial plexus is a network of sensory and motor fibers originating from spinal nerves in the lower cervical and upper thoracic spine that coalesce to form nerves that serve the shoulder, arm, and hand. A traumatic injury to the brachial plexus can cause these fibers to overstretch, sometimes avulsing (tearing) the spinal nerve roots from the spinal cord. Traumatic brachial plexus injuries with nerve root avulsions occur most often in young adults. A variety of surgical procedures can be performed to restore nerve and muscle activity. Following these procedures, the shoulder and upper arm often regain stability and movement, and in some cases hand and finger movement can be restored—at least partially. In other cases, for a variety of reasons surgery fails and the hand remains a useless appendage. Without use of the hand, the patient’s life changes dramatically. Depending on occupation, the patient’s economic livelihood may be jeopardized. Daily activities of living become difficult. Body image is transformed in a negative fashion, and chronic pain may become a new companion. The Study The authors recount their experience with patients who sought treatment for global brachial plexus injuries at the Center for Advanced Restoration of Extremity Function in Vienna between 2011 and 2015. In 16 patients, the nerve injury was so severe that no currently available biological intervention could restore adequate hand function. The authors offered these patients a bionic alternative: replacement of the useless biological hand with a myoelectric prosthetic device–a bionic hand. The authors describe a treatment algorithm that they have developed for bionic hand reconstruction. It comprises several steps:
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