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Unilateral vocal cord palsy can be a benign condition with a reasonable chance of spontaneous recovery. Analysis of 21 selected patients has shown that 5 recovered completely and another 5 improved within months of the onset. The remaining 11 patients developed no major disease during the subsequent one to eight years.  相似文献   

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Objective

 When root avulsions are detected in children suffering from obstetrical brachial plexus palsy (OBPP), neurotization procedures of different nerve trunks are commonly applied in primary brachial plexus repair, to connect distally the nerves of the upper limbs using healthy nerve structures. This article aims to outline our experience of neurotization procedures in OBPP, which involves nerve transfers in the event of delayed repair, when a primary repair has not occurred or has failed. In addition, we propose the opportunity for late repair, focusing on extending the time limit for nerve surgery beyond that which is usually recommended. Although, according to different authors, the time limit is still unclear, it is generally estimated that nerve repair should take place within the first months of life. In fact, microsurgical repair of OBPP is the technique of choice for young children with the condition who would otherwise have an unfavorable outcome. However, in certain cases the recovery process is not clearly defined so not all the patients are direct candidates for primary nerve surgery.

Methods

 In the period spanning January 2005 through January 2011, among a group of 105 patients suffering from OBPP, ranging from 1 month to 7 years of age, the authors have identified a group of 32 partially recovered patients. All these patients underwent selective neurotization surgery, which was performed in a period ranging from 5 months to 6.6 years of age.

Results

 Late neurotization of muscular groups achieved considerable functional recovery in these patients, who presented with reduced motor function during early childhood. The said patients, with the exception of five, would initially have avoided surgery because they had not met the criteria for nerve surgery.

Conclusion

 We have concluded that the execution of late nerve surgical procedures can be effective in children affected by OBPP.  相似文献   

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The estimation of numbers of nerve fibers in cross sections of peripheral nerves containing both fine and large fiber components can be accomplished by using an ocular grid and selectively counting a known area. With the use of a projecting apparatus and planimeter, the total cross section area is determined.

The following proportion expresses the principle involved:

total number of fibers in the nerve area of ass section of entire nerve number counted in the sample area area of sample

I f the planimeter calibration and the magnification of the tracing remain the same, a constant factor may be used for successive estimates. This factor is equal to the value of the planimeter reading of 1.000 divided by the area of the grid times the magnification squared. The final calculations are made by multiplying the number of fibers counted times the planimeter reading times the constant and dividing by the number of grid squares counted.

Counts of some nerves, using high magnification in enumerating the sample areas, can be finished in less than an hour after the preparation of slides. In comparing numbers obtained by complete counts with estimated numbers, the error was determined to be approximately ± 5%  相似文献   

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Cranial nerves govern sensory and motor information exchange between the brain and tissues of the head and neck. The cranial nerves are derived from two specialized populations of cells, cranial neural crest cells and ectodermal placode cells. Defects in either cell type can result in cranial nerve developmental defects. Although several signaling pathways are known to regulate cranial nerve formation our understanding of how intercellular signaling between neural crest cells and placode cells is coordinated during cranial ganglia morphogenesis is poorly understood. Sonic Hedgehog (Shh) signaling is one key pathway that regulates multiple aspects of craniofacial development, but whether it co-ordinates cranial neural crest cell and placodal cell interactions during cranial ganglia formation remains unclear. In this study we examined a new Patched1 (Ptch1) loss-of-function mouse mutant and characterized the role of Ptch1 in regulating Shh signaling during cranial ganglia development. Ptch1Wig/ Wig mutants exhibit elevated Shh signaling in concert with disorganization of the trigeminal and facial nerves. Importantly, we discovered that enhanced Shh signaling suppressed canonical Wnt signaling in the cranial nerve region. This critically affected the survival and migration of cranial neural crest cells and the development of placodal cells as well as the integration between neural crest and placodes. Collectively, our findings highlight a novel and critical role for Shh signaling in cranial nerve development via the cross regulation of canonical Wnt signaling.  相似文献   

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John Silversides 《CMAJ》1964,91(5):195-204
Electricity is a potentially very dangerous commodity. Community safeguards, however, result in remarkably efficient control of this hazard. Mortality figures appear to be small and constant. No satisfactory morbidity figures are available with regard to general and neurological complications in non-fatal cases. Study of relevant features of such electrical phenomena as voltage level, resistance factors, current pathway, current diffusion and grounding reveals many difficulties in reconstruction of the sequence of events involved in these injuries. These features underline our frequent inability to understand the mechanisms of initiation of unconsciousness and even of differentiation between death by cardiac arrest and death by respiratory paralysis. Fourteen cases of electrical injury with a variety of neurological complications and sequelae are discussed, and the findings in these cases are compared with those of other observers. An attempt is made to present a comprehensive picture of immediate, secondary and late neurological effects, and to illustrate some of the pathological findings in electrocution material.  相似文献   

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Background

 In neurological diseases, winging of the scapula occurs because of serratus anterior muscle dysfunction due to long thoracic nerve palsy, or trapezius muscle dysfunction due to accessory nerve palsy. Several sports can cause long thoracic nerve palsy, including archery and tennis. To our knowledge, this is the first report of long thoracic nerve palsy in an aquatic sport.

Objective

 The present study is a rare case of winging of the scapula that occurred during synchronized swimming practice.

Methods

 The patient''s history with the present illness, examination findings, rehabilitation progress, and related medical literature are presented.

Results

 A 14-year-old female synchronized swimmer had chief complaints of muscle weakness, pain, and paresthesia in the right scapula. Upon examination, marked winging of the scapula appeared during anterior arm elevation, as did floating of the superior angle. After 1 year of therapy, right shoulder girdle pain and paresthesia had disappeared; however, winging of the scapula remained.

Conclusions

 Based on this observation and the severe pain in the vicinity of the second dorsal rib, we believe the cause was damage to the nerve proximal to the branch arising from the upper nerve trunk that innervates the serratus anterior.  相似文献   

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《CMAJ》1952,66(5):490-491
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《BMJ (Clinical research ed.)》1966,1(5497):1187-1188
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