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The 11th nerve syndrome. Accessory nerve palsy or adhesive capsulitis?

The 11th nerve syndrome classically involves the majority of patients undergoing neck dissections even when the accessory nerve is preserved. A preliminary analysis of our data of 31 of 44 patients who underwent neck dissections from a prospective study showed numerous findings of shoulder disability that are not attributable to accessory nerve palsy but are well described by the syndrome of adhesive capsulitis of the glenohumeral joint. At 1 month postoperatively, although accessory nerve palsy symptoms were common, adhesive capsulitis symptoms were significant. At 6 months, the frequency of accessory nerve palsy symptoms was less as the accessory nerve had begun to recover. At 12 and 18 months, when most of the accessory nerves had recovered, the accessory nerve palsy symptoms were comparatively uncommon while the adhesive capsulitis symptoms predominated as the remaining symptoms of the 11th nerve syndrome. We propose that adhesive capsulitis is a principal component of the 11th nerve syndrome that can significantly compound the morbidity of a neck dissection even when the accessory nerve recovers. We also propose that adhesive capsulitis accounts for the persistence and variability of shoulder symptoms after neck dissection that cannot be attributed to trapezius muscle dysfunction.

Accessory Nerve↗

[Reconstruction for brachial injury by the accessory nerve--anatomy of the accessory nerve and its innervation of the trapezius--Japan].

At present reconstruction of not only elbow function, but also wrist and fingers function is possible for totally paralysed root avulsion type of brachial plexus injuries by means of multiple nerve transfers and free muscle transplantation. Although denervation of the trapezius muscle may be a problem, the accessory nerve is used as the donor nerve for reconstruction. Forty-seven cadaver dissections were performed to determine the innervation of the trapezius. In 98% of the regions, branches of the accessory nerve or the cervical nerves were found to be directly innervated with the accessory nerve in the posterior triangle of the neck without anastomosis. This study came to the conclusion that it was possible to use the accessory nerve as the donor nerve without paralysis of the upper part of the trapezius, if the accessory nerve was used at an adequate point. Since the course of the accessory nerve is similar to one of the cervical nerve in the posterior triangle of the neck, it is difficult to distinguish them. The layer of the course and the great auricular nerve at the posterior margin of the sternocleidomastoid are reference points of the accessory nerve and the cervical nerves.

Accessory Nerve↗

The anatomy of the inferior petrosal sinus, glossopharyngeal nerve, vagus nerve, and accessory nerve in the jugular foramen.

PURPOSE: To define the variations of the courses of the cranial nerves and the inferior petrosal sinuses as they enter and traverse the jugular foramen. METHODS: Thirty-nine cadaveric specimens containing the jugular foramen were scanned with 1-mm contiguous axial and coronal CT sections. Each specimen was dissected to evaluate the position of the cranial nerves and inferior petrosal sinus as they entered the jugular foramen. RESULTS: The glossopharyngeal nerve entered the most superior, anterior, and medial aspect of the jugular foramen and descended in the anterior portion of the jugular foramen, often within a groove. The vagus and accessory nerves could not be separated by CT. They entered the jugular foramen most often anterior or anterior and inferior to the jugular spine of the temporal bone and descended in a position ranging from medial to anterior to the jugular vein. The inferior petrosal sinus most often coursed inferior to the horizontal portion of the glossopharyngeal nerve and entered the jugular system in the jugular foramen, at the exocranial opening or below the skull base. A pars nervosa and pars venosa could be identified only at the endocranial opening, where the jugular spine separated the pars nervosa containing the inferior petrosal sinus and three cranial nerves from the pars venosa containing the jugular vein. CONCLUSION: Our evaluation demonstrated anatomic variation in the area of the jugular foramen.

Accessory Nerve↗

Iatrogenic accessory nerve injury.

Accessory nerve injury produces considerable disability. The nerve is most frequently damaged as a complication of radical neck dissection, cervical lymph node biopsy and other surgical procedures. The problem is frequently compounded by a failure to recognise the error immediately after surgery when surgical repair has the greatest chance of success. We present cases which outline the risk of accessory nerve injury, the spectrum of clinical presentations and the problems produced by a failure to recognise the deficit. Regional anatomy, consequences of nerve damage and management options are discussed. Diagnostic biopsy of neck nodes should not be undertaken as a primary investigation and, when indicated, surgery in this region should be performed by suitably trained staff under well-defined conditions. Awareness of iatrogenic injury and its consequences would avoid delays in diagnosis and treatment.

Accessory Nerve↗

Isolated accessory nerve palsy.

Accessory nerve palsy is either idiopathic or secondary to local trauma, infection, or tumor. The discomfort and disability produced as a result of trapezius weakness may be significant. The clinical features and management of accessory nerve palsy have been discussed.

Accessory Nerve↗

Traumatic spinal accessory nerve palsy.

Spinal accessory nerve sections due to a purely traumatic origin are very rare. The authors report a case in which a total section of the spinal accessory nerve was observed after a glass-penetrating injury. The primary lesion was undiagnosed, and only late physical examination revealed a scapula alata with a deficiency in shoulder protrusion and elevation. Surgical exploration with direct suturing of the nerve was performed 2 months after the initial trauma; full restoration of muscle function was obtained 12 months after the surgical procedure. Pain, the dominant preoperative feature, totally disappeared after restoration of shoulder function. Although infrequent, spinal accessory nerve lesions must always be excluded in cases of penetrating injuries in the posterior triangle of the neck. Emphasis is placed on diagnosis and treatment of this condition.

Accessory Nerve↗

Ultrastructural changes in the nerve fiber population of anastomosed vagal and spinal accessory nerves in the sheep.

BACKGROUND: The ultrastructure of the vagal and spinal accessory nerves was studied 1) in normal sheep and 2) in sheep in which an experimental crossed-nerve anastomosis had been made by sectioning the supranodose vagal and spinal accessory nerves, then suturing the distal end of the vagal nerve to the distal end of the spinal accessory nerve, and allowing time for regeneration to occur. This study was carried out in order to analyze the modifications liable to occur when this technique is used and to specify the origin and the nature of the fibers that colonize the spinal accessory nerve. METHODS: The study was performed in 4- to 5-month-old-sheep. After the surgical procedure, the animals were housed indoors during 1 year until their sacrifice by fixative perfusion. Then, nerve samples were dissected out, processed for electron microscopy, examined, and systematically photographed. After printing, the diameters of the nerve fibers were determined. RESULTS: In sheep, the ratios of nonmyelinated to myelinated fibers (NF/MF) in the infranodose and supranodose vagal nerve and accessory spinal nerve were 1.21, 1.67, and 3.21, respectively. In both parts of the vagal nerve, the myelinated fibers had a unimodal diameter distribution around a peak of 4 microns; whereas, in the spinal accessory nerve, they were distributed bimodally, and 53% had values of 15-18 microns. After making the above anastomosis, the centrifugal vagal fibers degenerated, and the NF/MF ratios increased in the centripetal infranodose vagal nerve, in the reinnervating supranodose vagal nerve, and in the reinnervated spinal accessory nerve (approximately 1.87, 1.72, and 6.04, respectively). In all of these nerves, the myelinated fibers had a unimodal distribution with a peak at 4 microns, as in the vagal nerve of normal sheep. CONCLUSIONS: These results reveal the large part taken by the nonmyelinated fibers in the nerve fiber population of the vagal nerve and support the vagal origin of the fibers reinnervating the spinal accessory nerve.

Accessory Nerve↗

[Isolated lesion of the accessory nerve].

An isolated accessory nerve lesion was diagnosed in three patients. At clinical investigation of patients with this lesion, paresis of the trapezius muscle is found. This finding can be substantiated by electromyography. An accessory nerve lesion is usually caused by trauma (including surgical trauma) or space-occupying lesions such as tumour or abscess. There are also idiopathic forms. The prognosis is poor. Treatment may include electrostimulation, administration of NSAIDs, nerve transplantation and muscle transposition.

Accessory Nerve↗

Experimental study on donor nerves for brachial plexus injury: comparison between the spinal accessory nerve and the intercostal nerve.

The spinal accessory nerve and intercostal nerves are widely used as donor nerves for neurotization in patients with brachial plexus injuries. However, the characteristic differences in reinnervation by the spinal accessory and intercostal nerves have not been investigated. The purpose of this study is to compare the resulting contractile properties of the biceps muscles following nerve-crossing procedures of spinal accessory nerve and intercostal nerves to the musculocutaneous nerves. In 10 beagle dogs, the spinal accessory nerve was used to reinnervate the left biceps muscle, and the second and third intercostal nerves were used to reinnervate the right biceps muscle. After 10 months, the reinnervated muscles were studied by measuring their force of contraction as well as by histochemical methods. Biceps muscles reinnervated by spinal accessory nerves (A transfers) acquired the properties of fast, fatigable muscles, whereas those reinnervated by intercostal nerves (IC transfers) acquired the properties of slow, fatigue-resistant muscles. Furthermore, histochemical studies showed that type II fibers were predominant in A transfers, whereas type I fibers were predominant in IC transfers. This study clearly demonstrates the differences between the spinal accessory nerve and intercostal nerves as donor nerves. This may lead us to select appropriate donor nerves for nerve-crossing procedures and free-muscle transfer depending on the desired functions to be reconstructed.

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Anatomical evidence for the absence of a morphologically distinct cranial root of the accessory nerve in man.

The accessory nerve is conventionally described as having a cranial and spinal root. According to standard descriptions the cranial root (or part) is formed by rootlets that emerge from the medulla between the olive and the inferior cerebellar peduncle. These rootlets are considered to join the spinal root, travel with it briefly, then separate within the jugular foramen to become part of the vagus nerve. In 15 fresh specimens we exposed the posterior cranial fossa with a coronal cut through the foramen magnum and explored the course of each posterior medullary rootlet (PMR) arising from within the retro-olivary groove. We chose the caudal end of the olive as the landmark for the caudal end of the medulla. In all specimens every PMR that did not contribute to the glossopharyngeal nerve joined the vagus nerve at the jugular foramen. The distance between the caudal limit of the olive and the origin of the most caudal PMR that contributed to the vagus nerve ranged from 1-21 mm (mean = 8.8 mm). All rootlets that joined the accessory nerve arose caudal to the olive. The distance from the caudal limit of the olive and the most rostral accessory rootlet ranged from 1-15 mm (mean = 5.4 mm). We were unable to demonstrate any connection between the accessory and vagus nerves within the jugular foramen. Our findings indicate that the accessory nerve has no cranial root; it consists only of the structure hitherto referred to as its spinal root.

Accessory Nerve↗

A simple method of identifying the spinal accessory nerve.

The spinal accessory nerve (nerve XI) constitutes a unique and readily encountered hazard in cutaneous and subcutaneous surgery of the head and neck. Presented is a simple method of using pinprick hyperaesthesia to accurately identify the course of this nerve. Delineating this nerve prior to performing surgery in the lateral neck and shoulder region is crucial to avoid the potentially disastrous complication of severing this nerve.

Accessory Nerve↗

The surgical anatomy of the spinal accessory nerve and the internal branch of the superior laryngeal nerve.

Injury to the spinal accessory nerve may occur during conservation neck dissection. In supraglottic laryngectomy preservation of the internal branch of the superior laryngeal nerve has largely been ignored. Cadaver dissection and diagrams are used to review the surgical anatomy of these two structures. Particularly important are the relationship of the spinal accessory nerve to the sternocleidomastoid muscle, its interaction with the cervical plexus, and its superficial path inferiorly. Landmarks for the identification of the internal branch of the superior laryngeal nerve are indicated, and technique for preservation is described. An intact accessory nerve can be efficiently preserved thereby eliminating the shoulder syndrome. Significant sparing of the internal branch of the superior laryngeal nerve can be routinely accomplished as an aid in minimizing postoperative aspiration.

Accessory Nerve↗

Surgical anatomy of spinal accessory nerve: is trapezius functional deficit inevitable after division of the nerve?

The course of spinal accessory nerve in the posterior triangle, the innervation of the sternocleidomastoid and trapezius muscles and the contributions from the cervical plexus were studied in 20 cadaveric dissections. The nerve was most vulnerable to iatrogenic injuries after leaving the sternocleidomastoid. Direct innervation of trapezius by cervical plexus branches was noted in five dissections, whereas connections between the cervical plexus and the spinal accessory nerve were observed in 19 dissections. These were usually under the sternocleidomastoid (proximal to the level of division of the nerve in nerve transfer procedures). Although the contribution from the cervical plexus to trapezius innervation is considered minimal, trapezius function can be protected in neurotization procedures by transecting the spinal accessory nerve distal to its branches to the upper position of trapezius.

Accessory Nerve↗

Stretch-induced spinal accessory nerve palsy.

Left spinal accessory nerve palsy occurred in a young man when he quickly turned his head to the right while his shoulders were pulled down by heavy hand-held objects. Electrophysiologic studies demonstrated partial axonotmesis of the spinal accessory nerve branches innervating the sternocleidomastoid and upper and middle trapezius and complete axonotmesis of spinal accessory branches to the lower trapezius. There was a separate, although functionally minor, cervical plexus innervation of the lower trapezius.

Accessory Nerve Injuries↗

Reinnervation of avulsed brachial plexus using the spinal accessory nerve.

The use of the accessory nerve as a donor is one of the possibilities for the reinnervation of the brachial plexus in cases of paralysis due to root avulsion. In this paper, an analysis of the reinnervation of the musculocutaneous or axillary nerve using the spinal accessory nerve is made on 13 cases, 8 of total and 5 of upper partial avulsion. In all cases, Allieu's technique was used, but in seven cases reinnervation was supplemented by upper intercostal nerves when there was total avulsion and/or by the medial pectoral nerve when there was partial avulsion. The methods are discussed and compared with the intercostobrachial anastomosis.

Accessory Nerve↗

Benign solitary nerve sheath tumors of the spinal accessory nerve in the posterior triangle of the neck. Report of two cases.

A case of solitary schwannoma and one of solitary neurofibroma originating from the spinal accessory nerve in the posterior triangle of the neck are described. Location of such neoplasms in this region is exceptional. The authors emphasize the importance of accurately enucleating the mass; when it is impossible to preserve the continuity of the neural pathway, nerve repair should be considered.

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