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Article

Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases

  • Authors:
    • Aierken Rehemutula
    • Li Zhang
    • Cong Yu
    • Lin Chen
    • Yudong Gu
  • View Affiliations / Copyright

    Affiliations: Department of Hand Surgery, Huashan Hospital, Fudan University, Shanghai 200040, P.R. China
  • Pages: 2241-2244
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    Published online on: March 19, 2015
       https://doi.org/10.3892/etm.2015.2371
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Abstract

This study reports two rare cases of thoracic outlet syndrome (TOS) caused by fibrous dysplasia of the first rib. Two patients, aged 19 and 29 years old, were admitted with TOS in the lower trunk of the brachial plexus caused by an inflated first rib. In these two cases symptoms included hypoesthesia of the anterior medial aspect of the forearm and two fingers in the ulnar side, and progressive weakness of the upper limbs. Surgery was required to resect the first rib. Transaxillary and supraclavicular excisions were challenging to perform due to the involvement of the subclavian vasculature and brachial plexus. Thoracoscopy was used in these cases in order to peel the pleura off the first rib and facilitate resection by the supraclavicular approach. None of the patients exhibited nerve or vascular complications following the surgery.

Introduction

Thoracic outlet syndrome (TOS) is a syndrome caused by compression of the subclavian vein or artery or the brachial plexus branches that cross the thoracic outlet. The neurovascular bundle passes through the narrow confines of the interscalene triangle as well as the costoclavicular triangle and the subcoracoid space on its way from the neck through the axilla and into the upper arm (1). In 85–97% of TOS cases, compression occurs in the brachial plexus (2,3) where it affects one or more of the nerves that innervate the upper limb and/or blood vessels as they pass between the chest and upper extremity. This includes the brachial plexus, the subclavian artery and, rarely, the subclavian vein, which does not normally pass through the scalene hiatus.

Fibrous dysplasia (FD) is a developmental skeletal anomaly in which osteoblasts do not undergo normal morphological differentiation and maturation, leading to the replacement of normal marrow and cancellous bone by immature bone and fibrous stroma (4,5). Between 6 and 20% of monostotic FD occurs in the ribs, with the second rib being most commonly affected (6). Approximately 55% of patients with polyostotic FD have rib involvement (7), usually in the lateral or posterior aspect of the rib. FD is typically asymptomatic unless the lesion is large enough to cause local pressure symptoms and/or pathological fractures (6,8). FD and other tumors of the first rib are rare and those causing TOS are even more so.

Case reports

Informed consent

Written informed consent was obtained from all of the patients.

Case 1

A 19-year-old male presented with a history of hypoesthesia on the ulnar side of his right hand over three months, at the Department of Hand Surgery, Huashan Hospital (Shanghai, China). On physical examination, intrinsic muscular atrophy on the right hand was noted along with hypoesthesia on the ulnar side of the right forearm, hand, ring finger and little finger. The muscle strength of adduction and abduction in the second to fourth fingers was reduced, and thumb opposition function was restricted. The Wright, Adson's and costoclavicular crushing provocation tests were positive. In an imaging and nerve study a neck X-ray showed a lesion in the first rib (Fig. 1), computed tomography (CT) showed benign bone tumors or tumor-like lesions in the first rib (Fig. 2), and a bone scan showed an abnormal uptake of radioactivity in the first and second right ribs (Fig. 3). Magnetic resonance (MR) imaging of the neck showed abnormal signals in the right first rib and evidence of bone-borne disease. Laboratory results were unremarkable. The diagnosis was TOS of the lower trunk, occupying the first rib on the right side.

Figure 1.

Neck X-ray of case 1 showing a lesion in right first rib.

Figure 2.

Three-dimensional computed tomography reconstruction of the thorax of case 1 showing benign bone tumors or tumor-like lesions in the right first rib.

Figure 3.

Emission computerized tomography bone scan of case 1 showing an abnormal uptake of radioactivity in the first and second right rib.

Case 2

A 29-year-old male visited the Department of Hand Surgery, Huashan Hospital with a history of hypoesthesia and progressive weakness of the left upper limb over six months. Physical examination revealed no atrophy of the intrinsic muscles of the hand but the flexion strength of the wrist and finger was decreased. Thumb opposition function was normal. The Wright and Adson's provocation tests were positive, while the costoclavicular crushing test was negative. A neuroimaging study with three-dimensional (3D) CT reconstruction showed first rib expansion (Fig. 4). Neck MR results were abnormal with a decreased signal on the right in the first rib, and evidence of bone-borne disease (Fig. 5). Electromyography showed reduced nerve conduction velocity in the medial cutaneous nerve of the forearm. A chest X-ray showed a lesion in the first rib (Fig. 6) and laboratory results were unremarkable. A diagnosis of TOS in the lower trunk with a mass in the first rib on the left side was made.

Figure 4.

Three-dimensional computed tomography reconstruction of the neck and thorax of case 2 showing left first rib expansion.

Figure 5.

Magnetic resonance imaging of the neck of case 2 is abnormal with an increased signal on the left in the first rib and bone-borne disease.

Figure 6.

Chest X-ray of the chest of case 2 showing a lesion in the left first rib.

Surgical procedure

Once a diagnosis has been made, surgery should be contemplated only if conservative management has failed. In the present two cases, it was clear that TOS was caused by a tumor in the first rib and that the lesion required resection. There are two popular procedures for first rib resection: A transaxillary and a supraclavicular approach. In the current cases a new thoracoscopy-assisted supraclavicular approach was used. For the extirpation of the first rib the patient took a supine position. Using the supraclavicular route, the subclavian vasculature and brachial plexus were decompressed and released carefully (Fig. 7). The upper edge of the first rib was stripped, the thoracoscope was placed on the body of the patient and three ports of entry were made for thoracoscopy access (Fig. 8). The lower edge of the first rib was then stripped (Fig. 9) and the rib was resected in a straightforward manner using the supraclavicular route (Fig. 10). Final pathology confirmed FD after two weeks, and the patients did not have any complications. After a week, when the patients left the hospital, the symptoms of numbness, hypoesthesia and the feeling of weakness had improved.

Figure 7.

Subclavian vasculature and brachial plexus were exposed and released carefully using the supraclavicular route.

Figure 8.

Three ports of entry are made for thoracoscopy access.

Figure 9.

Lower edge of the first rib is stripped in the thoracoscopy.

Figure 10.

First rib is resected easily by the supraclavicular route.

Discussion

TOS caused by a tumor in the first rib is rare and, to the best of our knowledge, has been reported only 12 times in the English-language literature over the past one and a half centuries, with the majority of cases due to osteochondroma (9). A variety of surgical approaches have been used, including the intercapulovertebral route for posterior tumors and thoracotomy, supraclavicular, and transaxillary approaches for anterior tumors. The first reported excision of a cervical rib was performed by Coote at St. Bartholomew's Hospital (London, UK) in 1861 (10). With the description of a simpler technique of first rib resection in 1966 using an axillary approach (11), surgical relief of this common syndrome became technically easier and more acceptable to the patient and physician (12). In some previous cases of common TOS in our department, the cervical or first rib was resected using the single supraclavicular approach, in order to protect the brachial plexus. However, in the two cases reported in the present study, expansive lesions were observed in the first rib, and if isolated and resected using the single supraclavicular approach a traction of nerves and vessels may occur. Therefore, our group decided to resect the ribs under the assistance of thoracoscopy, and more attention was paid during the supraclavicular incision, in order to protect the nerves and vessels.

There have been only five reports of TOS caused by FD and the optimal management of these lesions is unknown (Table I). In all cases removal of the tumor was associated with amelioration of symptoms.

Table I.

Thoracic outlet syndrome cases caused by first rib lesion and the resection approaches taken.

Table I.

Thoracic outlet syndrome cases caused by first rib lesion and the resection approaches taken.

First author, year (ref)aTypeResection
Devin, 1981 (13)NeurogenicSubclavicular approach with a medial clavicular resection
Karanjia, 1990 (14)Neurogenic and venousTransaxillary excision
Melliere, 1991 (9)Neurogenic and arterialSupraclavicular excision of the medial clavicle and first rib
de Montpréville, 1995 (15)Subclavian vessels Transcervical-thoracic approach with resection of the medial clavicle
Kemp, 2012 (16)NeurogenicThoracotomy

a Each reference describes a single case.

In conclusion, in cases of TOS caused by FD in the first rib, particularly with expansive growth, the tumors are difficult to resect from supraclavicular or transaxillary approaches. Thoracotomy may lead to greater surgical injury and a longer recovery time. In these cases consideration should be given to a thoracoscopy-assisted supraclavicular approach in order to obtain full vascular/nerve control and a cleaner stripping of the lower edge in the first rib.

References

1 

Pang D and Wessel HB: Thoracic outlet syndrome. Neurosurgery. 22:105–121. 1988. View Article : Google Scholar : PubMed/NCBI

2 

Roos DB: The thoracic outlet syndrome is underrated. Arch Neurol. 47:327–328. 1990. View Article : Google Scholar : PubMed/NCBI

3 

Stanton PE Jr, Vo NM, Haley T, et al: Thoracic outlet syndrome: a comprehensive evaluation. Am Surg. 54:129–133. 1988.PubMed/NCBI

4 

Fitzpatrick KA, Taljanovic MS, Speer DP, et al: Imaging findings of fibrous dysplasia with histopathologic and intraoperative correlation. Am J Roentgenol. 182:1389–1398. 2004. View Article : Google Scholar

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Resnick D, Kyriakos M and Greenway GD: Tumors and tumor-like lesions of bone: imaging and pathology of specific lesionsDiagnosis of Bone and Joint Disorders. Resnick D: 4. 4th. WB Saunders; Philadelphia, PA: pp. 3833–3848. 2002

6 

Kricun ME: Tumors of the ribsImaging of Bone Tumors. 1st. WB Saunders; Philadelphia, PA: pp. 304–328. 1993

7 

Harris WH, Dudley HR Jr and Barry RJ: The natural history of fibrous dysplasia. An orthopaedic, pathological and roentenographic study. J Bone Joint Surg Am. 44-A:207–233. 1962.PubMed/NCBI

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Jeung MY, Gangi A, Gasser B, et al: Imaging of chest wall disorders. RadioGraphics. 19:617–637. 1999. View Article : Google Scholar : PubMed/NCBI

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Melliere D, Ben Yahia NE, Etienne G, et al: Thoracic outlet syndrome caused by tumor of the first rib. J Vasc Surg. 14:235–240. 1991. View Article : Google Scholar : PubMed/NCBI

10 

Coote H: Exostosis of the left transverse process of the seventh cervical vertebra, surrounded by blood vessels and nerves, successful removal. Lancet. 1:360–361. 1861. View Article : Google Scholar

11 

Roos DB: Transaxillary approach for first rib resection to relieve thoracic outlet syndrome. Ann Surg. 163:354–358. 1966. View Article : Google Scholar : PubMed/NCBI

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Roos DB: Experience with first rib resection for thoracic outlet syndrome. Ann Surg. 173:429–442. 1971. View Article : Google Scholar : PubMed/NCBI

13 

Devin R, Branchereau A, Pelissier JF, et al: Thoracic outlet compression syndrome by tumour of the first rib (authors transl). Chirurgie. 107:749–754. 1981.[(In French)]. PubMed/NCBI

14 

Karanjia ND and Sayer RE: Thoracic outlet syndrome due to monostotic fibrous dysplasia of the first rib. J R Coll Surg Edinb. 35:1111990.PubMed/NCBI

15 

Thomas de Montpréville V, Dulmet E, Ponlot R and Dartevelle P: Giant bilateral fibrous dysplasia of first ribs: compression of mediastinum and thoracic outlet. Eur Respir J. 8:1028–1029. 1995.PubMed/NCBI

16 

Kemp CD, Rushing GD, Rodic N, et al: Thoracic outlet syndrome caused by fibrous dysplasia of the first rib. Ann Thorac Surg. 93:994–996. 2012. View Article : Google Scholar : PubMed/NCBI

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Copy and paste a formatted citation
Spandidos Publications style
Rehemutula A, Zhang L, Yu C, Chen L and Gu Y: Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases. Exp Ther Med 9: 2241-2244, 2015.
APA
Rehemutula, A., Zhang, L., Yu, C., Chen, L., & Gu, Y. (2015). Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases. Experimental and Therapeutic Medicine, 9, 2241-2244. https://doi.org/10.3892/etm.2015.2371
MLA
Rehemutula, A., Zhang, L., Yu, C., Chen, L., Gu, Y."Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases". Experimental and Therapeutic Medicine 9.6 (2015): 2241-2244.
Chicago
Rehemutula, A., Zhang, L., Yu, C., Chen, L., Gu, Y."Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases". Experimental and Therapeutic Medicine 9, no. 6 (2015): 2241-2244. https://doi.org/10.3892/etm.2015.2371
Copy and paste a formatted citation
x
Spandidos Publications style
Rehemutula A, Zhang L, Yu C, Chen L and Gu Y: Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases. Exp Ther Med 9: 2241-2244, 2015.
APA
Rehemutula, A., Zhang, L., Yu, C., Chen, L., & Gu, Y. (2015). Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases. Experimental and Therapeutic Medicine, 9, 2241-2244. https://doi.org/10.3892/etm.2015.2371
MLA
Rehemutula, A., Zhang, L., Yu, C., Chen, L., Gu, Y."Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases". Experimental and Therapeutic Medicine 9.6 (2015): 2241-2244.
Chicago
Rehemutula, A., Zhang, L., Yu, C., Chen, L., Gu, Y."Thoracoscopy-assisted first rib resection for the treatment of thoracic outlet syndrome caused by fibrous dysplasia: A report of two cases". Experimental and Therapeutic Medicine 9, no. 6 (2015): 2241-2244. https://doi.org/10.3892/etm.2015.2371
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