Добавил:
kiopkiopkiop18@yandex.ru t.me/Prokururor I Вовсе не секретарь, но почту проверяю Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:

Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_663_Библиотеки_им_академика_М_И_Перельмана

.pdf
Скачиваний:
0
Добавлен:
30.08.2026
Размер:
58 Мб
Скачать
Penetrating Trauma totheSubclavian
Va
Subclavian a.
https://t.me/medicina_free
Vessels
DanielF.Du Toit
36
The management of penetrating injuries to the subclavian vessels presents a considerable challenge to even the most experienced surgeon. Complex surgical exposures required for conventional open repair contribute to high morbidity and mortality. The contemporary management of these inju­ries consists of a combination of open and endovascular sur­geries. The availability of local expertise, resources, surgeon
Fig. 36.1 The anatomy of the thoracic outlet showing the relations of the subclavian vessels
Brachial
plexus
Vertebral a.
Recurrent
laryngeal n.
gus n.
Common carotid a.
preference, and clinical presentation will dictate the manage­ment of individual cases. A comprehensive knowledge of the anatomy of the subclavian vessels is essential for the selec­tion and execution of individualized patient management.
36.1 Applied Surgical Anatomy (Fig.36.1)
Scalenus anterior m.
C6
Esophagus
Phrenic n.
Thoracic duct
Subclavian v.
D. F. Du Toit (*) Department of Vascular Surgery, Mediclinic Cape Gate, Cape Town, South Africa e-mail: vascular@netactive.co.za
© The Author(s), under exclusive license to Springer Nature Switzerland AG 2023 E. Degiannis et al. (eds.), Penetrating Trauma, https://doi.org/10.1007/978-3-031-47006-6_36
Trachea
SCM
309
310
https://t.me/medicina_free
D. F. Du Toit
36.1.1 The Subclavian Artery
On the right side, the subclavian artery arises from the innominate artery behind the sternoclavicular joint; on the left, it comes directly from the arch of the aorta. Each subcla­vian artery is divided into three parts for descriptive pur­poses. The rst part extends from its origin to the medial border of the scalenus anterior muscle, the second part lies behind this muscle, and the third part extends from its lateral border to the outer aspect of the rst rib where it becomes the axillary artery. The rst parts of the right and left subclavian arteries differ with respect to course, length, and relation to neighboring structures and require separate descriptions. The second and third parts of the two arteries are essentially simi­lar and will be described together:
36.1.1.1 First Part oftheRight Subclavian
Artery
Arising from the innominate artery behind the right sterno­clavicular joint, it passes in a superolateral direction to the medial border of the scalenus anterior muscle. The extent to which it ascends above the clavicle varies. This can inuence the ease with which it can be accessed via a supraclavicular incision. It is covered anteriorly by the skin, supercial fas­cia, platysma muscle, deep fascia, the clavicular head of the sternocleidomastoid muscle, and the sternohyoid and sterno­thyroid muscles. It is crossed by the internal jugular and ver­tebral veins, the vagus nerve, and a loop of the sympathetic trunk. Posterior and inferior lie the pleura and apex of the right lung as well as the sympathetic trunk and rst thoracic vertebra. The recurrent nerve winds around its inferior and posterior aspects.
36.1.1.2 First Part oftheLeft Subclavian Artery
This arises from the aortic arch posterior and lateral to the left common carotid artery and ascends to the root of the neck and then inclines laterally to the medial border of the scalenus anterior muscle. Its anterior relations are similar to the right side and posteriorly lies the esophagus and thoracic duct. Medially lie the esophagus, trachea, thoracic duct, and left recurrent nerve. Laterally, the left pleura and lung are to be found.
36.1.1.4 Third Part oftheSubclavian Artery
This part runs in an inferolateral direction from the lateral border of the scalenus anterior muscle to the outer aspect of the rst rib where it becomes the axillary artery. It is covered by the skin, platysma muscle, supraclavicular nerves, and the deep cervical fascia. The external jugular vein and tributaries cross the anterior and medial to it. The distal part of the artery lies behind the clavicle and the subclavius muscle, with the subclavian vein anterior and at a slightly lower level than the artery. Posteriorly lies the brachial plexus which intervenes between the artery and the scalenus medius muscle. Superiorly and to the lateral side are the upper trunks of the brachial plexus and the omohyoid muscle and inferiorly the rst rib.
36.1.2 Branches oftheSubclavian Artery
• First Part: – Vertebral artery:
Internal mammary artery Thyrocervical trunk
• Second Part: – Costocervical trunk
• Third Part: – Dorsal scapular artery
36.1.3 Anatomical Anomalies
• The right subclavian artery can arise as a separate trunk
from the arch of the aorta as the rst, second, third, or last branch of the arch.
• If it arises as the last branch, it passes from left to right
behind the trachea, esophagus, and right carotid or some­times between the trachea and esophagus.
• It can pass anterior to the scalenus muscle, perforate it,
and can ascend as high as 4cm above the clavicle.
• The left subclavian artery generally does not reach as high
in the neck as the right.
36.1.4 The Subclavian Vein
36.1.1.3 Second Part oftheSubclavian Artery
This lies behind the scalenus anterior muscle, is short, and is the most superiorly located part of the vessel. The phrenic nerve runs from lateral to medial over the muscle. Posterior to the vessel are the scalenus medius muscle and pleura, superior to the brachial plexus, and inferior to the pleura. The subclavian vein lies below and in front of the artery, sepa­rated from it by the scalenus anterior muscle.
The subclavian vein is a continuation of the axillary vein, extending from the outer aspect of the rst rib to the manu­brial head of the clavicle. Here it unites with the internal jugular vein to form the innominate vein behind the manubrio- clavicular joint. Its relations are as follows: ante­rior, the clavicle; posterosuperior, the subclavian artery sepa­rated by the phrenic nerve and the scalenus anterior muscle; and inferior, the rst rib and the pleura.
e
(Various injuries)
Balloon compressing
36 Penetrating Trauma totheSubclavian Vessels
https://t.me/medicina_free
311
36.2 Clinical Presentation, Preoperative Care, Diagnosis, andManagement Principles (Fig.36.2)
Patients with subclavian vessel injuries can present in hypo­volemic shock with active bleeding or in a stable condition with Zone I or II neck or infraclavicular anterior chest wounds. Zone I is dened as the area between the clavicle and the cricoid cartilage and Zone II is the area between the cricoid and the inferior border of the mandible. Resuscitation should be managed according to ATLS guidelines and adjunctive measures to control active bleeding include Foley catheter tamponade (Fig.36.3) and manual compression. If local control cannot be achieved or if the patient bleeds into the pleural cavity as evidenced by continuous blood loss from a chest drain, the patient should be transferred to the operating room immediately. In this case, we prefer a mid­line sternotomy, with appropriate extension, if needed, to provide access to most mediastinal and thoracic outlet struc­tures. Stable patients or patients who remain stable after resuscitation should be evaluated for arterial injury. In the stable or stabilized patient, you should proceed to diagnostic imaging. Controversy exists with regard to routine investiga­tion of these surface wounds if no signicant other signs of arterial injury are present. We currently favor routine CT angiography to exclude arterial injuries. When hard signs of arterial injury are present, it allows assessment of the extent
of the injury and planning of intervention. When only soft signs are present, it acts as a low morbidity screening inves­tigation to exclude arterial injuries. If an arterial injury is diagnosed in this case, you should note the exact position and extent of the arterial injury and evaluate the patient for endovascular or open surgery.
In our practice, we prefer endovascular treatment by stent grafts whenever possible as we believe that it greatly benets the patient by limiting surgical morbidity and mortality. The relative contraindications that can preclude endovascular
subclavian artery
Fig. 36.3 Balloon tamponade controlling bleeding from an injured subclavian artery
Zone 1 Neck or chest
injuries
Unstable
Resuscitation/Foley catheter tamponade
Remain unstable
Open repair
• Subclavian vein
• Subclavian artery
• Both
Endovascular repair
DSA, digital substraction angiography
Fig. 36.2 Algorithm for the treatment of patients with potential subclavian vessel injuries
Sternotomy/neck exploration /claviculectomy
Open repair Options
• Contra indications to endovascular repair
• Failed endovascular repair
Stable
CT angiography/DSA
Subclavian artery injury
• Midline sternotomy
• Supraclavicular neck exploration
• Infraclavicular exposure
• Partial sternotomy
• Fourth interspace arterior thoractomy
• Fifth interspace postero lateral thoracotomy
• Trap door thoracotomy/claviculectomy
Limited us
312
https://t.me/medicina_free
D. F. Du Toit
management include clinical and angiographic factors. Clinical factors are active uncontrollable hemorrhage, criti­cal limb ischemia, airway or brachial plexus compression, concomitant aero-digestive injuries, and infected wounds. Angiographic factors include excessive luminal discrepancy proximal and distal to the injury, an inability to traverse the lesion by guide wire, and a dominant vertebral artery on the injured side. Transfemoral endovascular management is our rst choice if no contraindications are present.
If any of the above-mentioned are present, consider open surgical repair. The basic approaches available for the expo­sure and proximal and distal control of subclavian vessel injuries include a full or limited upper median sternotomy, a supraclavicular incision, an infraclavicular incision, a lim­ited anterolateral third-interspace thoracotomy, a full fth- interspace posterolateral thoracotomy, a medial partial resection of the clavicle, and a trapdoor thoracotomy. The extent of the injury, pathology, the presence of a venous injury, the part of the vessel, and surgeon preference will dic­tate which approach or, more usually, combination of approaches to be used. In our practice, clavicle resection and trapdoor thoracotomy are very rarely used, only for subcla­vian vein injuries that cannot be controlled via any of the other approaches. This will usually be an extension of an existing sternotomy and supraclavicular or infraclavicular incision.
36.3 Surgical Exposures
36.3.1 Midline Sternotomy intheUnstable Patient withNo Diagnostic Imaging (Fig.36.4)
Here the source of bleeding could be from a number of large vessels in the mediastinum and thoracic outlet, or even from the heart. In this scenario, it is best to position the patient for a midline sternotomy with a small sandbag between the scapula, with the ipsilateral arm in 30° lateral abduction, allowing for the manipulation of the thoracic outlet and bet­ter access to the distal subclavian/proximal axillary arteries. If time permits, it is prudent to clean a proximal thigh for harvesting saphenous vein, should this be required.
This preparation should be effected within minutes. It is also a good practice to ascertain that a working pneumatic saw and a vascular instrument tray are available in the opera­tion room. While pressure on or in the wound is maintained, you can, with good suction and two Langenbeck retractors, coordinate the release of pressure, and a “quick peep” into the wound can sometimes be of value. A visible vessel (sub­clavian or a large branch) can sometimes be glimpsed and clamped with one or two straight atraumatic vascular clamps. This should happen in seconds and you should not attempt more than two “peeps”; otherwise the patient is in danger of
Fig. 36.4 Upper mediastinal access via a partial or full midline sternotomy
Partial sternotomy
Extend to full sternotomy
36 Penetrating Trauma totheSubclavian Vessels
https://t.me/medicina_free
313
exsanguinating. With luck, control, or partial control, it can be achieved in this fashion. You can complete the procedure by formal supraclavicular neck exploration.
If control cannot be achieved in this way, the best option is to proceed to a midline sternotomy. A vertical midline incision is made from the suprasternal notch to 2cm distal to the xiphoid process. You can extend the incision superiorly along the anterior border of the sternocleidomastoid muscle, or in the case of a true subclavian artery injury being identi­ed, continue obliquely over the two heads of this muscle laterally about 2 cm above the clavicle for supraclavicular exposure. The sternal incision is deepened to the periosteum with electrocautery. In the sternal notch, deepen the midline space between the two sternal heads of the sternocleidomas­toid muscles with a combination of sharp and blunt dissec­tion. One or two large but unimportant veins may be encountered. Entry to the retrosternal space is affected by blunt nger dissection between the strap muscles, which implants on the posterior aspect of the sternum. Inferiorly the xiphoid is mobilized and a plane should be developed retrosternally, in an upward direction. The anesthesiologist should arrest ventilation in expiration (to prevent lung injury), and the sternum is divided in the midline using a pneumatic saw or Lebsche knife. Bleeding from the sternal edges is controlled by electrocautery and bone wax. The lat­ter is used to prevent infection and impaired wound healing. Insert a sternal retractor and open it carefully, a few turns at a time to prevent sternal and rib fractures.
In the fully retracted position, a divided sternum reveals the structures of the anterior, superior, and middle mediasti­num (Fig. 36.5). The thymus gland is encountered rst. Divide it vertically to expose the left innominate vein that runs obliquely from the left to its conuence with its right­sided counterpart to form the superior vena cava. This vein
Fig. 36.5 The mediastinal structures exposed at sternotomy. Note blue vascular loops around both common carotid arteries. The trachea can be seen at the back between both vessels
can be mobilized by dividing its numerous tributaries, and exposure of the arch can thus be achieved without dividing it. In an emergency situation with active bleeding, you can divide it and ligate it without any morbidity. The aortic arch with the origin of the innominate artery and the left common carotid is now visible.
On the right, the origin of the innominate artery at the aortic arch is identied and then carefully followed cranially for about 3–5cm, where it will divide into subclavian and common carotid arteries. At this bifurcation, the right vagus nerve crosses the anterior to the rst part of the subclavian artery and then descends into the mediastinum posterior to the right innominate vein. The recurrent laryngeal branch of the right vagus nerve loops around the inferior border of the subclavian artery and ascends medially in the neck between the trachea and the esophagus. When exposing and control­ling the short rst part of the right subclavian artery, take care to avoid injury to these nerves. In the event of over­whelming bleeding from the right subclavian artery, the ori­gin of the innominate artery can be temporarily clamped to facilitate dissection with immediate transfer of the clamp upon exposure of the proximal subclavian artery. Take care in the case of the “bovine arch” where both the carotid arter­ies and the right subclavian artery originate from the innomi­nate artery. This congenital anomaly is present in about 10% of cases and can result in major brain damage if the innomi­nate artery is clamped for any extended duration.
Depending on the rotation of the aortic arch, the origin of the left subclavian artery can vary from anterior to far poste­rior in the left half of the sternotomy wound (Fig.36.6). In the latter situation, it can be difcult to get a good exposure of this vessel and you should take care to avoid inadvertent clamping the left common carotid artery, thereby impeding cerebral blood ow. In the acute bleeding situation, the left pleural space can be entered before mediastinal dissection to facilitate compression of a subclavian artery, that is, bleeding into the pleural space. To locate the origin of the left subcla­vian artery, you should follow the aortic arch posterolaterally to the left past the origin of the left common carotid artery, taking care to prevent injury to the left vagus nerve as it descends between the carotid and left subclavian arteries to cross anteriorly over the left side of the aortic arch. The left recurrent laryngeal branch passes under the aortic arch and then courses medially to the tracheoesophageal groove.
In an unstable patient, the relevant subclavian artery should be clamped at its origin and then dissected further to achieve distal control. On the right side, this usually entails a supraclavicular extension of the incision for exposure of the second and third parts of the right subclavian artery. The right-sided strap muscles and the sternal and clavicular heads of the right sternocleidomastoid muscle should be divided to facilitate full exposure of the rst part of the right subclavian artery and its branches up to the medial border of the scale-
314
vertebral a.
Left
Innominate
https://t.me/medicina_free
D. F. Du Toit
Left
subclavian
vein
carotid
art.
Fig. 36.6 Sternotomy combined with supraclavicular extension and medial resection of the clavicle demonstrating exposure of the proximal left subclavian artery, left subclavian, and innominate vein
Left
art.
Aorta
subclavian
art.
nus anterior muscle. The internal jugular vein passes anterior to the subclavian artery, and it can be mobilized or divided if needed. The left subclavian artery has a much longer intra­thoracic course which sometimes allows distal control in the chest without supraclavicular extension. Complete control and a bloodless eld can be difcult to achieve because branches of the rst part of the subclavian artery can cause problematic back bleeding. The vertebral and internal mam­mary arteries should be preserved if possible. The actual repair of a subclavian artery is described later.
At this level, dissect the soft tissue overlying the sternum on both sides toward the intercostal spaces with electrocautery. A potential extrapleural space is carefully developed bilater­ally dissecting the internal mammary artery away from the transaction plane of the sternum. Then divide the sternum in the midline to the level of this intercostal space using a pneu­matic saw. Then divide horizontally the lower end of the ster­num forming an inverted T by inserting the saw in the juxtasternal spaces that were created. The remainder of the dissection is exactly as described for the full sternotomy, and access to the aortic arch and its branches can be easily achieved. This approach should not be used for unstable patients as it takes more time and limits access to the rest of the mediastinal structures.
36.3.2.2 The Supraclavicular Exposure
oftheSubclavian Artery (Figs.36.7 and36.8)
This incision should be used for proximal control in part 2 and 3 injuries or for distal control and repair in part 1 inju­ries. Position the patient for sternotomy with a small sandbag between the scapulae, the head rotated to the opposite side, and if infraclavicular exposure is expected, prep and drape the ipsilateral arm free on a narrow lateral arm board to facil­itate this exposure. The neck, anterior chest, and ipsilateral arm should be included in the surgical eld. Make a trans­verse incision 1–2 cm above and parallel to the clavicle, beginning at the sternal notch and extending laterally for about 7cm. Deepen the incision through the platysma mus­cle to the scalene fat pad, and the external jugular vein divided. The scalene fat pad is divided transversely, and it usually contains branches of the thyrocervical trunk and the
36.3.2 The Midline Sternotomy intheStable Patient withImaging
This approach is exactly the same as described for the unsta­ble patient and can be combined with the supraclavicular approach as described above.
36.3.2.1 The Limited Upper or Partial
Sternotomy (Fig.36.4)
This incision should be reserved for stable patients with pre­operative imaging diagnosing a subclavian artery injury. The patient is prepped and draped for a full sternotomy. The upper part of the dissection in the sternal notch is similar to a full sternotomy, and the vertical midline incision is extended to the level of the third or fourth intercostal space.
Jugular v.
Ligated
Rt subclavian a.
SCV
Subclavian
Fig. 36.7 The supraclavicular exposure of the right subclavian artery with the division of the scalenus anterior and the clavicular head of the sternocleidomastoid muscles
Carotid a.
Vagus n.
scalenus
Lef
Phrenic
Third intercostal
36 Penetrating Trauma totheSubclavian Vessels
https://t.me/medicina_free
315
Sternocleido-
mastoid m.
Left subclavian
artery
t common
carotid art.
Left
jugular v.
Fig. 36.8 Interposition graft repair of an injury to the second part of the left subclavian artery via a supraclavicular exposure
nerve
Left subclavian v.
Ant.
scalenus m.
Graft
Ant. muscle
Left subclavian art.
omohyoid muscle. Take care to divide and control the lym­phatic ducts in this area, as on the left; this includes the tho­racic duct. In the same horizontal plane, divide the clavicular and sternal heads of the sternocleidomastoid muscle, exposing the carotid sheath with the internal jugular vein enclosed in its lateral edge.
The scalenus anterior muscle will now come into view and care should be taken to preserve the phrenic nerve that courses from lateral to medial over the anterior aspect of this muscle. It should be carefully mobilized and retracted with a thin elastic sling. The scalenus muscle should be mobilized down to its origin from the rst rib and carefully divided tak­ing care not to damage the subclavian vein (anterior) or the subclavian artery (posterior). The subclavian artery will now be visible from the lateral border of the internal jugular vein to where it disappears beneath the clavicle. The internal mammary, vertebral, and thyrocervical branches of the rst part are usually now visible. You can extend the medial access by retracting the internal jugular vein (or even divid­ing it) and dividing the lateral part of the strap muscles. The rst part of the subclavian artery can be followed into the mediastinum on the left and to its origin from the innominate artery on the right. Care should be taken to prevent injury to the carotid arteries and the vagus and phrenic nerves. Control and/or repair should be achieved and then the wound must be closed in layers over a suction drain if needed. There is no need to repair the scalenus muscle, but the sternocleidomas­toid can be repaired using a 2/0 absorbable suture and turn­ing the head to the neutral position. You can use this incision in continuity with the midline sternotomy from its medial
end. An infraclavicular incision should always be separated; do not connect these two incisions when used in the same patient. Division of the clavicle for arterial injuries is not advised.
36.3.2.3 The Left Third-Interspace Anterolateral Thoracotomy (Fig.36.9)
The rationale for this exposure is the fact that the left subcla­vian artery originates from the posterolateral aspect of the aortic arch and is therefore difcult to access via a midline sternotomy. In mediastinal bleeding of unknown origin, it is better to do a midline sternotomy because it does not limit your options as this incision does. It is not an easy approach and only allows for limited dissection and clamping of the left subclavian artery. Repair of the injury still needs supra­clavicular or more extensive mediastinal dissection. The only scenario where this incision can be used with potential benet is in a stable patient with a diagnosed left subclavian artery injury.
The patient is placed supine. A sandbag is placed behind the left shoulder. We prefer the third-interspace incision above the nipple line, but some prefer a fourth-interspace incision below the nipple. Place the incision horizontally over the superior margin of the fourth rib from the lateral
space
Fig. 36.9 Control of the left proximal subclavian artery via a third­interspace anterolateral thoracotomy. Repair is usually completed via a supraclavicular incision (dotted line)
316
Coracoid
Pectoralis
https://t.me/medicina_free
D. F. Du Toit
sternal border to the anterior axillary line. Divide the inter­costal muscles, staying clear of the neurovascular bundle, by entering the parietal pleura along the top of the fourth rib. The lung will collapse away from the chest wall, and the wound is fully opened. Lung collapse can be aided by double- lumen tracheal intubation. Care should be taken to prevent injury to the internal mammary artery and vein in the medial aspect of the wound when slowly opening the wound with a rib spreader. Retract the upper lobe of the left lung downward, and then, the aortic arch with the origin and intra­thoracic part of the left subclavian artery will be visible and still covered by the parietal pleura. This should be carefully opened, avoiding injury to the left vagus nerve which courses down the medial aspect of the subclavian artery and crosses the anterolateral aspect of the aortic arch. You can now mobi­lize and encircle with a vessel loop the left subclavian artery ready for clamping. Repair of the injury can then be com­pleted via the supraclavicular incision. Close the wound in layers after the insertion of an intercostal drain.
This approach is becoming redundant in the era of endo­vascular repair and the preference for a midline sternotomy in unstable patients.
36.3.2.4 The Left Fifth-Interspace Posterolateral Thoracotomy
This approach has limited application in the management of left subclavian artery injuries. It is time-consuming and it limits options because the patient must be placed in the true lateral position that does not allow access to the neck for supraclavicular exposure. The only possible place for this exposure might be in a stable patient with injury to the rst part of the left subclavian artery where proximal and distal control as well as repair can be completed in the chest.
36.3.2.5 The Infraclavicular Exposure oftheDistal Subclavian andProximal Axillary Artery (Fig.36.10)
This incision is usually used for distal control of a second or more commonly a third part of subclavian artery injury. The classic injury is the one posterior to the clavicle at the junc­tion between the distal subclavian and proximal axillary arteries. Proximal control can be achieved by the supracla­vicular incision as described, but distal control and repair require control of the rst part of the axillary artery via an infraclavicular exposure.
Fig. 36.10 Infraclavicular incision with control of the distal subclavian/proximal axillary artery by splitting the pectoralis major and dividing or retracting the pectoralis minor muscles
minor m.
Clavicle
Supraclavicul
incision
Clavipectoral
fascia
process
Cephalic v.
Brachial a.
Axillary a.
Pectoralis
major m.
Rt. jugular
Pectoralis
36 Penetrating Trauma totheSubclavian Vessels
https://t.me/medicina_free
317
Position the patient for the supraclavicular incision with the arm, chest, neck, and supraclavicular area prepped and draped. The ipsilateral arm should be free, draped 90° abducted on a narrow arm board allowing the surgeon and the assistant to stand comfortably close to the operative eld. The degree of abduction of the arm can be manipulated dur­ing the procedure, thereby facilitating peri-clavicular move­ment and control of the vessel.
Make a horizontal subclavicular skin incision parallel and 2cm below the clavicle with its outer third slightly curved in the deltopectoral groove and the medial part originating at midclavicular level. Deepen the incision through the subcu­taneous tissue to the level of the pectoralis major muscle. Pull this muscle downward or split its bers by blunt dissec­tion, allowing exposure of the clavipectoral fascia. This fas­cia should be entered by sharp dissection, and the axillary sheath will become visible below the clavicle. Exposure can be enlarged by encircling the pectoralis minor muscle in the lateral aspect of the wound and either retracting or dividing it. The rst part of the axillary artery usually lies superior and deep to the vein and anterior to the cords of the brachial plexus. It should be carefully explored by the division of venous branches and encircled with a vessel loop. Attain control by careful placement of a vascular clamp, avoiding inadvertent clamping of the brachial plexus.
A “behind the clavicle” injury is usually not amenable to primary repair, and the vessel should be controlled and tran­sected above and below the clavicle. Repair of the defect will then need an interposition graft with the proximal anastomo­ses being performed end-to-end above the clavicle. The graft must then be tunneled posterior to the clavicle, and the distal anastomosis is performed below the clavicle in an end-to­end fashion to the axillary artery. The arm should be in 90° abduction when deciding on the length of the graft.
The clavicle should not be divided as all injuries can be managed by working around the clavicle as described. Division of the clavicle takes time and can result in major venous bleeding from the subclavian vein lying posterior to it.
This wound should be closed in layers with or without a suction drain in place.
36.3.2.6 The Trapdoor Thoracotomy andPartial
Resection oftheClavicle (Figs.36.6 and36.11)
This incision combines the supraclavicular exposure, the partial midline sternotomy, and a fourth-intercostal space anterolateral thoracotomy. This approach is rarely used as it has limited advantages, if any, over the standard full midline sternotomy combined with a supraclavicular approach. It is a complex exposure, takes a lot of time, the pleural space is entered, and it has a propensity for excess bleeding. It is not a routine option in the unstable patient with an undiagnosed
Rt. subclavian
artery
Subclavian
Cephalic
vein
minor m.
Fig. 36.11 Medial resection of the right clavicle exposing the right subclavian vein and its conuence with the internal jugular vein
Pectoralis
major m.
vein
vein
Clavicle
injury but might be of limited benet in subclavian vein inju­ries where more lateral exposure needs to be achieved to access the vein behind the clavicle. Resection of the medial half of the clavicle in combination with a midline sternotomy is preferred for better exposure and control of venous inju­ries. A partial medial claviculectomy is time-consuming but increases exposure to this area signicantly.
36.3.2.7 The Surgical Repair oftheSubclavian Vessels
The subclavian artery is a friable elastic artery, and the prin­ciples of repair for all arterial injuries should be adhered to. This includes proximal and distal control via the surgical approaches as described, control of branches, and debride­ment of the injured area. You should do a proximal and distal embolectomy with a number 3 Fogarty catheter, and in case of an isolated injury with no coagulopathy, you should administer systemic heparin (70U/kg). Prophylactic antibi­otics, such as 1g of cefazolin, should be given intravenously. Attain control as close as possible to the injured area as major branches, especially on the rst part can cause sub­stantial back bleeding if not isolated. These branches can be temporarily controlled or they can be ligated if necessary. The vertebral artery is an exception and you should preserve it, if at all possible. If it was demonstrated to be a dominant vessel on preoperative imaging, it should be revascularized during the repair. In the rare case of the internal mammary artery being a bypass conduit of a previous coronary bypass, it should also be protected or repaired at all costs.
The local pathology can also inuence the type of repair needed. Large false aneurysms and arteriovenous stulas mandate more extensive dissection for wider proximal and distal control, as well as arterial and venous control in the latter. The extent of the arterial defect will dictate the type of
318
in subclavian a.
https://t.me/medicina_free
repair needed. The basic principles are debridement of all damaged arterial walls and then establishing a tension-free repair. This can include mobilization of the artery with pri­mary repair by lateral suture using 60 polypropylene suture materials in a continuous or interrupted fashion. If the defect is too extensive, an interposition graft is required. The options are autologous saphenous veins or synthetic materi­als such as PTFE or Dacron. Vein grafts tend to be favored, but, in this location, no clear long-term benet has been dem­onstrated. Disadvantages include the availability and time delay especially in the unstable patient, the risk of kinking, impingement between the clavicle and the rst rib, and potential size discrepancy. It is, therefore, reasonable to use externally reinforced PTFE or Dacron grafts of appropriate size. No clear inferior long-term patency or signicantly higher sepsis rate has been reported in the literature when compared to vein grafts.
In case of proximal subclavian artery injuries close to the origin, interposition grafting from subclavian to subclavian artery might not be possible. Proximal takeoff of the graft might then be from the ascending aorta, innominate artery, or the adjacent carotid arteries. Transpositions of the debrided subclavian artery to the ipsilateral carotid arteries are also a possibility. In extreme cases where the procedure is seen as a damage control situation, the subclavian artery should sim­ply be ligated proximal and distal to the injury. This is usu­ally well tolerated and repair can be deferred to when the patient is stable or if he/she develops upper limb claudication.
D. F. Du Toit
Amplutz wire
False aneurysm
5 Fr diagnostic catheter in aorta
Short 9 Fr introducer
Fig. 36.12 Stent graft repair of a false aneurysm of the left subclavian artery by using a double femoral puncture technique
Femoral a.
Short 5 Fr introducer
36.3.2.8 Endovascular Management
(Fig.36.12)
This is our treatment option of choice for all stable patients with subclavian artery injuries. This treatment modality is now well established as a safe alternative to open surgery with less morbidity, shorter hospitalization, less blood loss, and acceptable short- and long-term follow-up results. The absence of local expertise and angiography facilities as well as surgeon preference might inuence the choice of manage­ment options. Patient selection is based on clinical presenta­tion and diagnostic angiography. Clinical and radiological factors precluding stent graft treatment were already mentioned.
The procedure is performed in an arteriography suite or a hybrid operating room equipped for general anesthesia and conventional surgery. Intravenous heparin (50units/kg) and prophylactic cefazolin were routinely administered before stent graft deployment and empirically continued for 24h, at a dosage of 5000units subcutaneously and 1g intravenously respectively every 8 h. Transfemoral arterial access is attained under local anesthesia. The anatomical location of lesions and proximal and distal vessel diameters are deter­mined with routine angiography, and a nal decision regard-
ing stent graft treatment is then taken. If a preoperative CT-angiogram was done, a more directed approach is possible.
The stent graft is placed via a percutaneous transfemoral approach. Bilateral transfemoral access (5F and 9F Cordis® [Johnson & Johnson, Waterloo, Belgium] introducer sheaths) is obtained. Engage the subclavian artery to be stented with a diagnostic catheter (5F Headhunter). Do a diagnostic run and measure the diameter of the subclavian artery. Choose a stent graft 1–2 mm larger than the subclavian artery and cover at least 1cm proximal and distal to the lesion. If the vertebral artery has to be covered, the presence of a good­quality contralateral vertebral artery has to be conrmed. It is usually unnecessary to coil-embolize subclavian artery branches in the area to be stented unless they clearly contrib­ute to an AV stula. Using a road map, pass the subclavian artery lesion with a steerable hydrophilic guide wire and steer the wire to the midbrachial artery. Advance the diag­nostic catheter over the guide wire into the brachial artery and exchange it for a stiff wire (Amplatz®). The appropriate stent graft is introduced via the 9F sheath (11cm in length) over a stiff guide wire, crossing the lesion, and angiographic control for precise deployment was provided by a diagnostic