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Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_4372_Библиотеки_им_академика_М_И_Перельмана

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Fig. 47.10 Once the correct plane is identied, a subcutaneous ap is raised supercial to the clavipectoral fascia. The superior and inferior points of the axillary incision are extended to the thyroid cartilage and sternal notch, respectively. The resulting shape of the ap is that of a trapezoid
ally with a pledget on the 8-mm ProGrasp™ forceps. It is crucial to maintain the RLN in the operative view at all times in order to prevent inadvertent injury to it. If the Harmonic shears need to be used in close proximity to the RLN and further lateralisation is either unsafe (because of a risk of traction injury) or not possible, then a pledget is used to
cover the RLN whilst energy is being delivered. (For exam­ple, this manoeuvre may be necessary when dissecting the ligament of Berry.)
Figures 47.18, 47.19, 47.20, 47.21, 47.22, 47.23, 47.24,
47.25, 47.26, 47.27 and 47.28 present a step-by-step narra-
tive of the stages involved in the robotic dissection.
ab
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Fig. 47.11 Once the subcutaneous ap has been raised, dissection is continued above the pectoralis major muscle and over the clavicle until the sternal and clavicular heads of the sternocleidomastoid muscle are
encountered. The neck is then entered through the natural dehiscence between the two tendons, which is opened bluntly with a Fraser Kelly curved artery forceps
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S
C
Fig. 47.13 Close-up view of the sternal (S) and clavicular (C) heads of the sternocleidomastoid muscle and the natural dehiscence between the two tendons. The surgical planes are then developed as in a standard thyroidectomy, exposing the ipsilateral internal jugular vein, common carotid artery and omohyoid and sternohyoid muscles (see Fig.47.20)
Fig. 47.12 Schematic representation of the incision and anatomical boundaries of the trapezoid-shaped subcutaneous ap needed for right transaxillary robotic thyroidectomy
As with all thyroid surgery, haemostasis must be meticulous. The anaesthesiologist is asked to bring the blood pressure up to normal and a reversed Trendelenburg position and Valsalva manoeuvre are applied. Any remaining bleeding points in the thyroid bed are addressed at this stage to ensure haemostasis (Fig. 47.29). As in conventional thyroid surgery, no drain is applied. We have not found this practice to be a problem.
Following haemostasis, the da Vinci robot is withdrawn, and two-layer closure is completed with 4–0 subcuticular Vicryl Rapide™ sutures (Ethicon Products, Inc., Johnson & Johnson, Cincinnati, OH) followed by application of Dermabond (Ethicon Products, Inc., Johnson & Johnson, Cincinnati, OH) tissue glue on the wound (Fig.47.30).
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Fig. 47.14 The Modena retractor in situ. Note the suction tube placed through the special port to prevent subsequent fogging of the robotic dual­channel endoscope
Fig. 47.15 The Modena retractor blade. This is placed under the ap and strap muscles to retract them and create sufcient working space for the robotic arms to be introduced and for them to be able to move freely during robotic surgery without clashing
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Robot
surgeon)
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Anesthesiologist
Vision cart
Assistant
surgeon
Scrub nurse
Console (main
Fig. 47.16 Operating room conguration for transaxillary robotic thyroidectomy. The cart is docked at right angles to the operating table on the contralateral side to the thyroid lobe to be resected
Electrocautery
Endoscopes
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Vision cart
Mouthgag cart Instrument cart
Nurse
Assistant
unit
(bedside
assistant)
Anesthesiologist
Patient-side cart
Surgeon at
console
Fig. 47.16 (continued)
Electrocautery
unit
(Surgeon console
and patient cart)
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Fig. 47.17 All four robotic arms are placed through the single axillary incision. The 30° down 12-mm dual-channel 3D endoscope is placed at an angle of 220° and is inserted low laterally, extending high and upwards medially towards the thyroid gland. The rst and third robotic arms are then positioned so that they can carry the instruments for dis-
Thyroid lobe
Fig. 47.18 Entering the natural dehiscence between the sternal and clavicular heads of the sternocleidomastoid muscle. As the ap and strap muscles are retracted by the Modena retractor, the thyroid lobe is exposed (lateral approach)
section and haemostasis. The fourth robotic arm is subsequently placed under (and parallel to) the endoscope; it holds the 8-mm ProGrasp™ forceps to retract the thyroid lobe medially. The rst and third robotic arms hold a combination of 5-mm Maryland, DeBakey and Harmonic shears
RLN
Fig. 47.19 Early identication of the recurrent laryngeal nerve (RLN) with the lateral approach in transaxillary robotic thyroidectomy. The RLN is exposed in the tracheoesophageal groove following medial retraction of the thyroid lobe
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RLN
CCA
IJV
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Fig. 47.20 The great vessels of the neck, the common carotid artery (CCA) and internal jugular vein (IJV), are identied during robotic dissection while keeping the recurrent laryngeal nerve (RLN) into constant view
Fig. 47.21 Following identication of all adjacent neurovascular structures, the recurrent laryngeal nerve (circled) is carefully dissected, stimulated and subsequently gently displaced laterally and protected
with a pledget. It is paramount to keep the recurrent laryngeal nerve within the operative view at all times to prevent inadvertent injury to it
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Fig. 47.22 The thyroid lobe is then mobilised. Note how the recurrent laryngeal nerve is kept in constant view and is protected with a pledget. Similarly, the internal jugular vein and common carotid artery are also continuously maintained under direct visualisation, as an inadvertent vascular injury is likely to result in the need for open conversion.
Fig. 47.23 Robotic division of the ligament of Berry to release the recurrent laryngeal nerve (circled)
Arresting haemorrhage from intraoperative injury to the great vessels of the neck can be challenging with the robot during remote-access thy­roidectomy, as neither direct pressure nor vascular clamps can be applied in a safe and timely manner to attain vascular control above and below the injury in order to repair it
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Fig. 47.24 Contrary to open thyroidectomy, in transaxillary robotic thyroidectomy, the thyroid lobe is rst released laterally and inferiorly (lateral approach). The parathyroid glands are identied and preserved
Fig. 47.25 Following lateral and inferior release of the thyroid lobe, the superior pole is dissected
(circle indicates an inferior parathyroid gland being carefully separated from the thyroid capsule), along with their blood supply, by ensuring that the inferior thyroid artery is ligated distally