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Case report

Case 4 (2023): Extensive scalp reconstruction using a free myocutaneus lattisimus dorsi flap

Felix Strübing, Resident, BG Ludwigshafen, Germany

Published April 2, 20234 views5 min read
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Abstract

A 57-year-old male patient presented with an ambiguous lesion on his scalp. Sixteen years prior, he had sustained a work-related scalping injury when his long hair became entangled in a machine. Although a replantation of the scalp was attempted, it ultimately failed. A soft tissue defect measuring approximately 25 x 6 cm resulted, and reconstruction was performed using split-thickness skin grafti

Case 4 (2023): Extensive scalp reconstruction using a free myocutaneus lattisimus dorsi flap
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A 57-year-old male patient presented with an ambiguous lesion on his scalp. Sixteen years prior, he had sustained a work-related scalping injury when his long hair became entangled in a machine. Although a replantation of the scalp was attempted, it ultimately failed. A soft tissue defect measuring approximately 25 x 6 cm resulted, and reconstruction was performed using split-thickness skin grafting. In the years following the procedure, the skin graft area progressively thinned, leading to an increased susceptibility to superficial lesions. Furthermore, an ulcer developed on the parietal scalp, raising concerns about potential malignancy.

Step 1 — Operation 1: Tumor resection
Operation 1: Tumor resection

In the initial procedure, the suspicious lesion was excised, and suture marking is employed to delineate the margins. We advise incorporating a diagram to accurately represent the surgical specimen’s orientation for the pathologist’s reference. Temporary closure is achieved using negative pressure wound therapy (NPWT).

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Step 2 — Operation 1: Tumor resection
Operation 1: Tumor resection

We performed a complete excision of the tumor, including the periosteum in the specimen.

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Step 3 — Operation 2: Complete resection of the skin grafted area
Operation 2: Complete resection of the skin grafted area

The pathology report identified a squamous cell carcinoma (TNM: pT2, L0, V0, pM0, G3, R1) with incomplete surgical margins. Together with the patient, we decided to excise the entire skin-grafted area. After the resection, a soft tissue defect measuring 27 x 28 cm remained. NPWT was employed for temporary wound closure.

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Step 4 — Operation 2: Diagram for the Pathologist
Operation 2: Diagram for the Pathologist

Again, we suggest drawing a precise diagram of the specimen and its orientation for the pathologist and including it in the pathology report. (The intraoperative sketch shown here was later redrawn for the pathology report)

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Step 5 — Step 3: Operation 3: Soft-tissue reconstruction
Step 3: Operation 3: Soft-tissue reconstruction

The patient is put in the lateral decubitus position. We used a two team approach with one team raising the flap, while the other team was preparing the recipient site. First, the outer table of the skull in the previous tumor bed was resected together with the neurosurgery service for improved oncologic safety.

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Step 6 — Operation 3: Preparation of recipient vessels
Operation 3: Preparation of recipient vessels

The superficial temporal vessels were meticulously dissected, with special attention given to preventing injury to the facial nerve within the preauricular space. A minimum of 2 to 3 cm of the vessels should be prepared for anastomosis (black arrow points at the superficial temporal vessels). Owing to the abundant blood supply in the facial region, the vessels can be sacrificed to facilitate end-to-end anastomosis.

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Step 7 — Operation 3: Marking the flap
Operation 3: Marking the flap

The challenge was to address the extensive soft-tissue defect using one flap. In order to exhaust the maximum size of the myocutaneus latissimus dorsi flap, the anterior border of the muscle was precisely identified using sonography. The skin paddle was than designed critically extending the anterior border of the muscle. It was planned to use the myocutaneus flap part for reconstruction of the occipital and nuchal area.

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Step 8 — Operation 3: Raising the flap
Operation 3: Raising the flap

The flap was elevated based on the thoracodorsal vessels, with particular care taken to include the entire muscle. Intraoperative indocyanine green fluorescence angiography indicated hypoperfusion in the distal portion of the flap (see 9 and 10). The designated resection area, visible in the congested distal region of the flap, is illustrated above in the broken white surrounding. This area was resected prior to flap transfer.

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Step 9 — Operation 3: ICG angiography
Operation 3: ICG angiography

The intraoperative ICG angiography reveals optimal perfusion in the proximal parts of the flap (left is proximal, right is distal).

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Step 10 — Operation 3: ICG angiography
Operation 3: ICG angiography

The most distal part of the skin flap incorpated in the lattisimus dorsi myocutaneous free flap showed an insufficient perfusion in the ICG angiography. It was marked and resected prior to flap transfer.

  • In our experience, intraoperative ICG angiography is an extremely reliable procedure and may prevent partial flap loss.
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Step 11 — Operation 3: Flap Inset
Operation 3: Flap Inset

We were able to realize the flap inset as planned. The flap is then anastomosed in an end-to-end fashion the temporal vessels. A venous coupler of 3.0 mm diameter is used for the venous anastomosis.

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Step 12 — Operation 3: Skin grafting

The muscle portion of the flap is covered with 0.2 mm-thick split-thickness skin grafts obtained from the thigh and meshed at a 1:1.5 ratio. Skin staples are utilized to secure the skin grafts in place.

Hourly flap monitoring using clinical evaluation for at least 48 hours.

  • Daily low molecular weight heparin 30mg twice daily for five days and 40mg daily afterwards until discharge.
  • Compression garment for six weeks to prevent seroma formation.

How to cite this article

Felix Strübing, Resident, BG Ludwigshafen, Germany. Case 4 (2023): Extensive scalp reconstruction using a free myocutaneus lattisimus dorsi flap. Journal of Plastic, Breast & Reconstructive Surgery. 2023.

Open access. © 2023 The Author(s). Published by the Journal of Plastic, Breast & Reconstructive Surgery. Copyright to this case is shared between the author(s) and the journal; authors may reuse their own case for education, presentations and social media.

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