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Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_839_Библиотеки_им_академика_М_И_Перельмана

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J. Liu and F. Long
13.1.1 Indications andContraindications
(a) The lesion located deep in the LLL is less than 2cm in
diameter, which C/T (Consolidation/Tumor) ratio of less than 50%.
(b) The nodule had no change 2 months later after being
treated with antibiotics for 2 weeks, raising the possibil­ity of early lung cancer.
(c) With the plan of the preoperative 3D-CTBA reconstruc-
tion, the distance of incisional margin to the nodule is more than 2 cm after the procedure of LS6 segmentectomy.
(d) The patient was in good physical condition, with no con-
traindications to the surgery procedure.
13.2 Preoperative 3D-CTBA Reconstruction
The marginal ball of this nodule (nodule and its 2cm mar­gin) shows the margin is located in LS6 (Fig.13.4), and LS6 segmentectomy is required to satisfy the safe surgical margin.
A6 (Fig.13.6) is divided from the interlobar artery that is
divided into A6a, A6b, and A6c.
The left inferior pulmonary vein (LIPV) (Fig. 13.7)
divides into V6 and V
7–10
. V6 divides into V6a, V6b, and V6c,
with V6a and V6b divided from a common trunk.
The operation needs to dissect A6, B6, and V6a (Figs.13.8
and 13.9).
13.2.1 Anatomical Features
The left lower bronchus (LLB) (Fig.13.5) divides into B6
7–10
and B
, with B6 dividing into B6a, B6b, and B6c.
Fig. 13.5 Bronchial branch of the LLL (Posterior view)
Fig. 13.4 Relationship between the safe margin of nodule and the seg-
mental interface of the LLL (Posterior view)
Fig. 13.6 Relationship between arteries and bronchi of LS6 (Posterior view)
13 L S6 Segmentectomy by 3D Navigation
95
Fig. 13.9 Relationship among arteries, veins, and bronchi of the LS6 (Posterior view)
Fig. 13.7 Relationship between veins and bronchi of LS6 (Posterior view)
Fig. 13.8 Relationship among arteries, veins, and bronchi of the LS6 (Posterior view)
13.3 Surgery Planning andProcedure
According to CT and preoperative 3D reconstruction, LS6 segmentectomy was performed. Dissect from the interlobar ssure caudally.
13.3.1 Surgical Planning
A6B6V6aLS6.
13.3.2 Surgical Procedures
1. The patient in right lateral position and double-lumen tracheal intubation. The procedure is performed with a single port: The fth intercostal space of left axillary midine is main operating port through which thoraco­scope and other instruments passed together.
2. Probe to locate the nodule within LS6.
3. Pull the LLL ventrally and incise the pleura behind the hilum, 10L lymph node (Fig.13.10) is dissected for intra­operative frozen pathology.
4. Dissect the interlobar fissure and cut the poorly formed part with the stapler (Fig.13.11), 12L lymph node (Fig.13.12) is dissected for intraoperatively fro-
96
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Fig. 13.10 Dissecting No.10 lymph node
J. Liu and F. Long
zen pathology. Dividing A6 with the stapler (Fig.13.13).
5. Dissect B6 from both the interlobar ssure and the poste­rior hilum (Fig.13.14), dividing it with the stapler above V6.
6. Lift the B6 stump and dissect V6 behind it. Dissect V6 dis­tal to V6a, and divide it. Take care to protect V6b and V6c (Fig.13.15).
7. Inate lung with 100% pure oxygen having a pressure of 20–30mmHg to full ination of the LLL.About 10min later, a clear interface of ination and deation is seen, i.e., LS6 inating and Residual lungs deating (Fig.13.16).
8. The lung is tailored along the interface of ination and deation. Show the nodule located in the center of LS6 (Fig.13.17).
9. Show the stumps of segmental surface postoperatively (Fig.13.18).
Fig. 13.11 Dividing the oblique ssure with the Stapler (LUL: left upper lobe; LLL: left lower lobe)
Fig. 13.12 Dissecting 12L lymph node
Fig. 13.13 Dividing A
Fig. 13.14 Dissecting B
6
6
13 L S6 Segmentectomy by 3D Navigation
Fig. 13.15 Dissecting V6a
97
Fig. 13.18 Stumps of segmental surface after LS6 segmentectomy
The postoperative pathology of this patient was microinvasive adenocarcinoma (MIA) with 10L, 12L lymph nodes negative.
13.3.3 Key Points oftheSurgical Procedure
Fig. 13.16 Showing the interface of ination and deation
(a) Because the main operating area is in the posterior part
of the oblique ssure, the incision is selected in the fth intercostal of the axillary midline, and the straight view of the single port VATS (Video-Assisted Thoracoscopic Surgery) is in the operative area.
(b) It is safer to expose V6 from the dorsal mediastinum rst
and then to dissect bluntly B6 from the front, which can avoid to damage V6.
(c) V6b and V6c are intersegmental veins that need to be pre-
served. When dissecting V6a, care should be taken not to damage them.
13.4 Schematic Diagram oftheSurgical Procedure
Schematic diagram of the surgical procedure for LS6 seg­mentectomy (Figs.13.19, 13.20, 13.21, 13.22, 13.23, 13.24,
13.25, 13.26, and 13.27).
Fig. 13.17 Showing the nodule located within LS
6
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J. Liu and F. Long
Fig. 13.19 Figure of descending dimension of LS6 segmentectomy (The shadow is the range of excision: Red circles represent arteries; Green circles represent bronchi)
LLL
Fig. 13.21 Dissecting A
LUL
Fig. 13.22 Dividing A
LUL
6
LLL
6
LLL
LUL
Fig. 13.23 Dissecting B
Fig. 13.20 Panoramic gure of the LLL (Interlobar view)
6
13 L S6 Segmentectomy by 3D Navigation
LUL
LLL
LUL
Interlobar
artery
99
LLL
Fig. 13.24 Dividing B
LUL
6
Fig. 13.25 Dissecting V6a
LLL
LLL
Fig. 13.27 The labeled gure of segmental stumps after LS6 segmentectomy
Suggested Reading
1. Nakamura K, Okada M, Asamura H, etal. A phase III randomized
trial of lobectomy versus limited resection for small-sized periph­eral non-small cell lung cancer (JCOG0802/WJOG4607L). Jpn J Clin Oncol. 2010;40(3):271–4.
2. Okada M, Tsutani Y, Ikeda T, etal. Radical hybrid video-assisted
thoracic segmentectomy: long- term results of minimally invasive anatomical sublobar resection for treating lung cancer. Interact Cardiovasc Thorac Surg. 2012;14(1):5–11.
LUL
Fig. 13.26 Dividing V6a
RS8a Segmentectomy by 3D Navigation
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JixianLiu andXinyuLuan
14
14.1 Summary ofMedical Records
A 35-year-old female was found to have a nodule located in the right lower lobe (RLL) on CT scan 4 months ago without any physical sickness. The nodule was a little larger on re­examination CT 4 months later. Chest CT (Figs.14.1, 14.2, and 14.3) showed a diameter of 18mm mixed ground glass opacity (mGGO) located in the RS8a.
14.1.1 Indications andContraindications
(a) The lesion located deep in the RLL is less than 2cm in
diameter, which C/T (Consolidation/Tumor) ratio is less than 50%.
(b) The nodule observed for 4 months became a little larger,
raising the possibility of early lung cancer.
(c) With the planning of the preoperative 3D-CTBA recon-
struction, the distance of incisional margin to the nodule is more than 2 cm after the procedure of RS8a segmentectomy.
(d) The patient was in good physical condition, with no con-
traindications to the surgery procedure.
Fig. 14.2 Chest CT (Coronal view) showing the nodule (Arrow) located in the middle of RS8a. The yellow circle: identies a 2-cm margin
Fig. 14.1 Chest CT (Axial view) showing the nodule (Arrow) located in the middle of RS8a. The yellow circle: identies a 2-cm margin
J. Liu (*) · X. Luan Department of Thoracic Surgery, Peking University Shenzhen Hospital, Shenzhen, Guangdong, China
© The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2023 J. Liu, D. Wu (eds.), Segmentectomy for Early-Stage Lung Cancer, https://doi.org/10.1007/978-981-99-0143-2_14
101
102
Fig. 14.3 Chest CT (Sagittal view) showing the nodule (Arrow) located in the middle of RS8a. The yellow circle: identies a 2-cm margin
J. Liu and X. Luan
Fig. 14.4 Relationship between the safe margin of nodule and the seg­mental interface of the RLL (Anterior view)
14.2 Preoperative 3D-CTBA Reconstruction
The marginal ball of this nodule (nodule and its 2cm mar­gin) shows the margin is located in RS8a (Fig.14.4), so RS8a segmentectomy is required to satisfy the safe surgical margin.
14.2.1 Anatomical Features
The right lower bronchus (RLB) (Fig.14.5) divides into B6
7–10
and B
artery.
, B8 divides into B8a and B8b.
A8a (Fig.14.6) emanates from A9, A8b from the interlobar
S8a segmentectomy does not need to dissect the vein. The operation needs to dissect A8a and B8a (Fig.14.7).
Fig. 14.5 Bronchial branch of the RLL (Anterior view)
14 RS8a Segmentectomy by 3D Navigation
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Fig. 14.6 Relationship between arteries and bronchi of RLL (Anterior view)
103
14.3.1 Surgical Planning
A8aB8aS8a.
14.3.2 Surgical Procedures
1. The patient is in left lateral position with double-lumen tracheal intubation. The procedure is performed with a single port: The fth intercostal of right axillary midline is main operating port, through which the thoracoscope and retractive instruments pass through.
2. Probe to locate the nodule within RS8a.
3. The poorly differentiated oblique ssure is dissected (Fig.14.8); dissect A6 and A is dissected for intraoperative frozen pathology.
9–10
. 12R lymph node (Fig.14.9)
Fig. 14.7 Relationship among arteries, veins, and bronchi of the RS8a (Anterior view)
14.3 Surgery Planning andProcedure
According to CT and preoperative 3D reconstruction, RS8a segmentectomy is performed. Dissect from interlobar ssure caudally.
Fig. 14.8 Dissecting oblique ssure (RLL right lower lobe of lung, RML right middle lobe)
Fig. 14.9 Dissecting 12R lymph node
104
4. Following the 3D navigation, A8a which is on the surface of A9 is dissected and ligated with 3-0 silk thread and cut off with an Ultrasonic knife (Fig.14.10).
5. Dissect B8a just behind A8a stump (Fig.14.11), and divide it with a stapler.
6. Inate lung with 100% pure oxygen having a pressure of 20–30 mmHg to the full ination of the RLL. About 10min later, a clear interface of ination and deation is seen, i.e., RS8a inating and residual lung deating (Fig.14.12).
7. The lung is tailored along the interface of ination and deation (Fig.14.13).
8. Show the stumps of segmental surface postoperatively (Fig.14.14).
The postoperative pathology of this patient was microinvasive adenocarcinoma (MIA) with 12R lymph node negative.
J. Liu and X. Luan
Node
Fig. 14.12 Showing the interface of ination and deation
Node
Fig. 14.10 Dividing A8a
Fig. 14.11 Dissecting B
8
a bluntly
Fig. 14.13 Tailoring lung along the interface of ination and deation
Fig. 14.14 Stumps of segmental surface after RS8a segmentectomy