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Manual slow firing mode of Signia™ Stapling System can achieve less staple line bleeding from pulmonary artery
Mikito Suzuki1, Tomohiro Imoto1, Reiko Shimizu1
1Department of Thoracic Surgery, Tokyo Metropolitan Cancer and Infectious Diseases Center Komagome Hospital, Bunkyo-ku, Tokyo, Japan.
Background:
Staple line (SL) bleeding from the pulmonary artery (PA) can interfere with subsequent surgical procedures and prolong operative time. SL bleeding is associated with staple malformation and vessel wall damage. The manual slow firing mode (MSFM) is a function of Covidien's powered stapler Signia™, which performs firing at a continuous slow speed, whereas the conventional stapling mode adjusts the stapling speed based on tissue thickness. The slow-speed stapling of the PAs may help prevent staple malformation and vessel wall damage, thereby contributing to the reduction in SL bleeding. This study aimed to evaluate the effects of MSFM on PA dissection.
Methods:
Of the 433 anatomical lung resections performed at our institution between November 2020 and November 2024, patients who underwent anatomical lung resection using the Signia™ small diameter reload with a gray 30 mm cartridge were included. PA dissection was classified into the conventional normal mode (NM) and MSFM; the frequency of SL bleeding was evaluated using each mode. SL bleeding was defined as bleeding/oozing that persisted for at least 15 s without any intervention or after the required compression for ≥5 s. We also evaluated SL bleeding in small-diameter (<7 mm), which could be safely dissected using an energy device, and in large-diameter vessels (≥7 mm).
Results:
Among the 82 patients, the total number of dissected pulmonary arteries was 84 and 87 in the NM and MSFM groups, respectively. The median (range) diameter was 6.6 (range, 2.1-14.1) mm in the NM and 6.3 (range, 2.3-14.2) mm in the MSFM groups (P=0.59). SL bleeding was significantly lower in the MSFM group [11.5% (10/87)] than in the NM group [26.2% (22/84)] (P=0.01). SL bleeding in the small vessels was 19.1% (9/47) in the NM group and 10.2% (5/49) in the MSFM group, with no significant difference (P=0.26). In contrast, for large vessels, SL bleeding was significantly lower in the MSFM group [13.2% (5/38)] compared with the NM group [35.1% (13/37)] (P=0.03).
Conclusions:
MSFM could reduce SL bleeding from large-diameter PAs and might contribute to improved intraoperative safety.
Insights
The manual slow firing mode (MSFM) significantly reduced staple line bleeding in large pulmonary arteries during lung resection. This powered stapler function may enhance intraoperative safety by minimizing bleeding complications.
Area of Science:
- Thoracic Surgery
- Surgical Oncology
- Medical Devices
Background:
- Staple line bleeding from pulmonary arteries (PA) complicates lung resections.
- This bleeding is linked to staple malformation and vessel damage.
- The Signia™ powered stapler's manual slow firing mode (MSFM) offers controlled stapling speed.
Purpose of the Study:
- To evaluate the impact of MSFM on pulmonary artery dissection.
- To assess the reduction in staple line bleeding using MSFM compared to conventional mode.
Main Methods:
- Retrospective analysis of 82 patients undergoing anatomical lung resection with Signia™ stapler.
- Comparison of staple line bleeding between conventional normal mode (NM) and MSFM.
- Evaluation of bleeding in small (<7 mm) and large (≥7 mm) diameter pulmonary arteries.
Main Results:
- Staple line bleeding was significantly lower in the MSFM group (11.5%) versus the NM group (26.2%) (P=0.01).
- No significant difference in bleeding for small vessels (P=0.26).
- Significantly reduced bleeding in large pulmonary arteries with MSFM (13.2%) compared to NM (35.1%) (P=0.03).
Conclusions:
- Manual slow firing mode (MSFM) effectively reduces staple line bleeding in large pulmonary arteries.
- MSFM use may improve intraoperative safety during PA dissection in lung resections.
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