Robotic-assisted ventral and incisional hernia repair with hernia defect closure and intraperitoneal onlay mesh (IPOM) experience

JOURNAL OF ROBOTIC SURGERY(2020)

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Abstract
Background The most common technique described for robotic ventral hernia repair (RVHR) is intraperitoneal onlay mesh (IPOM). With the evolution of robotics, advanced techniques including retro rectus mesh reinforcement, and component separation are being popularized. However, these procedures require more dissection, and longer operative times. In this study we reviewed our experience with robotic ventral/incisional hernia repair (RVHR) with hernia defect closure (HDC) and IPOM. Methods Retrospective chart review and follow-up of 31 consecutive cases of ventral/incisional hernia treated between August 2011 and December 2018. Demographics, operative times, blood loss, length of stay (LOS), hernia size, location, and type, mesh size and type, recurrence, conversion to open ventral hernia repair (OVHR) and complications including bleeding, seroma formation and infection were analyzed. Results Mean age was 63.9 years old, with median BMI of 31.24 kg/m 2 . Median hernia area was 17 cm 2 . Mean operating time was 142.61 min (SD 59.79). Mean LOS was 1.46 days (range 1–5), with 48% being outpatient, and overnight stay in 32% for pain control. Conversion was necessary in 12.9% cases. Complication rate was 3% for enterotomy. Recurrence was 14.81% after a mean follow-up of 26.96 months. There was significant association of recurrence with COPD history ( P = 0.0215) and multiple hernia defects ( P = 0.0376). Conclusion Our recurrence rate (14.81%) compares favorably to those reported in literature (16.7%) for LVHR with HDC and IPOM. Our experience also indicates that IPOM is associated with satisfactory outcomes, low conversion and complications rates, and short LOS.
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Key words
Robotic hernia repair,Ventral hernia,Incisional hernia,Intraperitoneal onlay mesh,Hernia defect closure
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