| Literature DB >> 26052515 |
Roland S Croner1, Aristotelis Perrakis1, Maximillian Brunner1, Klaus E Matzel1, Werner Hohenberger1.
Abstract
BACKGROUND: Minimally invasive liver surgery is growing worldwide with obvious benefits for the treated patients. These procedures maybe improved by robotic techniques, which add several innovative features. In Germany, we were the first surgical department implementing robotic assisted minimally invasive liver resections.Entities:
Keywords: HCC; colorectal cancer; liver malignancy; liver resection; minimally invasive; robotic
Year: 2015 PMID: 26052515 PMCID: PMC4440394 DOI: 10.3389/fsurg.2015.00018
Source DB: PubMed Journal: Front Surg ISSN: 2296-875X
Demographic, perioperative, and histopathology data of patients, which underwent robotic-based liver resection for primary and secondary liver malignancies.
| Patient | Age (years) | Tumor | Tumor size (cm) | R-status | Surgery | Operation time (min) | Previous abdominal surgery | Liver fibrosis (Ishak-scoring) | Hepatic steatosis | Postop. morbidity | Discharge (postop. day) |
|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 | 71 | CCC | 5.5 | 0 | Left lateral | 458 | None | n.d. | 20–40% | None | 7 |
| 2 | 45 | CRC | 3.5 | 0 | Left lateral | 368 | Robotic sigmoid | 0 | None | None | 6 |
| 3 | 75 | CRC | 4.5 | 0 | Left lateral | 314 | Lap. rectum | 0 | 5% | None | 5 |
| 4 | 66 | HCC | 5 | 0 | Left lateral, gallblader | 405 | Open sigmoid | 2 | 5% | None | 9 |
| 5 | 64 | HCC | 3.1 | 0 | Segment III | 138 | None | n.d. | n.d. | None | 6 |
| 6 | 58 | HCC | 5 | 0 | Ablation segment II/III and IV | 115 | None | 4–5 | n.d. | None | 3 |
| 7 | 69 | CRC | 4.1 | 0 | Left lateral | 228 | Open rectum extirpation | 1 | 5–10% | Small bowel fistula | 10 |
| 8 | 62 | HCC | 5 | 0 | Left lateral | 403 | None | 6 | 20–30% | None | 6 |
| 9 | 57 | CRC | 3.5 | 0 | Segment V, gallblader | 375 | Lap. rectum | 1 | n.d. | None | 6 |
n.d., not determined.
Figure 1Operative setting for robotic based liver surgery. * © 2015 Intuitive Surgical, Inc. All other figures are original.
Figure 2(A) Trocar placement for robotic based minimally invasive liver surgery, robotic trocars for arm 1-3 (A1–A3), 10 mm laparoscopic trocars for the camera (C), the surgical assistance (Ass) and if necessary pringle maneuver (Pr). (B) Intraopeartive use of the robotic arms. Arm 1: monopolar scissors, arm 2 bipolar forceps, both for tissue preparation, arm 3: liver exposure. The liver tissue is protected by using a sponge. Via the assistant port a laporoscopic succor is inserted to reduce smoke exposure.
Figure 3Laparoscopic ultrasound to identify resection margin. Red arrows indicate the tumor margin, yellow arrow indicates a shadow induced by an incision of the liver capsular.
Figure 4(A) Robotic resected and via pfannenstiel incision removed left lateral liver containing rectal cancer liver metastasis. (B) Robotic guided HCC microwave ablation. The needle is placed via a 10 mm laparoscopic trocar. A sponge is used to protect the liver tissue during the exposure.