The present invention relates to a
surgical device, for the precise and efficient infiltration of fluids into tissues during
laparoscopic surgical procedures. This device comprises a metallic, tube-like body (T) having an interanl hollow cavity that includes a holding area (H) and an infiltration
nozzle (IN), which are key components facilitating its operation. The body (T) of the canula is designed to be long enough to reach deep into the
abdominal cavity, with a holding area (H) equipped with a
louver lock (LL) at its upper end. This lock (LL) allows for the secure attachment of syringes or fluid lines, ensuring stable and controlled fluid delivery. The infiltration
nozzle (IN), located at the lower end of the body (T), features a distinct 90°degree bend terminating in a blunt beveled end (B). This design is specifically optimized to minimize
tissue trauma while maximizing the precision and effectiveness of fluid dispersion directly at the
surgical site.