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SURGICAL TECHNOLOGY

Minimally invasive surgery

Minimally invasive technique trades access for exposure. The technologies that make it work all address the same constraint: seeing clearly, dissecting precisely, and controlling tissue through a small opening.

Precision dissection

Ultrasonic dissection uses high-frequency mechanical energy to fragment parenchymal tissue while sparing more elastic structures such as vessels and ducts, with integrated irrigation and aspiration clearing the field. Tissue-selective dissection is particularly valuable in hepatobiliary, pancreatic and renal work where the plane matters more than speed.

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Reducing collateral thermal spread also matters in confined spaces, where adjacent structures are millimetres from the working tip.

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Seeing the field

Magnification and coaxial illumination are part of the minimally invasive toolkit, not an accessory to it. Correctly prescribed loupes and a lightweight LED headlight reduce postural strain across a long list and keep the working depth of field consistent.

FURTHER READING

Avoiding the cavity altogether

In chest wall surgery, extrapleural correction techniques achieve the goal of repair without entering the pleural space at all — an approach that removes a category of intrathoracic risk rather than reducing it.

OTHER SOLUTIONS

Common questions

TECHNOLOGIES WE SUPPLY FOR THIS

Each product is supported locally with training, clinical support and regulatory sponsorship in Australia and New Zealand.

S185 & S300

Söring

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Ultrasonic dissection and wound debridement

MedLED Spectra

Riverpoint Medical

 

Surgical headlight illumination

Pectus Up

Ventura Medical

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Minimally invasive pectus excavatum correction

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