Objective: Waterjet dissection is accomplished with Helix Hydro-Jet, but a new device with improved operative handling and potentially superior dissection qualities has been developed.
Materials And Methods: Eighty-four fresh cadaveric pig brains were simultaneously cut with Helix Hydro-Jet and Erbejet 2. A commonly used applicator and a new applicator for the Helix Hydro-Jet were directly compared to the new Erbejet 2. Under standardised conditions, different pressure levels were applied to the brain surface without arachnoids. Technical features, cutting depth, tissue damage and differences of applicators were examined.
Results: Microscopic analysis of cutting depth revealed different dissection characteristics of both the devices. With the standard applicators, waterjet cutting depth was shown to be deeper and with more foaming using the Helix Hydro-Jet compared to that of the Erbejet 2. With the new applicators, less foaming and a lower and more linear increased cutting depth were observed with the Helix Hydro-Jet, very similar to the superior qualities shown by the Erbejet 2.
Conclusions: The new developed applicator of the Erbejet 2 also improves the intraoperative results of the so far applied Helix Hydro-Jet. The new Erbejet 2 provides some advantages for practicability; but in combination with the new applicator, the Helix Hydro-Jet accomplished almost identical superior dissection qualities of the Erbejet 2.
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http://dx.doi.org/10.3109/02688697.2010.495170 | DOI Listing |
Br J Neurosurg
December 2010
Department of Neurosurgery, Johannes Gutenberg University Mainz, Langenbeckstrasse 1, Mainz, Germany.
Objective: Waterjet dissection is accomplished with Helix Hydro-Jet, but a new device with improved operative handling and potentially superior dissection qualities has been developed.
Materials And Methods: Eighty-four fresh cadaveric pig brains were simultaneously cut with Helix Hydro-Jet and Erbejet 2. A commonly used applicator and a new applicator for the Helix Hydro-Jet were directly compared to the new Erbejet 2.
Acta Neurochir (Wien)
November 2009
Department of Neurosurgery, Hanover Medical School, Hanover, Germany.
Background: Waterjet dissection represents a useful technique for many surgical procedures. In this experimental study, the technical features and dissection qualities of the new Erbejet 2 with its new pump and nozzle applicator system are evaluated for its neurosurgical use compared to the established Helix Hydro-Jet.
Methods: One hundred twenty-six fresh cadaveric pig brains were simultaneously cut with the Helix Hydro-Jet and Erbejet 2.
Eur Surg Res
May 2007
Department of Surgery, University Hospital Mannheim, Ruprecht-Karls University Heidelberg, Mannheim, Germany.
Background/aim: Numerous new techniques have recently been reported and described for the endoscopic mucosal resection of large superficial lesions of the gastrointestinal tract. We present here for the first time the application of a water jet dissector for mucosa elevation.
Materials And Methods: In an ex vivo study, the effectiveness of a water jet dissector (Helix Hydro-Jet) placed directly on the stomach walls of 8 pigs was examined to create a mucosal elevation.
Langenbecks Arch Surg
August 2006
The Fifth Affiliated Hospital of Sun Yat-Sen University, Zhuhai, Guangdong, 519000, PR China.
Background And Aims: Intrahepatic lithiasis is a common disease in southeast Asia [Sheen-Chen and Chou, Acta Chir Scand 156:387-390, 1990], and a difficult problem of biliary surgery. There is no established method of treating patients with intrahepatic stones [Uchiyama et al., Arch Surg 137:149-533, 2002].
View Article and Find Full Text PDFJ Urol
July 2005
Section of Laparoscopic and Robotic Surgery, Glickman Urological Institute and Department of Anatomic Pathology, Cleveland Clinic Foundation, Cleveland, Ohio, USA.
Purpose: Hemostasis represents a primary challenge during laparoscopic partial nephrectomy (LPN). We typically clamp the renal artery/vein en bloc and perform LPN expeditiously under warm ischemia conditions. We evaluated Helix Hydro-jet assisted LPN without renal hilar vascular control in the survival calf model.
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