Literature DB >> 15329777

[Polyurethane vessels for microvascular surgical training to reduce animal use].

Sonja A Meier1, Axel Lang, Gertrude M Beer.   

Abstract

AIM: Systematic training of the manual skills is inevitable in learning microsurgery. Generally, first exercises are done on two-dimensional models, then the training continues on animals. With the growing ethical awareness, the obligation to protect animals and the stricter animal protection laws, realistic three-dimensional models have become necessary for training of microsurgery. However, the available alternatives all have certain disadvantages. We tested vessels made of polyurethane for microvascular surgical training and compared them to the available three-dimensional synthetic alternatives. DESCRIPTION OF THE TRAINING MODEL: Rose-coloured (arteries) or blue (veins), opaque vessels with a minimal wall thickness of 0.12 mm and a minimal internal diameter of 1 mm are used. To mimic the surgical access and the depth of the operative field, the vessels can be embedded in a synthetic box with or without a cap. The completed anastomosis is checked by injection of a coloured fluid. EXPERIENCES: The consistency and the variable relation of the thickness of the wall to the internal diameter very closely reflect the biological situation. Even training on very fragile venous walls is possible in all manners. After completion of anastomosis the vessels can be opened longitudinally to check the patency of the anastomotic site. DISCUSSION: The described polyurethane vessels are very suitable for microsurgical training as a useful step between the two-dimensional model and the animal. The number of animals required for microsurgical training can clearly be reduced by the use of such synthetic polyurethane vessels.

Entities:  

Mesh:

Year:  2004        PMID: 15329777

Source DB:  PubMed          Journal:  ALTEX        ISSN: 1868-596X            Impact factor:   6.043


  4 in total

1.  The human umbilical cord: a model for microsurgical training.

Authors:  Ammar Allouni; Tarek Amer; Maamoun Ismail; Taher Ismail
Journal:  J Hand Microsurg       Date:  2014-07-02

2.  A new polyvinyl alcohol hydrogel vascular model (KEZLEX) for microvascular anastomosis training.

Authors:  Tatsushi Mutoh; Tatsuya Ishikawa; Hidenori Ono; Nobuyuki Yasui
Journal:  Surg Neurol Int       Date:  2010-11-23

3.  Microsurgical Training using Reusable Human Vessels from Discarded Tissues in Lymph Node Dissection.

Authors:  Naohiro Ishii; Tomoki Kiuchi; Tomito Oji; Kazuo Kishi
Journal:  Arch Plast Surg       Date:  2016-11-18

Review 4.  Microvascular Anastomosis Training in Neurosurgery: A Review.

Authors:  Vadim A Byvaltsev; Serik K Akshulakov; Roman A Polkin; Sergey V Ochkal; Ivan A Stepanov; Yerbol T Makhambetov; Talgat T Kerimbayev; Michael Staren; Evgenii Belykh; Mark C Preul
Journal:  Minim Invasive Surg       Date:  2018-03-28
  4 in total

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