Related Experiment Video
Updated: May 2, 2026

Undecalcified Bone Preparation for Histology, Histomorphometry and Fluorochrome Analysis
Published on: January 8, 2010
Plastination of decalcified bone by a new resin technique
Abbas Ali Rabiei1, Ebrahim Esfandiary1, Morteza Hajian2
1Department of Anatomical Sciences, School of Medicine Isfahan University of Medical Sciences, Isfahan, Iran.
Background:
The scope of this study was to preserve whole detailed structure of dissected and decalcified bones, taken from used cadavers, by a new plastination technique.
Materials And Methods:
Specimens we used in this study were sheep femurs and human bones including pelvis, femur, tibia, and fibula. Bones, at first, fixed with 5% formalin and were decalcified with 5% nitric acid, and then were fixed again and washed under the tap water. The resulted flexible bones were dehydrated in -25°C acetone and degreased them in +25°C acetone. Then, the experimental and control specimen were placed in the vacuum chamber for forced impregnation with our new flexible unsaturated polyester resin (UP89 method) and silicon resin (S10 method), respectively. Finally, the strength and flexibility of plastinated decalcified specimens were investigated by tensometer, and the weight diversity was measured by digital balance.
Results:
Plastinated bones prepared by this technique were found to be dried, non-fragile, durable, odorless, non-greasy, and demonstrating all detailed structures of the bones. Tensile and weight tests results indicated that plastinated decalcified femurs have owned higher flexibility and strength but lesser weight than plastinated undecalcified femurs. The characteristics of both experimental and control groups of plastinated decalcified specimens were found to have no significant difference.
Conclusions:
Our synthesized resin found to be much more economical than conventional plastination method. In more details, properties of these new products were the same as, S10 method, from points of strength, flexibility and weight, but, since the money cost for producing them was about one fifth that of S10 method.
More Related Videos
07:30Using Archival Japanese Paper and Thermoplastic Resins to Prepare Fossils for Storage, Display, Transport, and Radiography
Published on: November 14, 2025
04:17Author Spotlight: Development and Evaluation of a Standardized Rat Model for Calvarial Suture-Bony Composite Defects
Published on: May 10, 2024