1.Animal experimental study of fracture fixation with PDLLA mixed with chitosan
Chaotong HUANG ; Jingkuang LI ; Jiakai ZHU
Orthopedic Journal of China 2006;0(02):-
[Objective]To explore the effect of fracture healing with intramedullary nail of poly-DL-lactic acid(PDLLA) mixed with chitosan and basic fibroblast growth factor(b-FGF),and provides the basis for clinical application.[Method]Middle tibia fracture model of 120 healthy adult rabbits of New Zealand were established and randomly divided into 6 groups as follows:experimental(A):30 rabbits with PDLLA+CHS+ b-FGF;control:5 groups(18 animals for each group):control(B) with PDLLA+CHS,control(C) with PDLLA,control(D) with PDLLA+b-FGF,control(E) with Kirschner's wire,and control(F) with Kirschner's wire+b-FGF.Radiological and histological follow-up was performed in 4,8,12 weeks postoperatively.[Result]All animals were survival.There was no significant difference(P
2.A study of some key techniques of digitized virtual hand
Chaotong HUANG ; Longfu CHEN ; Jingkuang LI ; Zhonghua LI ; Dongsheng CHEN ; Jianwen TAN ; Meichao ZHANG
Chinese Journal of Microsurgery 2009;32(2):127-129,illust 6
Objective To reconstruct anatomical structures and establish visible model of the hand and evaluate some key techniques of digitized virtual hand. Methods Three hands were scan and then perfused by self-curing denture acylic and cinnabar. With the datum from CT-scan of the specimen of perfused hand (cryopreserved 4-24 h), such anatomical structures as contour, bone, artery, extensor tendon, flexor tendon and nerve of hand were constructed by software of Mimics 10.01 and measured. Results The visible hand model based on anatomical structures was established and main anatomical structures were exactly showed. Each structure was displayed by the multiform solitude or combination. Vessel lumens was displayed hollow and fidelity. The hand nerve can the part demonstrate that can earnest reflect the normal human body nerve contour anatomy characteristic. Conclusion The visible hand model can provide 3D morphological data for clinical practice and research, as well as provide digitized model for virtual reality.