Used routinely in maxillofacial reconstructive surgery, the chondrocostal graft is also applied to hand surgery in traumatic or pathologic indications. The purpose of this overview was to analyze at long-term follow-up the radiological and histological evolution of this autograft, in hand and wrist surgery. We extrapolated this autograft technique to the elbow by using perichondrium. Since 1992, 148 patients have undergone chondrocostal autograft: 116 osteoarthritis of the thumb carpometacarpal joint, 18 radioscaphoid arthritis, 6 articular malunions of the distal radius, 4 kienbock's disease, and 4 traumatic loss of cartilage of the proximal interphalangeal (PIP) joint. Perichondrium autografts were used in 3 patients with elbow osteoarthritis. Magnetic Resonance Imaging (MRI) was performed in 19 patients with a mean follow-up of 68 months (4–159). Histological studies were performed on: Whatever the indication, the reconstruction by a chondrocostal/ostochondrocostal or perichondrium graft yielded satisfactory clinical results at long-term follow-up. The main question was the viability of the graft.
Despite the strong mechanical strain in the hand and wrist, chondrocostal graft is a biological arthroplasty that is trustworthy and secure over the long term, although it can cause infrequent complications inherent to this type of surgery. Despite the inevitable histological modification, the cartilage remains alive and is of satisfactory quality at long term follow-up and fulfills the requirements for interposition and reconstruction of an articular surface. The perichondrium graft constitutes a new arsenal to cure cartilage resurfacing. The importance of perichondrium for the survival of the grafted cartilage, as previously reported, as well as its role in resurfacing, is being investigated.
The treatment for trochanteric femoral fractures is still challenging. Since 2005, we are using 2 new implants: Gamma3™ nail and the PFN-A™. All patients with a fracture of the trochanteric area were included in an observational study during 3 years. Objectives were radiographics and clinics (complications) comparaison of these 2 new devices. We included 426 patients (236 Gamma3™ nails, 190 PFN-A™). We faced the epidemiological data, per and post-operative complications. The tip-apex distance and the position of the cephalic implant were studied. The 2 implants were well positionned in more than 80%, with no statistic diffferencie. We found a a cut-out rate of 1,4 % and a re-operation rate of 4,9 %. These rates of usual complications are very low in comparaison with litterature. We did not found a statistic difference between these 2 differents nails. But, we observed 2 unusual complications: for the Gamma3™ nail, a high rate of automatic distal locking failure, and for the PFN-A™, many patients complained of thigh pain resulting from a prominent cephalic blade. These 2 new complications can be avoided by small changes in the operative procedure. In our mind these 2 implants can be used for treating all patients with trochanteric fracture, but we need other studies to compare these nails with the new generation of sliding plate
Bone union was defined as the continuity of 4/4 cortex on Xray (AP and sagital plane) and or with ct scan. Osigraft® (BMP7) was implanted in the resected zone of non union which was fixed with 2 plates after reaming and decortication.
The failure of the initial treatment of the fracture (unstable fixation, unfilled bone’s defect) remain the main cause of non union.
1) A quantification of the fixation spot : If the spot is two times more important on the injuried wrist (than controlateral side) the fracture is sure. 2) If you combine plain Xrays of the the wrist with scintigraphy the fracture is automatically located. This previous report pointed that repeat set of scaphoid views, dynamic and static, Ct scan, proved unsuitable for screening occult fractures of the wrist.
quantification of uptake: uptake two-fold greater on the injured side is a sign of «certain» fracture; software superposition of the scintigraphic image and the radiographic image used to localize the bone fracture.