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[Architecture of cancellous tissue of the scaphoid bone of the wrist].

The experimental-theoretical studies were performed to investigate the structure of substantia spongiosa of the scaphoid bone of the wrist. Morphological prerequisites for the typical fractures of scaphoid bone and for their delayed consolidation, as well as for the false joint development in some of its zones were found. The peculiarities in the structure of substantia spongiosa associated with the differences of magnitudes and directions of the loads applied to the various regions of scaphoid bone, were distinguished. On the basis of the results obtained, functional zones and two major force vectors were detected, that were shown to determine different biomechanical conditions under which scaphoid bone of the wrist was functioning.

Adult↗

[Clinical problems in fracture of the scaphoid bone].

UNLABELLED: The following specific characteristics of injury cause the problems that occur in scaphoid bone fractures: 1. Mechanisms of accident: There are only a few typical circumstances that cause the injury: as there are false winding of a shrankshaft handle or a fall on the extended hand. In all the other cases the accident is neither realized by the injured person himself or by the physician. As a consequence the possibility of injury of the scaphoid bone is not taken into consideration. 2. SYMPTOMS: In a stable fracture the symptoms do not appear directly but may be clearly delayed or they may disappear very quickly after a short period of intensity, so that the accident is no longer taken any notice of. 3. Radiodiagnostics: Because of the anatomic position of the scaphoid bone any X-raying from a lateral view is difficult because the scaphoid is covered by other carpal bones. In case of an undisplaced fracture you often only see very fine fracture lines, which are only to be seen from a direct orthograde view. It is necessary to X-ray the carpus in different positions. 4. THERAPY: If there is the slightest chance of a scaphoid bone fracture an intensive therapy must be directly started. An immobilisation for a too short period may lead to a delayed union and end in a pseudarthrosis. This is also the case if you start the therapy too late. Then the fracture line is already filled up by fibrous tissue. The latest period of time to begin a conservative treatment is six to eight weeks after the day of the accident.(ABSTRACT TRUNCATED AT 250 WORDS)

Carpal Bones↗

Small free vascularized iliac crest bone grafts in reconstruction of the scaphoid bone: a retrospective study in 60 cases.

Carpal instability may result in progressive degenerative arthritis of the wrist. The surgical goal of the reconstruction of scaphoid nonunion is to achieve bone union and to restore the scaphoid. Many procedures are described to treat scaphoid nonunion for different indications. This retrospective study reports on the anatomical fundamentals, the operative procedure, and the results of 60 patients (21 with recalcitrant scaphoid nonunion that lasted longer than 4 years, 26 with an avascular pole fragment, and 13 with scaphoid nonunion after previous surgery) who were treated by a small free vascularized iliac crest bone graft. All 60 patients have routinely been followed up clinically and with magnetic resonance imaging. Union was achieved in 91.7 percent by improvement of stability and the compromised vascularity of the scaphoid. The bone flap loss rate and persisting nonunion was 8.3 percent, leading to progressive arthritis and carpal collapse. Complaints concerning discomforts caused by the scar were heard from 40.1 percent of the patients, and 31.7 percent complained of discomforts caused by the bony deformity. Bone deformations on the donor site were detected radiologically in 63.3 percent of the patients. In 31.7 percent, an impairment of the lateral femoral cutaneous nerve was noted. Reconstruction of the scaphoid by means of implantation of a vascularized iliac bone graft proved efficient to treat avascular recalcitrant scaphoid nonunion and pseudarthrosis with avascular proximal pole fragments.

Adolescent↗

[Fracture of the scaphoid bone--surgical treatment, indications, method and results].

In fractures of the scaphoid bone, conservative treatment leads to an osseous consolidation in 95% of all cases. A primary surgical treatment seems justified in case of instability by torsion, tilting, or shifting of the fragments, associated fractures of the same arm, as well as de Quervain dislocation fracture. The different surgical possibilities are described and the complications are compiled in a special study. The question if a recent fracture of the scaphoid bone should be managed by conservative or surgical treatment ist not justified considering the rate of 14.5% of complications, i.e. formation of pseudarthroses, observed after surgery of recent fractures of the scaphoid bone.

Carpal Bones↗

[Role of wrist instability in the onset of pseudoarthrosis of the scaphoid bone].

INTRODUCTION: The most common fracture involving the wrist is a fracture of the scaphoid bone. Fracture of the scaphoid most frequently occurs in young adult male and usually involves the wrist of the scaphoid. There is a universal agreement that the majority of these fractures will heal if immobilized property and for a long period of time [1, 2]. In the treatment of these fractures much attention has been payed to bone damage and not to associated ligament injury. It is reported that the incidence of nonunion of scaphoid fractures is ten per cent and that the frequency of this complication remains essentially unchanged [3, 4]. Failure to improve the outcome suggests that the mechanisms and causes of this complication are poorly understood. Explanations of nonunion or delayed union of scaphoid bone are: poor initial treatment or even no treatment [3], delayed diagnosis [5], fragments displacement [5-8], improper immobilization [9], site and direction of the fracture [3] and wrist instability [8, 10]. AIM: The study was undertaken to analyse the influence of carpal instability on the development of scaphoid nonunion. METHOD: The study concerned 40 patients with painful nonunions of the scaphoid bone. Duration of nonunion was 1.43 year. There were 37 (92%) male and 3 (8%) female patients. Site and direction of the fracture, initial treatment and carpal collaps were analysed. Data processing was done for all examined patients (Table 1). RESULTS: Dominant hand was involved in 24 (60%) patients and nondominant hand in 16 (40%) subjects. Carpal collaps was present in 68% of patients. There were 14 (35%) untreated patients (Graph 1). Untreated fractures were statistically insignificant regarding the intensity of carpal collaps (p = 0.101; p > 0.05). The physical examination usually revealed focal tenderness, a palpable click with ulnar deviation, abnormal antero-posterior mobility with passive range of motion or a combination of these findings. Standard X-rays evaluated fracture location and carpal instability or collaps. There were 14 (35%) proximal third located fractures and 26 (65%) in the middle third of wrist (Graph 2). There was no statistically significant correlation between location of the fracture and presence of carpal collaps (p = 0.081; p > 0.05). DISCUSSION: There were 35 per cent overlooked fractures. Delay in diagnosis of a scaphoid fracture has been suggested as a significant factor in the development of nonunion [5, 7]. However, in our series of nonunions, non treatment does not occur frequently enough to be the critical factor. Most series report about 2/3 of nonunions occurring at the wrist [7, 9]. Our series shows a similar distribution, arguing against site as a critical factor. There appears to be a nearly uniform rate of nonunion in most of the reported series [7, 15, 16], regardless of the position of the wrist, whether or not the thumb was immobilized. Evidence of ligamentous injury in our series led us to conclude that scaphoid nonunion is consistently associated with carpal instability pattern. In our series 68% of nonunions associated with carpal collaps were present. We found no statistically significant correlation between carpal collaps and nontreated fractures or location of fracture site. Therefore, we concluded that carpal collaps was consistently present and, thus the critical factor in wrists with ununited scaphoid fractures.

Adolescent↗

Aseptic necrosis of unilateral scaphoid bone in systemic lupus erythematosus.

An SLE patient developed aseptic necrosis of the right scaphoid bone 4 years after an episode of aseptic necrosis of bilateral femoral heads caused by corticosteroid treatment. Since the aseptic necrosis of the right scaphoid bone was preceded by the insidious exacerbation of SLE as evidenced by facial erythema, it was considered to be a result of vasculopathy due to active SLE. It took 14 months to make a correct diagnosis of the aseptic necrosis of the scaphoid bone by a chanced roentgenogram for the routine evaluation for osteoporosis. Therefore, the importance of an awareness of this possibility and repeated radiographic examinations is emphasized for the correct diagnosis of joint manifestations in SLE.

Adult↗

Biomechanical measurements on scaphoid bone screws in an experimental model.

A number of screws commonly used for internal fixation in scaphoid bone fractures and nonunions are compared regarding biomechanical properties and clinical applicability. The experiments were carried out on models made of ash-wood, representing a reconstruction and fixation as is performed in a cortico-cancellous inlay bone graft for scaphoid non-union. For fixation use was made of 2.7 and 3.5 AO/ASIF cortical screws respectively, 4.0 AO/ASIF cancellous screws, Herbert screws, and a newly designed screw called the three components screw (D.K.S.). The models with implanted screws were tested for bending strength, tensile strength and torsion stability. No large differences between the various screws were found regarding the measured parameters, so that a small intra-osteal implant such as the Herbert screw and the D.K.S., which can be inserted easily and which gives a certain amount of interfragmentary compression, will be sufficient for osteosynthesis of the scaphoid bone. In case an intra-osteal implant is not available a single 3.5 AO/ASIF cortical screw, inserted following lag-screw principles, is recommended.

Alloys↗

[Alloplastic partial replacement of the scaphoid bone].

Operative treatment for non-union of the carpal scaphoid bone with a small proximal fragment often presents some difficulties. A complete Silastic carpal scaphoid replacement does not always fit well because the shape and dimensions of the implant differ from the natural carpal scaphoid bone. The proximal fragment looks more like the lunate bone and so a Silastic carpal lunate implant may be used to replace the proximal fragment of the scaphoid while the well preserved distal fragment remains in place. This prevents disturbance of the intercarpal joint composition and improves stability of the base of the thumb. Five patients have been treated in this manner. The procedure is described in detail.

Arthroplasty↗

[The Matti-Russe method of treatment of ununited fractures of the scaphoid bone].

The authors present their experience with treatment of scaphoid non-unions by the operation according to Matti-Russe. They compare their results with those of other authors and present a relatively high number of successfully treated patients with stable non-unions localized in the midline of the scaphoid bone as well as a high patient satisfaction rate with this method of treatment. The disadvantage of this treatment is long-term cast immobilization of the wrist and poor results in treatment of unstable non-unions and those localized in the proximal portion of the scaphoid bone. They conclude, that at present, it is more effective to support the surgery by osteosynthesis with an adequate implant and thus shorten the immobilization period in a cast.

Adolescent↗

[Incidence and severity of degenerative changes in the wrist in pseudoarthrosis of the scaphoid bone]].

INTRODUCTION: In patients with symptomatic scaphoid nonunion there was an increased evidence of progressive osteoarthrosis expressed as instability of the wrist [1, 2]; it is defined as a scapholunate angle of more than 70 degrees or a radiolunate angle of more than 10 degrees. Intercarpal instability causes unnatural joint movement of the wrist. This disorganization of the wrist mechanism associated with hypermobility of the schapoid bone induces degenerative changes [3]. Arthritic changes begin at the distal scaphoid-radial styloid joint and later progress to the capitolunate joint. A similarity was noted with rotatory instability of the scaphoid bone associated without fracture [2]. If mid-carpal joint exists the joint becomes unstable, the lunate rotates backwards and carpal bones show the so-called concertina deformity [4] or dorsal intercalated segment instability pattern [5]. AIM: We tried to determine the factors of risk and prognostic indicators of degenerative arthritis. METHOD: In this study 40 patients with painful nonunion of the scaphoid bone were analysed. Duration of nonunion was 1.43 year (range from 8 months to 15 years). Roentgenograms of the hand were done in anteroposterior, lateral and oblique projections. Fracture location and configuration were determined as described by Russe. Instability was determined by measuring the scapholunate and radiolunate angle in the lateral roentgenogram. Scapholunate angle more than 70 degrees and radiolunate angle more than 10 degrees were considered abnormal. To asses the amount of carpal collapse the carpal index was determined as described by Youm [6]. Abnormal value was 0.50 or less (normal value: 0.54 +/- 0.03). Four roentgenographic groups were established based on the extent of degenerative changes [7]. Group I showed no sign of degenerative changes. Group II had sclerotic lesions in fracture margins with or without a cystic formation. Group III showed lesions of radioscaphoid arthritis, including joint-space narrowing and pointing the radial styloid. Group IV had lesions of generalized arthritis of the wrist. RESULTS: Duration of nonunion was not in correlation with development of osteoarthritic changes (p = 0.644, p > 0.05) (Table 1). Progressive degenerative changes correlated well with radiolunate angle (p = 0.398, p < 0.05), capitolunate angle (p = 0.381, p < 0.05) and carpal index (p = 0.392, p < 0.05) (Table 2). The average values of intercarpal angles increased with progression of osteoarthritic changes (Table 3). There were 14 (35%) proximal third located fractures and 26 (65%) in the middle third or waist. There was a statistically strong correlation between location of the fracture in proximal third and presence of degenerative changes (p = 0.341, p < 0.01) (Table 4). Intensity of arthritic changes showed no statistically significant correlation regarding untreated fractures (p = 0.665, p > 0.05). DISCUSSION: In our study the most significant factors associated with arthritis were instability of the wrist and fracture location at the proximal third of the scaphoid bone. Mack [7] reviewed forty-seven symptomatic nonunions of the scaphoid and found a correlation between the presence of arthritis and the duration of nonunion. Also, he concluded that instability of the wrist can occur as late phenomenon in previously stable nonunion. Similar results were noted by Ruby [8] in his series. Conclusion of these authors was that the incidence of degenerative changes increased with the time after fracture of the scaphoid bone occurred [8-12]. We demonstrated that in untreated fractures associated with carpal instability, arthritis developed much earlier. Fourteen (35%) patients in our study were not treated and 92.8% belonged to Group II and Group III, with average time of nonunion duration of 27.2 months. Lunate dorsiflexion is a useful guide to carpal instability. In our experience the lunate silhouette is easily visualized on a lateral roentgenogram even in the presence of degenerative arthritis. There is a high probability that degenerative changes will occur. We recommend that a scaphoid nonunion associated with carpal instability should be operated before degenerative changes develop.

Disease Progression↗

[Assessment of scaphoid bone fracture (author's transl)].

The article discusses, first of all, the reasons for a failure to detect a fresh fracture of the scaphoid bone which may be ascribed to the patient himself or of an iatrogenic nature. This is followed by guidelines for early detection of scaphoid fracture on the basis of the course taken normally by a fresh but untreated fracture of the scaphoid bone, thus providing pointers towards clarifying whether the fracture has a causal connection with a claimed accident. Signs of strengthening of the treated fresh scaphoid fracture are explained. Hints for the possible need for surgical treatment are derived from a differentiation between the traumatic cavity of the scaphoid bone and covered pseudarthrosis.

Adult↗

[Pseudoarthrosis of the scaphoid bone associated with carpal collapse: factors in choice of surgical approach].

INTRODUCTION: The most common fracture involving the wrist is a fracture of the scaphoid bone [1], and only 5% to 10% of these fractures proceed to nonunion. Although not symptomatic initially, most (if not all) nonunions later produce a painful wrist with impaired function, clinically significant loss of motion, increased weakness and degenerative arthritis. Nonunion of the scaphoid bone should be treated by open reduction and internal fixation. Many surgical procedures have been advocated to achieve union. Most widely used technique for the treatment of scaphoid nonunion was described by Russe [2], but this method may overcome the flexion deformity of the scaphoid and carpal deformities. The ununited scaphoid usually undergoes resorption of the fractures surfaces, principally over the anterolateral aspect of the fracture, so that the scaphoid becomes misshapen. The restoration of the exact length and form is enabled by insertion of a tight-fitting trapezoidal corticocancellous graft, a technique described by Fernandez [11]. AIM: We analysed the results of treatment of scaphoid nonunion utilized by two bone-grafting techniques and pointed out the need of choice of the best operative method. METHODS: From 1977 to 1993, at the Institute of Orthopaedic Surgery and Traumatology in Belgrade, 40 patients were surgically treated for symptomatic nonunion of the scaphoid bone. The mean duration of follow-up was 10.2 years (range, from 6 to 22 years). Eighteen (45%) patients were operated by Fernandez technique and 22 (55%) patients were operated using Russe's technique. Volar approach and Kirschner's wire fixation were performed in both operative methods. We used two rating scales proposed by Cooney [13] to evaluate the results. Objective scale (Table 1a) included the radiographic appearance of the wrist, the range of motion and grip strength. Subjective scale (Table 1b) comprised function, pain perception of a decrease in performance because of limited motion or strength, and satisfaction. These scales were used to compare the objective and subjective results in patients who had postoperatively carpal collapse with the results in patients who had not such deformity. RESULTS: The union rate was 92.5% in both methods. Russe's technique resulted in union in 20 (91%) of 22 cases with two ununited. Fernandez technique achieved union in 17 (94%) of 18 cases. Fracture union was determined by both clinical and roentgenographic examinations. Correction of the lateral interscaphoid angle was obtained in 14 (82%) patients operated by Fernandez technique and 9 (45%) patients operated by Russe's technique. Correction of dorsal tilt of the lunate were achieved in 6 (30%) patients operated by Russe's technique, and 13 (76.6%) patients operated by Fernandez technique. There was a highly significant correlation (p < 0.01) between increased deformity of the scaphoid and extent of carpal collapse (Graph 1). Also, there was significant difference between two operative techniques regarding correction of lateral interscaphoid angle (p < 0.05). Arthrosis of the wrist was present in all patients. We could not demonstrate a significant difference (p > 0.05) between intensity of degenerative changes and increase of lateral interscaphoid angle, but obviously, the large flexion deformity of the scaphoid the worse intensity of degenerative changes (Graph 2). The grip strength significantly increased after Fernandez technique (p > 0.05) (Graph 3), but wrist motion changed a little. The average objective score was 71 points for the patients in whom the lateral interscaphoid angle was 45 degrees or less, and 63 points for those in whom the angle was more than 45 degrees. This difference was significant (p < 0.05), but we could not demonstrate a significant difference between the two groups in terms of the average subjective score. DISCUSSION: In our series, both procedures provided a high union rate [2]. In cases with severe scaphoid shortening and flexion deformity, Russe's procedure has proved to be insufficient to restore anatomic length and correction of carpal alignment [6, 11, 17]. Previous authors have reported that the progression in degenerative changes was slower in patients who had a lateral interscaphoid angle less than 45 degrees [13]. Also, grip strength and range of motion increased in patients in whom flexion deformity of the scaphoid had been corrected [2, 4, 6, 16, 17]. Our study supports these findings, except results regarding the movement. We believe that this was due to postoperative scarring. Discrepancy between the subjective and objective results may have been due to postoperative relief of pain obtained by increased carpal stability or decreased range of motion of the carpal joints due to postoperative scarring. If pain is relieved, patients readily adapt to the functional deficit of decreased range of motion. We concluded that angulatory collapse of the scaphoid resulted in nonunion as well as malunion with secondary functional loss. Recognition and avoidance in acute fractures were important. When recognised late, volar wedge grafting appeared to be a satisfactory method of treatment.

Adolescent↗

Scanning and radiology of the carpal scaphoid bone.

The value of isotope scanning in patients with suspected fracture of the scaphoid bone of the wrist was examined. For this purpose comparable examinations were made of 50 patients using both radiography and isotope scanning. With a normal scan, the suspicion of fracture or other bone diseases can be excluded. Increased focal activity corresponding to the region of the scaphoid bone indicates the possibility of a fracture, even if a fracture cannot be seen in the initial X-rays.

Adolescent↗

[Pseudarthrosis of the scaphoid bone and carpal instability. Correlations--development--consequences].

In combination with its ligamentous connections, the scaphoid bone represents an essential stabilizing factor within the wrist. This stabilizing function disappears after trauma causing a displaced fracture of the scaphoid bone or extensive rupture of ligamentous structures fixing the scaphoid in its position. Hence carpal instability results, detectible radiographically by alteration of defined wrist angles. Since this is so, one might suppose that, together with other wellknown reasons, carpal instability would be of great importance in the development of a scaphoid nonunion. However, after evaluation of 76 cases, a scaphoid nonunion with carpal instability was found in only 27.6%. Moreover, surgical treatment of the scaphoid nonunion alone does not correct the abnormal wrist angles. Despite this observation, we do not consider simultaneous ligamentous repair to be necessary, because few problems remained after bony healing in such cases.

Adolescent↗

[Luxations and subluxations of the scaphoid bone].

The rare occurrence and the difficulties in diagnosis make partial and total luxations of the scaphoid to a problematic chapter in hand surgery. The main part in diagnosis lies in the correct interpretation of the X-ray pictures from which the different formes of displacement may be recognized. These include isolated luxations of scaphoid in palmar, radial or dorsal directions, varying degrees of scapho-lunate subluxations and luxations and the special type of isolated subluxation of the scaphoid bone. In the first part of the paper the diagnostic criteria and in particular the radiologic signs are described. Most important is the recognition of the alteration in the shapes of the scaphoid bone due to its tilting on several axes and the overlapping of its outline with that of the adjacent bones. The displacement of the whole carpal region can extend as far distal as the metacarpals. A diastasis of the scaphoid and lunate is typically due to rupture of the ligaments between these bones and the radius.

Arthrodesis↗

[Fracture types and fragment dislocations of the scaphoid bone of the hand].

Fractures of the scaphoid bone are nowadays better known and treated. However, the types of fractures and fragment dislocations are not well described. The authors analysed 325 fresh and old scaphoid fractures and describe six basic types, clearly defined by location and direction of the fracture line. In fresh cases, the dislocation is mainly rotational. In older cases there is an additional bone resorption. The six basic types of fracture lines are demonstrated radiologically and the course of untreated cases is shown.

Carpal Bones↗