This study was performed to determine whether
pure cancellous bone graft and Kirschner (K-) wire fixation were sufficient
to achieve bony union and restore alignment in scaphoid nonunion.
A total of 65 patients who underwent cancellous bone graft and K-wire
fixation were included in this study. The series included 61 men
and four women with a mean age of 34 years (15 to 72) and mean delay
to surgery of 28.7 months (3 to 240). The patients were divided
into an unstable group (A) and stable group (B) depending on the
pre-operative radiographs. Unstable nonunion was defined as a lateral
intrascaphoid angle >
45°, or a radiolunate angle >
10°. There were
34 cases in group A and 31 cases in group B. Bony union was achieved
in 30 patients (88.2%) in group A, and in 26 (83.9%) in group B
(p = 0.439). Comparison of the post-operative radiographs between
the two groups showed no significant differences in lateral intrascaphoid
angle (p = 0.657) and scaphoid length
(p = 0.670) and height (p = 0.193). The radiolunate angle was significantly
different
(p = 0.020) but the mean value in both groups was <
10°. Comparison
of the dorsiflexion and palmar flexion of movement of the wrist
and the mean Mayo wrist score at the final clinical visit in each
group showed no significant difference (p = 0.190, p = 0.587 and
p = 0.265, respectively). Cancellous bone graft and K-wire fixation
were effective in the treatment of stable and unstable scaphoid
nonunion. Cite this article:
We undertook this study to determine the minimum
amount of coronoid necessary to stabilise an otherwise intact elbow
joint. Regan–Morrey types II and III, plus medial and lateral oblique
coronoid fractures, collectively termed type IV fractures, were
simulated in nine fresh cadavers. An electromagnetic tracking system
defined the three-dimensional stability of the ulna relative to
the humerus. The coronoid surface area accounts for 59% of the anterior articulation.
Alteration in valgus, internal and external rotation occurred only
with a type III coronoid fracture, accounting for 68% of the coronoid
and 40% of the entire articular surface. A type II fracture removed
42% of the coronoid articulation and 25% of the entire articular
surface but was associated with valgus and external rotational changes
only when the radial head was removed, thereby removing 67% of the
articular surface. We conclude that all type III fractures, as defined here, are
unstable, even with intact ligaments and a radial head. However,
a type II deficiency is stable unless the radial head is removed.
Our study suggests that isolated medial-oblique or lateral-oblique
fractures, and even a type II fracture with intact ligaments and
a functional radial head, can be clinically stable, which is consistent
with clinical observation.