| Literature DB >> 31727107 |
Sheng Yao1, Kaifang Chen1, Yanhui Ji2, Fengzhao Zhu1, Lian Zeng1, Zekang Xiong1, Tingfang Sun1, Fan Yang3, Jia Liu4, Xiaodong Guo5.
Abstract
BACKGROUND: To compare the efficacy of the operative techniques, complications, reduction quality and hip functional recovery by using the supra-ilioinguinal approach and the modified Stoppa approach for the management of acetabular fractures.Entities:
Keywords: Acetabular fractures; Modified Stoppa approach; Quadrilateral plate; Supra-ilioinguinal approach
Mesh:
Year: 2019 PMID: 31727107 PMCID: PMC6854625 DOI: 10.1186/s13018-019-1428-y
Source DB: PubMed Journal: J Orthop Surg Res ISSN: 1749-799X Impact factor: 2.359
Patient demographics
| Supra-ilioinguinal | Modified Stoppa | Test value | ||
|---|---|---|---|---|
| Age (years) | 43.4 (23–71, 13.6) | 44.5 (23–78, 14.4) | 0.314 | 0.754# |
| Male gender | 26 (72.2%) | 16 (66.7%) | 0.212 | 0.645* |
| Mechanism of injury | 0.100 | 0.752* | ||
| Traffic accident | 18 (50.0%) | 13 (54.2%) | ||
| Fall from height (≧ 3 m) | 18 (50.0%) | 11 (41.9%) | ||
| Fracture classification | 0.670 | 0.955* | ||
| AC + AW | 4 (11.1%) | 3 (12.5%) | ||
| Transverse | 5 (13.9%) | 3 (12.5%) | ||
| T-type | 5 (13.9%) | 5 (20.8%) | ||
| ACPHT | 9 (25.0%) | 6 (25.0%) | ||
| Both column | 13 (36.1%) | 7 (29.2%) | ||
| Multiple injuries | 0.791 | 0.978* | ||
| Pelvic fracture | 7 (19.4%) | 5 (20.8%) | ||
| Extremity fracture | 7 (19.4%) | 3 (12.5%) | ||
| Spine fracture | 1 (2.8%) | 1 (4.2%) | ||
| Pleural effusion | 11 (30.6%) | 9 (37.5%) | ||
| Craniocerebral injury | 2 (5.6%) | 1 (4.2%) | ||
| Time to surgery (days) | 7.1 (3–20, 3.4) | 7.2 (3–15, 3.0) | 0.097 | 0.923# |
Categorical variables are given as absolute numbers with percentages in parentheses. Noncategorical variables are given as mean (range, SD)
AC anterior column, AW anterior wall, ACPHT anterior column with posterior hemitransverse
*Pearson Chi-square test
#Two independent samples Student’s t test
Fig. 1Schematic graph of the supra-ilioinguinal approach (a). The incision starts at the lateral one fourth of the line connecting the umbilicus with the ASIS and ends at the medial thirds of the line connecting the ASIS and the symphysis. The incision line postoperative (b)
Fig. 2Surgical visualization of the supra-ilioinguinal approach. I, II and III were the first to the third window, respectively (a). An infra-pectineal plate through the medial window of the supra-ilioinguinal approach (b)
Fig. 4Male, 24 years old, high falling injury, fracture of the anterior column, upper posterior column, pubic and iliac bone. The operation was managed by the supra-ilioinguinal approach. Anteroposterior (AP) position of pre-operation (a). Three-dimensional (3D) AP projection and 3D reconstructed Judet views before the operation (b–d). Anteroposterior position of post-operation (e). Two years post-operation, AP view after removing all the internal fixation (f)
Fig. 3The measurement of residual displacement. The measurement of step (of 2.04 mm) is obtained by the difference between the distance from the most displaced fragment to the centre (of 24.91 mm) of the circle template and the radius of the circle template (of 22.87 mm) (a). The gap displacement (of 5.69 mm) is measured in-line with a digital circular template created to match the intact (or largest) portion of the acetabular dome (b)
Observed indicators of the two groups during the surgery
| Supra-ilioinguinal | Modified Stoppa | Test value | |||
|---|---|---|---|---|---|
| Operative time (min) | 185.7 ± 38.9 | 212.5 ± 51.3 | 2.298 | 0.025# | |
| Intraoperative haemorrhage | 801.9 ± 332.4 | 1087.5 ± 366.3 | 3.129 | 0.003# | |
| (ml) | |||||
| Iliac window | - | 20 (83.3%) | * | ||
| Additional KL | 8 (22.2%) | 7 (29.2%) | 0.370 | 0.543* | |
| Complications | 0.741** | ||||
| DVT | 2 (5.6%) | 1 (4.2%) | |||
| LFCNI | 3 (8.3%) | – | |||
| Fat liquefaction of incision | 1 (2.8%) | 2 (8.3%) | |||
| Obturator nerve palsy | – | 1 (4.2%) | |||
| Vascular injury | – | 1 (4.2%) | |||
| Total rate | 6 (16.7%) | 5 (20.8%) | 0.167 | 0.683* | |
Categorical variables are given as absolute numbers with percentages in parentheses. Noncategorical variables are given as mean ± SD
KL Kocher-Langenbeck approach, DVT deep vein thrombosis, LFCNI lateral femoral cutaneous nerve injury
*Pearson Chi-square test
**Fisher’s exact test
#Two independent samples Student’s t test
The imaging and clinical results among the two groups
| Supra-ilioinguinal | Modified Stoppa | Test value | ||
|---|---|---|---|---|
| CT measurement (mm) | ||||
| Mean gap | 3.7 (0.5–9.2, 1.7) | 3.8 (0.4–10.1, 2.0) | 0.213 | 0.832# |
| Mean step | 0.8 (0–4.3, 0.8) | 1.0 (0–7.3, 1.5) | 0.660 | 0.512# |
| Radiological outcome (Matta) | 0.052 | 0.974* | ||
| Anatomical (< 1 mm) | 22 (61.1%) | 14 (58.3%) | ||
| Imperfect (2–3 mm) | 10 (27.8%) | 7 (29.2%) | ||
| Poor (> 3 mm) | 4 (11.1%) | 3 (12.5%) | ||
| Merle D’Aubigne-Postel score | 0.238 | 0.971* | ||
| Excellent (18) | 20 (55.6%) | 12 (50.0%) | ||
| Good (15–17) | 12 (33.3%) | 9 (37.5%) | ||
| Fair (13, 14) | 3 (8.3%) | 2 (8.3%) | ||
| Poor (< 13) | 1 (2.8%) | 1 (4.2%) | ||
Data are presented as means (range, SD) in millimetres of the gaps/steps measurements (CT scan evaluation). The radiological outcome and clinical results are presented as number (percentage)
*Pearson Chi-square test
#Two independent samples Student’s t test