| Literature DB >> 33743029 |
Yoann Bohu1, Pierre Abadie2, Floris van Rooij3, Luca Nover3, Julien Berhouet4, Alexandre Hardy5,6.
Abstract
PURPOSE: Systematic reviews report return to play (RTP) within 5.8 months (range, 3-8) following the Latarjet procedure, but the factors that influence RTP remain unknown. The present study aimed to report the rate and time of return to play (RTP) during the first 8 months following the Latarjet procedure, and to determine the influence of sport type or patient characteristics.Entities:
Keywords: Anterior shoulder instability; Latarjet; Return to play
Year: 2021 PMID: 33743029 PMCID: PMC8298242 DOI: 10.1007/s00167-021-06475-1
Source DB: PubMed Journal: Knee Surg Sports Traumatol Arthrosc ISSN: 0942-2056 Impact factor: 4.342
Patient demographics
| Cohort | ||
|---|---|---|
| Range | ||
| Age at operation (years) | 26.8 ± 7.3 | (15–62) |
| BMI (kg/m2) | 23.8 ± 3.0 | (18–39) |
| Years from first dislocation to surgery | 4.4 ± 4.9 | (0–26) |
| Male sex | 184 (85%) | |
| Operation on dominant arm | 109 (50%) | |
| Work activity level | ||
| Active | 97 (45%) | |
| Semi-sedentary | 45 (21%) | |
| Sedentary | 75 (35%) | |
| Type of sport | ||
| Overhead—contact | 136 (63%) | |
| Overhead—non-contact | 37 (17%) | |
| Non overhead—contact | 16 (7%) | |
| Non overhead—non-contact | 28 (13%) | |
| Accident during sport | 182 (84%) | |
| Accident due to | ||
| Fall on shoulder | 78 (36%) | |
| Fall on elbow | 20 (9%) | |
| Movement without fall | 77 (35%) | |
| Contact without fall | 39 (18%) | |
| Unknown | 3 (1%) | |
| Preoperative dislocation episodes | ||
| 1 | 74 (34%) | |
| 2–6 | 132 (61%) | |
| 7 or more | 11 (5%) | |
| Preoperative subluxation episodes | ||
| 1 | 53 (24%) | |
| 2–6 | 73 (34%) | |
| 7 or more | 91 (42%) | |
| Hill–Sachs lesion | 99 (46%) | |
| Glenoid anterior defect | 103 (47%) | |
Postoperative evaluation by preoperative sport type
| Entire cohort | Overhead | Non overhead | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Contact | Non-contact | Contact | Non-contact | |||||||||
| Mean ± SD | Range | Mean ± SD | Range | Mean ± SD | Range | Mean ± SD | Range | Mean ± SD | Range | |||
| Type of Surgery | n.s | |||||||||||
| Mini-open | 196 (90%) | 127 (93%) | 30 (81%) | 14 (88%) | 25 (89%) | |||||||
| Arthroscopic | 23 (11%) | 9 (7%) | 7 (19%) | 2 (13%) | 3 (11%) | |||||||
| Immobilization (weeks) | 2.4 ± 0.8 | (2.0–6.0) | 2.4 ± 0.7 | (2.0–4.0) | 2.6 ± 1.0 | (2.0–6.0) | 2.3 ± 0.5 | (2.0–3.0) | 2.3 ± 0.9 | (2.0–6.0) | n.s | |
| Completed rehabilitation program | 140 (65%) | 94 (69%) | 21 (57%) | 9 (56%) | 16 (57%) | n.s | ||||||
| Return to preoperative sport | 158 (73%) | 99 (73%) | (2.1–8.0) | 23 (62%) | 14 (88%) | 22 (79%) | n.s | |||||
| Time to return to sport (months) | 5.1 ± 1.5 | (2.1–8.0) | 5.0 ± 1.5 | 5.3 ± 1.5 | (2.6–8.0) | 5.2 ± 1.7 | (2.9–7.9) | 5.2 ± 1.5 | (2.6–8.0) | n.s | ||
| WOSI score | ||||||||||||
| Preoperative | 55 ± 21 | (9–98) | 55 ± 21 | (9–98) | 57 ± 20 | (18–95) | 53 ± 15 | (21–76) | 53 ± 22 | (14–88) | n.s | |
| Postoperative | 86 ± 13 | (31–100) | 86 ± 14 | (31–100) | 88 ± 14 | (38–100) | 79 ± 17 | (51–97) | 84 ± 9 | (14–88) | n.s | |
| Net improvement | 32 ± 24 | (−32–91) | 33 ± 25 | (−32–91) | 31 ± 22 | (-30–63) | 25 ± 24 | (−2–60) | 32 ± 20 | (14–88) | n.s | |
| SIRSI score | ||||||||||||
| Preoperative | 51 ± 26 | (0–100) | 52 ± 27 | (0–95) | 42 ± 27 | (0–100) | 51 ± 23 | (17–90) | 58 ± 23 | (20–97) | n.s | |
| Postoperative | 70 ± 23 | (8–100) | 69 ± 25 | (8–100) | 78 ± 19 | (27–98) | 73 ± 17 | (42–93) | 68 ± 21 | (30–100) | n.s | |
| Net improvement | 20 ± 35 | (−68–90) | 19 ± 36 | (-68–90) | 32 ± 31 | (-15–87) | 24 ± 36 | (-35–60) | 12 ± 33 | (-57–57) | n.s | |
| ROWE score | ||||||||||||
| Preoperative | 52 ± 25 | (5–100) | 53 ± 26 | (5–100) | 46 ± 21 | (10–100) | 51 ± 15 | (25–70) | 56 ± 26 | (15–100) | n.s | |
| Postoperative | 87 ± 16 | (15–100) | 86 ± 17 | (15–100) | 89 ± 16 | (40–100) | 86 ± 14 | (60–100) | 88 ± 13 | (70–100) | n.s | |
| Net improvement | 33 ± 30 | (−85–95) | 30 ± 33 | (−85–95) | 41 ± 21 | (-5–75) | 34 ± 22 | (−10–65) | 35 ± 25 | (0–85) | n.s | |
Fig. 1Following the Latarjet procedure, patients started resuming their main sport during the third postoperative month, and by the eight postoperative month, 73% of patients had resumed their main sport
Fig. 2Pre- and postoperative WOSI score by type of sport
Uni- and multivariable regression analysis for likelihood of return to sport
| Return to Sport (158 events on 217 followed up shoulders) | ||||||
|---|---|---|---|---|---|---|
| Univariable | Multivariable ( | |||||
| OR (95% C.I.) | OR (95% C.I.) | |||||
| Age | 0.97 | (0.94–1.01) | 0.97 | (0.92–1.04) | ||
| BMI | 1.03 | (0.09–16.44) | 0.97 | (0.86–1.10) | ||
| Male sex | 1.20 | (0.51–2.64) | 0.57 | (0.18–1.59) | ||
| Type of sport | ||||||
| Overhead—contact | REF | |||||
| Overhead—non-contact | 0.61 | (0.29–1.34) | 0.65 | (0.23–1.86) | ||
| Non overhead—contact | 2.62 | (0.69–17.17) | 2.17 | (0.50–15.25) | ||
| Non overhead—non-contact | 1.37 | (0.54–3.96) | 0.90 | (0.28–3.24) | ||
| Dislocation episodes | ||||||
| 1 | REF | |||||
| 2–6 | 1.10 | (0.58–2.06) | 1.46 | (0.65–3.31) | ||
| 7 or more | 1.06 | (0.28–5.17) | 2.99 | (0.54–25.00) | ||
| Time from first dislocation to surgery | 1.00 | (0.94–1.06) | 1.05 | (0.96–1.16) | ||
| Completed rehabilitation program | − 0.41 | (0.34–1.25) | 0.68 | (0.29–1.54) | ||
| Type of surgery | ||||||
| Latarjet | REF | |||||
| Latarjet + anterior capsuloplasty | 0.90 | (0.50–1.65) | 0.73 | (0.34–1.56) | ||
| Preoperative WOSI | 1.01 | (0.99–1.02) | 0.99 | (0.97–1.01) | ||
| Preoperative SIRSI | 1.01 | (1.00–1.02) | 1.02 | (1.01–1.04) | 0.008 | |
| Preoperative ROWE | 1.02 | (1.00–1.03) | 0.014 | 1.02 | (1.00–1.04) | 0.024 |
C.I. Confidence interval
Uni- and multivariable regression analysis for time (months) to return to sport
| Variables | Return to Sport (158 patients of 217 followed up shoulders) | |||
|---|---|---|---|---|
| Univariable | Multivariable ( | |||
| Age | 0.0 (0.7–0.3) | n.s | 0.0 (0.0–0.1) | |
| BMI | 0.0 (0.0–0.0) | n.s | 0.1 (0.0–0.2) | n.s |
| Male sex | − 0.2 (− 0.9–0.5) | n.s | − 0.5 (− 1.3–0.4) | n.s |
| Type of sport | ||||
| Overhead—contact | REF | |||
| Overhead—non-contact | 0.2 (− 0.5–0.9) | n.s | 0.4 (− 0.4–1.3) | n.s |
| Non overhead—contact | 0.2 (− 0.7–1.0) | n.s | 0.3 (− 0.7–1.3) | n.s |
| Non overhead—non-contact | 0.1 (− 0.6–0.8) | n.s | 0.3 (− 0.6–1.1) | n.s |
| Dislocation episodes | ||||
| 1 | REF | |||
| 2–6 | 0.2 (− 0.3–0.7) | n.s | 0.2 (− 0.5–0.8) | n.s |
| 7 or more | 0.7 (− 0.4–1.8) | n.s | 0.9 (− 0.3–2.1) | n.s |
| Time from first dislocation to surgery | 0.0 (− 0.1–0.0) | n.s | 0.0 (− 0.1–0.0) | n.s |
| Completed rehabilitation program | 0.1 (− 0.4–0.6) | n.s | 0.0 (− 0.1–0.0) | n.s |
| Type of surgery | ||||
| Latarjet | REF | |||
| Latarjet + anterior capsuloplasty | − 0.2 (0.7–0.3) | n.s | − 0.1 (− 0.7–0.5) | n.s |
| Preoperative WOSI | 0.0 (0.0–0.0) | n.s | 0.0 (0.0–0.0) | n.s |
| Preoperative SIRSI | 0.0 (0.0–0.0) | n.s | 0.0 (0.0–0.0) | n.s |
| Preoperative ROWE | 0.0 (0.0–0.0) | n.s | 0.0 (0.0–0.0) | n.s |
β, expected difference; C.I. confidence interval
Fig. 3Pre- and postoperative SIRSI score by type of sport
Fig. 4Pre- and postoperative Rowe score by type of sport