scholarly journals Management of Missed Traumatic Achilles Tendon Rupture in a Pediatric Patient: A Case Report

2021 ◽  
Vol 9 (4) ◽  
pp. 465-470
Author(s):  
Saad Andaloussi

BACKGROUND: Missed traumatic Achilles tendon ruptures in children are rarely reported in the literature. Various techniques have been described to reconstruct delayed Achilles tendon ruptures for adults, but the long-term consequences in the growing child are unknown. CLINICAL CASE: The article presents a clinical observation of a 8-year-old girl with missed rupture of the Achilles tendon operated 7 weeks after the trauma by end-to-end Kessler-type sutures augmented with the plantaris tendon. At 2-year follow-up, the patient was completely asymptomatic. DISCUSSION: A review of the literature shows that this is the third neglected pediatric case of post-traumatic Achilles tendon rupture. The first case concerns a 10-year-old boy treated successfully six weeks after the traumat by open surgical repair using the Bunnell sutures technique. The second patient was a 7-year-old girl, she was operated 8 weeks after the trauma with a termino-terminal tenorrhaphy using the Bunnell technique augmented with the plantaris tendon. CONCLUSIONS: Using the plantaris tendon to reinforce the Achilles tendon repair offers satisfactory results with minimal morbidity. Prognosis depends on the extent of tendon defect which determines the long-term functional outcome. Any skin wound that sits on the back of the leg requires a systematic and careful physical examination to check the integrity of the Achilles tendon.

2020 ◽  
Vol 5 (4) ◽  
pp. 2473011420S0040
Author(s):  
Ryan G. Rogero ◽  
Daniel Corr ◽  
Andrew Fisher ◽  
Joseph T. O’Neil ◽  
Daniel J. Fuchs ◽  
...  

Category: Trauma; Ankle; Hindfoot; Sports Introduction/Purpose: Given the lack of consensus regarding the optimal surgical treatment for acute Achilles tendon ruptures, identifying techniques to maximize functional outcomes is crucial. Augmentation of Achilles tendon repair with the plantaris tendon is an established surgical technique that is thought to improve outcomes by reinforcing the repair site as well as decreasing soft tissue adhesions, though no studies have specifically looked at outcomes of its use. The purpose of this study is to compare the outcomes of acute Achilles tendon repairs managed with and without plantaris tendon augmentation. Methods: A retrospective review of patients undergoing open repair of acute Achilles tendon ruptures with a single fellowship- trained foot & ankle surgeon from 2010-2016 was performed. Patients <18 years of age, those whose procedures were >21 days from the date of injury, or whose repair was augmented with a flexor hallucis longus (FHL) tendon transfer or V-Y advancement were excluded. Operative report review determined if repair included plantaris augmentation. Augmentation involved weaving the tendon through the Achilles above and below the rupture site creating a box type biologic augmentation. Patients were contacted at >=2 years postoperatively to complete the Foot & Ankle Ability Measure (FAAM)-Activities of Daily Living (ADL) and -Sports subscales, visual analog scale (VAS) for pain, as well as surveyed regarding their satisfaction with the surgical outcome using a 5- point Likert scale. Mann-Whitney U, Chi-squared and Fisher’s exact tests were performed to compare patient variables and postoperative outcomes. Results: One hundred twenty-eight patients undergoing repair of an acute Achilles tendon rupture were included, including 59 (46.1%) with plantaris tendon augmentation and 69 (53.9%) without. The two patient cohorts did not differ in any preoperative patient variables (p>0.0892). Patients with and without plantaris augmentation did not experience any significant difference in the rate of postoperative complications (p=1.000), including a 0% re-rupture rate in each group. Additionally, at an average follow-up of 57.1 months, the groups did not differ in FAAM-ADL score (p=0.7116), FAAM-Sports score (p=0.4024), the Single Assessment Numeric Evaluation (SANE) as part of the FAAM-Sports subscale (p=0.2572), VAS pain (p=0.1885), or outcome satisfaction (p=0.7317). Conclusion: Our study demonstrates that plantaris tendon augmentation does not improve patient functional outcomes following acute Achilles tendon repair, but also is not associated with increased complication rates. Further studies, including either higher-level prospective, randomized clinical studies or biomechanical evaluation of the technique, are indicated to justify this adjunctive procedure. [Table: see text]


2021 ◽  
Vol 10 (11) ◽  
pp. 2370
Author(s):  
Łukasz Paczesny ◽  
Jan Zabrzyński ◽  
Marcin Domżalski ◽  
Maciej Gagat ◽  
Miron Termanowski ◽  
...  

Percutaneous acute Achilles tendon rupture suturing has become a leading treatment option in recent years. A common complication after this mini-invasive procedure is sural nerve injury, which can reduce the patients’ satisfaction and final outcomes. High-resolution ultrasound is a reliable method for localizing the sural nerve, and it can be performed intra-operatively; however, the long-term results are yet unknown. The aim of the study was to retrospectively evaluate the long-term results of percutaneous Achilles tendon repair supported with real-time ultrasound imaging. We conducted 57 percutaneous sutures of acute Achilles tendon rupture between 2005 and 2015; 30 were sutured under sonographic guidance, while 27 were performed without sonographic assistance. The inclusion criteria were acute (less than 7 days) full tendon rupture, treatment with the percutaneous technique, age between 18 and 65 years, and a body mass index (BMI) below 35. The operative procedure was carried out by two surgeons, according to the surgical technique reported by Maffulli et al. In total, 35 patients were available for this retrospective assessment; 20 (16 men and 4 women) were treated with sonographic guidance, while 15 (12 men and 3 women) underwent the procedure without it. The mean follow-up was 8 years (range, 3–13 years). The sural nerve was localized 10 mm to 20 mm (mean, 15.8; SD, 3.02) laterally from the scar of the Achilles tendon tear. There was no significant difference between groups with respect to the FAOQ score (P < 0.05). High-resolution ultrasounds performed intra-operatively can minimize the risk of sural nerve injury during percutaneous Achilles tendon repair.


2018 ◽  
Vol 3 (3) ◽  
pp. 2473011418S0028
Author(s):  
Jonathan Kaplan ◽  
Jeffery Hillam ◽  
Amiethab Aiyer ◽  
Niall Smyth

Category: Sports Introduction/Purpose: Diabetes Mellitus (DM) is an epidemic affecting millions of individuals in the United States. Multiple studies have demonstrated an increase in complications in foot and ankle surgery in patients with DM, including wound healing complications, surgical site infections (SSI), or surgical failure. The goal of this study was to retrospectively review outcomes data from the National Surgical Quality Improvement Program (NSQIP) to determine the impact of DM on operative treatment of achilles tendon ruptures. Methods: Using the NSQIP from 2006-2015, patients were identified using common procedure terminology (CPT) for Achilles tendon ruptures. Diabetic and non-diabetic cohorts were evaluated to compare demographics, comorbidities, perioperative details and 30-day outcomes. Statistical evaluation included a power analysis for the primary outcome measure of wound disruption as well as univariate analysis was performed using chi-squared or Fisher’s exact and Wilcoxon signed-rank tests. Results: A total of 2,014 patients were identified having sustained an Achilles tendon rupture. There were 1,981 patients without DM and 33 patients with DM. There were no significant differences in postoperative complications, including SSI, medical complications, and 30-day outcomes between patients with DM and non-DM patients undergoing surgical repair of acute Achilles tendon ruptures. The power analysis for wound disruption showed a P=0.9 with an alpha of 0.05, sample size of n=2014, and Pearson correlation coefficient of r=0.0721 Conclusion: While DM has been shown to have an increase in complications in various foot and ankle procedures, this study demonstrates that there is no significant difference in postoperative complications and 30-day outcomes between patients with DM and non-DM patients undergoing surgical repair of acute Achilles tendon ruptures using the NSQIP database from 2006-2015. Based on this data, patients with diabetes mellitus can be considered adequate surgical candidates for acute Achilles tendon rupture repair.


2011 ◽  
Vol 2011 ◽  
pp. 1-10 ◽  
Author(s):  
Michael H. Amlang ◽  
Hans Zwipp ◽  
Adina Friedrich ◽  
Adam Peaden ◽  
Alfred Bunk ◽  
...  

Purpose. This work introduces a distinct sonographic classification of Achilles tendon ruptures which has proven itself to be a reliable instrument for an individualized and differentiated therapy selection for patients who have suffered an Achilles tendon rupture. Materials and Methods. From January 1, 2000 to December 31, 2005, 273 patients who suffered from a complete subcutaneous rupture of the Achilles tendon (ASR) were clinically and sonographically evaluated. The sonographic classification was organized according to the location of the rupture, the contact of the tendon ends, and the structure of the interposition between the tendon ends. Results. In 266 of 273 (97.4%) patients the sonographic classification of the rupture of the Achilles tendon was recorded. Type 1 was detected in 54 patients (19.8%), type 2a in 68 (24.9%), type 2b in 33 (12.1%), type 3a in 20 (7.3%), type 3b in 61 (22.3%), type 4 in 20 (7.3%), and type 5 in 10 (3.7%). Of the patients with type 1 and fresh ASR, 96% () were treated nonoperative-functionally, and 4% () were treated by percutaneous suture with the Dresden instrument (pDI suture). Of the patients classified as type 2a with fresh ASR, 31 patients (48%) were treated nonoperatively-functionally and 33 patients (52%) with percutaneous suture with the Dresden instrument (pDI suture). Of the patients with type 3b and fresh ASR, 94% () were treated by pDI suture and 6% () by open suture according to Kirchmayr and Kessler. Conclusion. Unlike the clinical classification of the Achilles tendon rupture, the sonographic classification is a guide for deriving a graded and differentiated therapy from a broad spectrum of treatments.


2018 ◽  
Vol 12 (5) ◽  
pp. 471-479 ◽  
Author(s):  
Henrik C. Bäcker ◽  
Adrian J. Yenchak ◽  
David P. Trofa ◽  
J. Turner Vosseller

The goal of treatment after Achilles tendon rupture (ATR) is to restore appropriate tension to the tendon, so that normal baseline strength and functional soft-tissue length can be achieved. The assessment of plantarflexion strength has shown widespread variability. The purpose of this study is to document variations in strength assessment after the treatment of ATR in the literature. A comprehensive literature review was performed. In total, 2758 articles were found on Achilles tendon rupture and Achilles tendon strength measurement. The full text of articles including strength as a functional outcome measurement in the abstract were assessed. All objective strength measurements performed were reviewed and recorded for comparison. One-hundred articles were included in our study. In 78 articles, a dynamometer was used to measure strength, whereas in 22 articles, an endurance test (n=14) or formal gait assessment (n=8) was applied. When a dynamometer was used, there was wide variability in the various methods used including the incorporation of both isokinetic (n = 65) and isometric (n = 29) exercises utilizing varying degrees of knee flexion and patient testing position. Furthermore, the number of measurements at certain angular velocities varied. This study illustrates that no general consensus exists regarding an optimal method for measuring strength after ATR. The variability creates difficulty and challenges medical professionals’ ability to formulate consistent conclusions when determining functional performance outcomes. A more uniform way of measuring strength after ATR may allow for better comparisons between studies in the literature, potentially leading to a better understanding of strength. Levels of Evidence: Therapeutic, Level II


2006 ◽  
Vol 27 (3) ◽  
pp. 167-171 ◽  
Author(s):  
Tobias M. Hufner ◽  
Dirk B. Brandes ◽  
Hajo Thermann ◽  
Martinus Richter ◽  
Karsten Knobloch ◽  
...  

Background: Nonoperative treatment of complete Achilles tendon ruptures generally involves a long period of cast immobilization and is associated with frequent reruptures. Functional nonoperative treatment of complete Achilles tendon ruptures involves the use of a high-shaft boot with a 3-cm hindfoot elevation, in which physical therapy is begun after 3 weeks of wear. We reviewed our long-term results with this treatment protocol to determine its effectiveness. Methods: The indications for nonoperative treatment, defined by ultrasound, were a distance of 10 mm or less between the tendon ends with the ankle in neutral position and complete apposition of the tendon ends in 20 degrees of plantarflexion. From 1990 to 1996, 168 patients were treated; 125 (74%) were available for followup at a mean of 5.5 (2 to 12.7) years after the injury. Results: Good or excellent results were achieved in 92 (73.5%) with complete rehabilitation and return to sports activity at their pre-injury levels. Satisfactory (9%) and poor results (17.5%) were due to pain in the Achilles tendon region, a lengthened Achilles tendon, markedly reduced strength, or a marked reduction of calf size in 25 patients (76%). Eight patients (6.4%) sustained a rerupture. Conclusions: Functional nonoperative treatment achieved good results in patients who had precise sonographic evaluation and who were compliant. As a result of our study, we modified our protocol: (1) a repeat ultrasound examination is done by an experienced sonographer 2 to 5 days after the first to confirm the indications for nonoperative treatment, (2) the use of the 3-cm hindfoot elevation is extended from 6 to 8 weeks to provide a longer protection of the tendon, and (3) patients then wear shoes with 1-cm hindfoot elevation for another 3 months.


2018 ◽  
Vol 3 (3) ◽  
pp. 2473011418S0017
Author(s):  
Jon-Michael Caldwell ◽  
Harry Lightsey ◽  
Hasani Swindell ◽  
Justin Greisberg ◽  
J. Turner Vosseller

Category: Sports Introduction/Purpose: Achilles tendon ruptures are increasingly common injuries. There are several known risk factors for Achilles tendon rupture, although little is reported on the seasonal variation of the incidence of these injuries. Of the few studies in the literature touching on this question, the results have been varied. We sought to determine if there is any seasonal pattern of Achilles tendon ruptures. Knowledge of such a seasonal pattern could be advantageous for patient education, risk assessment, and ultimately prevention of these injuries. Methods: We queried billing records for CPT codes 27650, 27652, and 27654 as well as ICD diagnosis codes 727.67, 845.09, and S86.01x pertaining to Achilles tendon injury, repair, and reconstruction. Charts were screened and included if the patient suffered an acute Achilles tendon rupture on a known date. Charts were excluded if the patient had a chronic Achilles tear or underwent reconstruction or debridement for tendonitis, Haglunds deformity, tendon laceration, or any other indication aside from acute rupture. Data was analyzed using a chi-squared test for categorical variables, binomial tests for dichotomous variables and Mann-Whitney-U or Welch t-test for continuous variables. Significance was set at p < 0.05. Results: Our search yielded 499 cases with 245 meeting inclusion criteria. Sixty-six percent (66%) of injuries were identified as sports-related while 34% were non-sports related. When stratified by month, significant peaks occurred in April and July (p = .036, .011 respectively) with significantly fewer injuries occurring in October through December (p = 0.049). The highest rate of injury was seen in Spring (p = .015) and the lowest was seen in Fall (p < .001). There was no significant difference between seasons when only the non-sports related injuries were considered. Basketball was the most common sport involved (n=78) accounting for 51% of injuries (p < .001), followed by soccer and tennis. There was no significant variation between seasons in any particular sport. Conclusion: There was significant seasonal variation in the incidence of Achilles tendon ruptures. Both sports and non-sports-related injuries followed a similar pattern, with most injuries occurring during the Spring and Summer and fewer during Fall and Winter. This increase corresponds to the increase in activity in the recreational athlete population in the region which is often preceded by a time of relative inactivity. Our study confirms that the deconditioned athlete is at particularly elevated risk for Achilles tendon rupture during the Spring season when abrupt increases in sporting activity are common. Targeted education and prevention efforts could help mitigate this risk.


2017 ◽  
Vol 2 (4) ◽  
pp. 247301141771543 ◽  
Author(s):  
Robert G. Dekker ◽  
Charles Qin ◽  
Cort Lawton ◽  
Muturi G. Muriuki ◽  
Robert M. Havey ◽  
...  

Background: Soft tissue complications after Achilles tendon repair has led to increased interest in less invasive techniques. Various limited open techniques have gained popularity as an alternative to open operative repair. The purpose of this study was to biomechanically compare an open Krackow and limited open repair for Achilles tendon rupture. We hypothesized that there would be no statistical difference in load to failure, work to failure, and initial linear stiffness. Methods: A simulated Achilles tendon rupture was created 4 cm proximal to its insertion in 18 fresh-frozen cadaveric below-knee lower limbs. Specimens were randomized to open or limited open PARS Achilles Jig System repair. Repairs were loaded to failure at a rate of 25.4 mm/s to reflect loading during normal ankle range of motion. Load to failure, work to failure, and initial linear stiffness were compared between the 2 repair types. Results: The average load to failure (353.8 ± 88.8 N vs 313.3 ± 99.9 N; P = .38) and work to failure (6.4 ± 2.3 J vs 6.3 ± 3.5 J; P = .904) were not statistically different for Krackow and PARS repair, respectively. Mean initial linear stiffness of the Krackow repair (17.8 ± 5.4 N/mm) was significantly greater than PARS repair (11.8 ± 2.5 N/mm) ( P = .011). Conclusion: No significant difference in repair strength was seen, but higher initial linear stiffness for Krackow repair suggests superior resistance to gap formation, which may occur during postoperative rehabilitation. With equal repair strength, but less soft tissue devitalization, the PARS may be a favorable option for patients with risk factors for soft tissue complications.


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