There is a lack of high-quality research investigating outcomes of Ponseti-treated idiopathic clubfeet and correlation with relapse. This study assessed clinical and quality of life (QoL) outcomes using a standardized core outcome set (COS), comparing children with and without relapse. A total of 11 international centres participated in this institutional review board-approved observational study. Data including demographics, information regarding presentation, treatment, and details of subsequent relapse and management were collected between 1 June 2022 and 30 June 2023 from consecutive clinic patients who had a minimum five-year follow-up. The clubfoot COS incorporating 31 parameters was used. A regression model assessed relationships between baseline variables and outcomes (clinical/QoL).Aims
Methods
Aims. The
The aim of this study was to gain an agreement on the management of idiopathic congenital talipes equinovarus (CTEV) up to walking age in order to provide a benchmark for practitioners and guide consistent, high-quality care for children with CTEV. The consensus process followed an established Delphi approach with a predetermined degree of agreement. The process included the following steps: establishing a steering group; steering group meetings, generating statements, and checking them against the literature; a two-round Delphi survey; and final consensus meeting. The steering group members and Delphi survey participants were all British Society of Children’s Orthopaedic Surgery (BSCOS) members. Descriptive statistics were used for analysis of the Delphi survey results. The Appraisal of Guidelines for Research & Evaluation checklist was followed for reporting of the results.Aims
Methods
To identify the minimum set of outcomes that should be collected in clinical practice and reported in research related to the care of children with idiopathic congenital talipes equinovarus (CTEV). A list of outcome measurement tools (OMTs) was obtained from the literature through a systematic review. Further outcomes were collected from patients and families through a questionnaire and interview process. The combined list, as well as the appropriate follow-up timepoint, was rated for importance in a two-round Delphi process that included an international group of orthopaedic surgeons, physiotherapists, nurse practitioners, patients, and families. Outcomes that reached no consensus during the Delphi process were further discussed and scored for inclusion/exclusion in a final consensus meeting involving international stakeholder representatives of practitioners, families, and patient charities.Aims
Methods
This study aims to define a set of core outcomes (COS) to allow consistent reporting in order to compare results and assist in treatment decisions for idiopathic clubfoot. A list of outcomes will be obtained in a three-stage process from the literature and from key stakeholders (patients, parents, surgeons, and healthcare professionals). Important outcomes for patients and parents will be collected from a group of children with idiopathic clubfoot and their parents through questionnaires and interviews. The outcomes identified during this process will be combined with the list of outcomes previously obtained from a systematic review, with each outcome assigned to one of the five core areas defined by the Outcome Measures Recommended for use in Randomized Clinical Trials (OMERACT). This stage will be followed by a two round Delphi survey aimed at key stakeholders in the management of idiopathic clubfoot. The final outcomes list obtained will then be discussed in a consensus meeting of representative key stakeholders.Aims
Methods
The study was undertaken to compare the efficacy of Woodcast splints and plaster-of-Paris casts in maintaining correction following sequential manipulation of idiopathic clubfeet. In this randomized prospective trial, 23 idiopathic clubfeet were immobilized with plaster-of-Paris casts and 23 clubfeet were immobilized with a splint made of Woodcast that encircled only two-thirds the circumference of the limb. The number of casts or splints needed to obtain full correction, the frequency of cast or splint-related complications, and the time taken for application and removal of the casts and splints were compared.Aims
Methods
Aims. The
Aims. The
Aims. After the initial correction of congenital talipes equinovarus
(CTEV) using the
Aims. Our aim was to describe the mid-term appearances of the repair
process of the Achilles tendon after tenotomy in children with a
clubfoot treated using the
We report the effect of introducing a dedicated
Ponseti service on the five-year treatment outcomes of children
with idiopathic clubfoot. Between 2002 and 2004, 100 feet (66 children; 50 boys and 16
girls) were treated in a general paediatric orthopaedic clinic.
Of these, 96 feet (96%) responded to initial casting, 85 requiring
a tenotomy of the tendo-Achillis. Recurrent deformity occurred in
38 feet and was successfully treated in 22 by repeat casting and/or
tenotomy and/or transfer of the tendon of tibialis anterior, The
remaining 16 required an extensive surgical release. Between 2005 and 2006, 72 feet (53 children; 33 boys and 20 girls)
were treated in a dedicated multidisciplinary Ponseti clinic. All
responded to initial casting: 60 feet (83.3%) required a tenotomy
of the tendo-Achillis. Recurrent deformity developed in 14, 11 of
which were successfully treated by repeat casting and/or tenotomy
and/or transfer of the tendon of tibialis anterior. The other three
required an extensive surgical release. Statistical analysis showed that children treated in the dedicated
Ponseti clinic had a lower rate of recurrence (p = 0.068) and a
lower rate of surgical release (p = 0.01) than those treated in
the general clinic. This study shows that a dedicated Ponseti clinic, run by a well-trained
multidisciplinary team, can improve the outcome of idiopathic clubfoot
deformity. Cite this article:
Previous studies have identified clinical and
demographic risk factors for recurrence in the treatment of idiopathic clubfoot
(congenital talipes equinovarus). Evertor muscle activity is not
usually considered amongst them. This study aimed to evaluate whether
recurrence could be predicted by demographic, clinical and gait
parameters. From a series of 103 children with clubfeet, 67 had
completed a follow-up of two years: 41 male and 26 female, 38 with idiopathic
and 29 with non-idiopathic deformities. The mean age was 3.2 years
(2.1 to 6.3). Primary correction was obtained in all 38 children
(100%) with an idiopathic deformity, and in 26 of 29 patients (90%)
with a non-idiopathic deformity. Overall, 60 children (90%) complied
with the abduction brace regime. At a mean follow-up of 31.4 months (24
to 62), recurrence was noted in six children (15.8%) in the idiopathic
and 14 children (48.3%) in the non-idiopathic group. Significant
correlation was found between poor evertor activity and recurrence
in both groups. No statistically significant relationship was found
between the rate of recurrence and the severity of the initial deformity,
the age at the time of treatment, the number of casts required or
the compliance with the brace. After correction of idiopathic and non-idiopathic clubfoot using
the
Congenital Talipes Equinovarus (CTEV) is one
of the most common congenital limb deformities. We reviewed the records
of infants who had received treatment for structural CTEV between
1 January 2007 and 30 November 2012. This was cross-referenced with
the prenatal scans of mothers over a corresponding period of time.
We investigated the sensitivity, specificity, and positive and negative
predictive values of the fetal anomaly scan for the detection of CTEV
and explored whether the publication of Fetal Anomaly Screening
Programme guidelines in 2010 affected the rate of detection. During the study period there were 95 532 prenatal scans and
34 373 live births at our hospital. A total of 37 fetuses with findings
suggestive of CTEV were included in the study, of whom 30 were found
to have structural CTEV at birth. The sensitivity of screening for
CTEV was 71.4% and the positive predictive value was 81.1%. The negative
predictive value and specificity were more than 99.5%. There was
no significant difference between the rates of detection before
and after publication of the guidelines (p = 0.5). We conclude that a prenatal fetal anomaly ultrasound screening
diagnosis of CTEV has a good positive predictive value enabling
prenatal counselling. The change in screening guidance has not affected
the proportion of missed cases. This information will aid counselling
parents about the effectiveness and accuracy of prenatal ultrasound
in diagnosing CTEV. Cite this article:
Our goal was to evaluate the use of Ponseti’s
method, with minor adaptations, in the treatment of idiopathic clubfeet
presenting in children between five and ten years of age. A retrospective
review was performed in 36 children (55 feet) with a mean age of
7.4 years (5 to 10), supplemented by digital images and video recordings
of gait. There were 19 males and 17 females. The mean follow-up
was 31.5 months (24 to 40). The mean number of casts was 9.5 (6
to 11), and all children required surgery, including a percutaneous
tenotomy or open tendo Achillis lengthening (49%), posterior release
(34.5%), posterior medial soft-tissue release (14.5%), or soft-tissue
release combined with an osteotomy (2%). The mean dorsiflexion of
the ankle was 9° (0° to 15°). Forefoot alignment was neutral in
28 feet (51%) or adducted (<
10°) in 20 feet (36%), >
10° in
seven feet (13%). Hindfoot alignment was neutral or mild valgus
in 26 feet (47%), mild varus (<
10°) in 19 feet (35%), and varus
(>
10°) in ten feet (18%). Heel–toe gait was present in 38 feet
(86%), and 12 (28%) exhibited weight-bearing on the lateral border
(out of a total of 44 feet with gait videos available for analysis).
Overt relapse was identified in nine feet (16%, six children). The
parents of 27 children (75%) were completely satisfied. A plantigrade foot was achieved in 46 feet (84%) without an extensive
soft-tissue release or bony procedure, although under-correction
was common, and longer-term follow-up will be required to assess
the outcome. Cite this article:
We undertook a randomised clinical trial to compare
treatment times and failure rates between above- and below-knee
Ponseti casting groups. Eligible children with idiopathic clubfoot,
treated using the
The Ponseti and French taping methods have reduced
the incidence of major surgery in congenital idiopathic clubfoot
but incur a significant burden of care, including heel-cord tenotomy.
We developed a non-operative regime to reduce treatment intensity
without affecting outcome. We treated 402 primary idiopathic clubfeet
in patients aged <
three months who presented between September
1991 and August 2008. Their Harrold and Walker grades were 6.0%
mild, 25.6% moderate and 68.4% severe. All underwent a dynamic outpatient
taping regime over five weeks based on Ponseti manipulation, modified
Jones strapping and home exercises. Feet with residual equinus (six
feet, 1.5%) or relapse within six months (83 feet, 20.9%) underwent
one to three additional tapings. Correction was maintained with
below-knee splints, exercises and shoes. The clinical outcome at
three years of age (385 feet, 95.8% follow-up) showed that taping
alone corrected 357 feet (92.7%, ‘good’). Late relapses or failure
of taping required limited posterior release in 20 feet (5.2%, ‘fair’)
or posteromedial release in eight feet (2.1%, ‘poor’). The long-term
(>
10 years) outcomes in 44 feet (23.8% follow-up) were assessed
by the Laaveg–Ponseti method as excellent (23 feet, 52.3%), good
(17 feet, 38.6%), fair (three feet, 6.8%) or poor (one foot, 2.3%).
These compare favourably with published long-term results of the
Ponseti or French methods. This dynamic taping regime is a simple
non-operative method that delivers improved medium-term and promising
long-term results. Cite this article:
The
We conducted a prospective randomised controlled trial to compare the standard
A total of 38 relapsed congenital clubfeet (16 stiff, 22 partially correctable) underwent revision of soft-tissue surgery, with or without a bony procedure, and transfer of the tendon of tibialis anterior at a mean age of 4.8 years (2.0 to 10.1). The tendon was transferred to the third cuneiform in five cases, to the base of the third metatarsal in ten and to the base of the fourth in 23. The patients were reviewed at a mean follow-up of 24.8 years (10.8 to 35.6). A total of 11 feet were regarded as failures (one a tendon failure, five with a subtalar fusion due to over-correction, and five with a triple arthrodesis due to under-correction or relapse). In the remaining feet the clinical outcome was excellent or good in 20 and fair or poor in seven. The mean Laaveg-Ponseti score was 81.6 of 100 points (52 to 92). Stiffness was mild in four feet and moderate or severe in 23. Comparison between the post-operative and follow-up radiographs showed statistically significant variations of the talo-first metatarsal angle towards abduction. Variations of the talocalcaneal angles and of the overlap ratio were not significant. Extensive surgery for relapsed clubfoot has a high rate of poor long-term results. The addition of transfer of the tendon of tibialis anterior can restore balance and may provide some improvement of forefoot adduction. However, it has a considerable complication rate, including failure of transfer, over-correction, and weakening of dorsiflexion. The procedure should be reserved for those limited cases in which muscle imbalance is a causative or contributing factor.
We reviewed the results of a selective à la carte soft-tissue release operation for recurrent or residual deformity after initial conservative treatment for idiopathic clubfoot by the