Background/Objectives: During analysis of patients with genetically confirmed COL2A1-related skeletal dysplasias, we observed an unusual ossification pattern of the superior pubic ramus characterized by multiple ossification centers—a phenomenon not previously reported in this context. The study aimed to determine the consistency and frequency of multiple ossification centers of the superior pubic ramus in patients with COL2A1-related skeletal dysplasias. Methods: We retrospectively analyzed pelvic radiographs from 135 patients with genetically confirmed pathogenic COL2A1 variants. Patients were classified into four clinical subgroups: SEDC, MED, Kniest dysplasia, and Stickler syndrome. Results: Multiple ossification centers were identified in 20 (15.5%) of the included patients, all of whom had the SEDC phenotype. The sensitivity of this radiographic sign for SEDC was 36.36%, with high specificity (99.07%) and accuracy (96.5%) compared with other COL2A1-related phenotypes and historical general population data. However, these findings require cautious interpretation given the limitations of historical control data. Conclusions: We identified an uncommon atypical ossification pattern of the superior pubic ramus that may serve as a supportive radiographic feature when interpreted in conjunction with clinical and genetic findings.
ДЕФОРМАЦИЯ КЛЮВОВИДНОГО ОТРОСТКА У ПАЦИЕНТОВ С ПОСЛЕДСТВИЯМИ ОДНОСТОРОННЕЙ РОДОВОЙ ТРАВМЫ ПЛЕЧЕВОГО СПЛЕТЕНИЯХодоровская А.М., Агранович О
Introduction. Juvenile idiopathic arthritis (JIA) is a common multifactorial disease characterized by the presence of chronic inflammation in the joints, entheses and other structures of the musculoskeletal system in combination with a certain range of extraskeletal disorders. Vast variety of JIA clinical variants and the variability of the disease course make primary and differential diagnosis difficult, which often leads to a delayed start of treatment and an inadequate choice of medical therapy or, conversely, an excess of medication. In the range of differential diagnostic conditions that have similar symptoms and are manifested by severe arthralgia, gait disturbance, joint stiffness, as well as the presence of effusion and gradual progression of bone destruction mainly in the epiphyseal plate, one should remember about hereditary skeletal dysplasias, primarily from a genetically heterogeneous group of multiple epiphyseal dysplasias (MED). The aim of the study – description of the clinical and genetic characteristics of three patients with various genetic variants of MED and defining approaches for their differential diagnosis with JIA. Materials and methods. There were three patients from three unrelated families aged from 7 to 13 years old under our supervision. To clarify the diagnosis, a genealogical analysis, a clinical examination of patients and first-degree relatives, as well as an assessment of X-ray images of long tubular bones were carried out. Molecular genetic confirmation of the MED diagnosis types 1 and 2 was based on the results of custom panel sequencing consisting of 166 genes responsible for the development of hereditary skeletal pathology. To clarify the molecular genetic diagnosis of MED type 4, an analysis of the SLC26A2 gene was performed using automated Sanger sequencing. Results. Anamnestic, clinical, radiological, and molecular genetic characteristics of three unrelated patients with different genetic types of MED caused by variants in the COMP, SLC26A2, and COL9A2 genes were analyzed. The first symptoms of the disease in observed patients with three different genetic variants of MED occurred at the age of 2–3 years old and were characterized by gait disturbance and climbing stairs difficulties. Gradually, these symptoms were accompanied by pain in large joints. According to the ultrasound examination of the joints, signs of synovitis were noted, as a result they were diagnosed with JIA (polyarticular variant, seronegative for rheumatoid and antinuclear factor) and immunosuppressive therapy were prescribed without significant effect. The atypical course of the JIA was the reason for additional examination of patients by an orthopedist and geneticist. Careful analysis of the large joints radiographs made it possible to suspect one of the variants of MED in our patients based on the detection of distinctive signs, which were characterized by abnormal ossification (diminished size and flattening) of the epiphyses and abnormal shape and structure of the femoral head epiphysis. Molecular genetic analysis was performed to confirm the diagnosis. As a result, a pathogenic variant of the nucleotide sequence in the COMP gene was detected in one of the patients, two pathogenic variants in the SLC26A2 gene in another patient, and one pathogenic variant in the COL9A2 gene in the third patient, which made it possible to confirm the final diagnosis of MED type 1 with an autosomal dominant type of inheritance, MED type 4 with an autosomal recessive type of inheritance and MED type 2 with an autosomal dominant type of inheritance, respectively. Based on the results of our own research and analysis of the literature data, key directions for the differential diagnosis of MED and JIA were formulated. It is shown that the analysis of the X-ray images of patients is essential in differential diagnosis. Conclusion. Despite the significant overlap of the clinical symptoms between JIA and MED, the key to the early diagnosis of MED is a comprehensive examination, which included genealogical analysis, features of clinical manifestations and disease course in combination with distinctive radiological signs including delayed ossification of the epiphyses of tubular bones typical for MED. However, the question remains about the probability of a combined nature of osteoarticular disorders, i. e., the possible development of JIA in patients with hereditary skeletal dysplasias which requires in-depth study in the future.
Background. Multiple epiphysal dysplasia (MED) type 1 (OMIM: 132400) is one of 7 genetic variants of this group of skeletal dysplasias described to date. The disease is caused by mutations in the COMP gene located on chromosome 19p13.1. The presence of muscle hypotonia and ligamentous laxity, as well as a moderate increase in the level of creatinephosphokinase activity, can lead to misdiagnosis of myopathy.Objective: to analyze the clinical and genetic characteristics of type 1 MED caused by mutations in the COMP gene in a series of Russian patients. Differential diagnosis was focused on the distinctive features of the disorder and hereditary myopathies.Materials and methods. We observed 8 patients from 7 families aged 7 to 15 years with MED type 1 caused by heterozygous mutations in the COMP gene. To confirm the diagnosis, the following methods were used: genealogical analysis, clinical examination, neurological examination with psycho-emotional testing, radiography and targeted sequencing of a panel consisting of 166 genes responsible for the development of inherited skeletal pathology.Results. Case history, clinical, radiological and genetic characteristics of 8 patients with MED type 1 caused by mutations in the COMP gene were analyzed. The first clinical manifestations of the disease were recorded from the age of 2–3 years and were characterized by gait disturbances, muscle weakness, difficulties with climbing stairs, frequent falls when walking, the inability to get up from the floor and from a squatting position and hypermobility of the joints. Electroneuromyographic study did not reveal the signs of miopathy. In two patients, a moderate increase in the creatinekinase level of up to 250–360 u / l was found. All patients were surveyed by neurologists for several years with a clinical diagnosis of congenital myopathy. At the age of 5–6 years patients COMPlained knee and ankle pain, which was assumed as rheumatic arthropathy. X-ray examination revealed typical signs of deficient ossification of the epiphyses. The next-generation sequencing analysis revealed seven single nucleotide variants in the COMP gene that lead to MED type 1. Three of the found variants here identified for the first time. As previously described, the majority of nucleotide variants (six out of seven) were localized in the 8–14 exons of the COMP gene and led to amino acid substitutions in calmodulin-like protein domain repeats, and only one substitution was localized in the C-terminal region of the protein molecule.Conclusion. In most patients with MED caused by mutations in the COMP gene, the first symptoms of the disease are gait disturbance, muscle weakness, and Gowers» maneuvers. The presence of these symptoms, along with a moderate increase in the level of creatinephosphokinase activity, often precedes the onset of clinical manifestations of skeletal dysplasia, leading to a misdiagnosis with myopathies. Accession of expressive arthralgias to these symptoms was mistakenly identified as reactive arthritis. X-ray examination of patients’ long bones helps to suspect the presence of MED. This X-ray imaging shows specific signs of epiphyses damage. A molecular-genetic analysis needs to be done to diagnose the genetic variant, caused by mutations in gene COMP.
BACKGROUND:Pycnodysostosis (PD, OMIM # 265800) is a rare variant of skeletal dysplasia with an autosomal recessive type of inheritance, characterized by a combination of specific features such as disproportionate nanism, generalized osteosclerosis, and distinct craniofacial dysmorphism. Radiographic features include acro-osteolysis of the distal phalanges in association with sclerosing bone lesions with multiple fractures. The polymorphism of the clinical manifestations of pycnodysostosis and low prevalence of the disorder lead to the difficulties with early. METHODS:The following tests were used for diagnostics: genealogical analysis, clinical examination, neurological examination according to the standard method with an assessment of the psychoemotional sphere, radiological analysis, searching for pathogenic variants in the CTSK gene by the automated Sanger sequencing. RESULTS:We describe first clinical and genetic characteristics of three Russian patients with pycnodysostosis from unrelated families. Two patients have a novel homozygous nucleotide substitution c.746T>A (p. Ile249Asn), and one has a previously described homozygous pathogenic variant c.746T>C (p.Ile249Thr) in the CTSK gene. In all three cases, a transition or transversion was found at nucleotide position 746 in exon 6 of the CTSK gene, leading to two different amino acid substitutions in the polypeptide chain. The obtained results may indicate the presence of a major pathogenic variant in the CTSK gene, leading to the typical manifestation of the disease. CONCLUSION:The data presented in the study enlarge the clinical, radiological, and mutational spectrum of pycnodysostosis. Typical clinical manifestations and the small size of the CTSK gene make the automated Sanger sequencing the optimal method for diagnosis of pycnodysostosis.
ПАТОГЕНЕЗ РАЗВИТИЯ ДЕФОРМАЦИЙ И КОНТРАКТУР ПЛЕЧЕВОГО СУСТАВА У ДЕТЕЙ С ПОСЛЕДСТВИЯМИ ИНТРАНАТАЛЬНОЙ ТРАВМЫ ПЛЕЧЕВОГО СПЛЕТЕНИЯХодоровская А.М. 1 , Агранович О.Е. 1 , Савина М
Quantitative analysis of skeletal muscles in cerebral palsy is an important but unsolved problem. Ultrasound elastography is a group of diagnostic methods that allow visualizing tissue stiffness, measuring and displaying biomechanical properties of tissues. The aim of our study was to conduct a systematic analysis of literature on ultrasound elastography of skeletal muscles in children with cerebral palsy.A literary search for keywords in the databases PubMed, Google Scholar, eLIBRARY was carried out. The inclusion criteria were nosology (cerebral palsy), age (up to 18 years) and the study design (original study in ultrasound elastography of the skeletal muscler), as well as the availability of detailed information about the technical issues, demographic and clinical data.The final analysis included 20 publications. Patients with hemiplegic cerebral palsy were most often studied, with the healthy side used as a control, shear wave elastography was used more often, in which both share wave velocity and shear modulus were assessed, and linear probes were used more often. The most frequent anatomical objects were the calf muscles. Most often, elastography was used to assess the results of botulinum therapy, and demonstrated an increase in muscle elasticity after treatment.Ultrasound elastography as a method od assessment of the mechanical properties of skeletal muscles in children with cerebral palsy cannot be considered suitable as a routine study at the moment. But the method showed promising results for the research purposes: all the publications we analyzed demonstrated significant difference in elastography indicators both when comparing with unaffected limb or with healthy controls. Positive changes were also detected after various therapeutic interventions aimed to reducing muscle tone and retraction e. g. botulinum toxin injections.The absence of a unified approach to muscle elastography in children with cerebral palsy was demonstrated, both for data obtaining and interpretation. In general, ultrasound elastography of the skeletal muscles in children with cerebral palsy is a promising method for qualitative and quantitative assessment of muscle tissue that requires further development. Improvement of technology, standardization of technique and measurements will further expand the usage of this method.
BACKGROUND: Ciliopathies include the large group of hereditary diseases caused by mutations in the genes encoding primary cilia components. The largest type of skeletal ciliopathies is short-rib thoracic dysplasia. AIM: This study describes the clinical and genetic characteristics of Russian patients with STRD with or without polydactyly caused by mutations in the genes DYNC2H1, DYNC2I2, IFT80, and IFT140. MATERIALS AND METHODS: A comprehensive examination of 10 unrelated children aged from 9 days to 9 years, with phenotypic signs of short-rib thoracic dysplasia with or without polydactyly, was conducted. The diagnosis was confirmed using genealogical analysis, clinical examination, neurological examination, radiography, and targeted sequencing of a panel consisting of 166 genes responsible for the development of inherited skeletal pathology. RESULTS: As a result of the molecular genetic analysis, four short-rib thoracic dysplasia genetic variants were identified. Seven patients were diagnosed with short-rib thoracic dysplasia type 3, and three unique patients were diagnosed with types 11, 2, and 9 due to mutations in the DYNC2H1 and DYNC2I2, IFT80, and IFT140 genes, respectively. From the 14 detected variants, six were identified for the first time. As in the previously described patient samples, in the analyzed sample, more than half of the cases were due to a mutation in the DYNC2H1 gene, which is responsible for the SRTD type 3. The differences in the severity of clinical manifestations and the disease course in patients with mutations in certain regions of the gene, which have a different effect on its protein product function, have been shown. CONCLUSIONS: The results of this molecular genetic study broaden the spectrum of mutations in the DYNC2H1, DYNC212, and IFT140 genes causing short-rib thoracic dysplasia and confirm the usefulness of the whole-exome sequencing as the most informative method for identifying mutations of the genetically heterogeneous short-rib thoracic dysplasia group.
The significant variability in the clinical manifestations of COL2A1-associated skeletal dysplasias makes it necessary to conduct a clinical and genetic analysis of individual nosological variants, which will contribute to improving our understanding of the pathogenetic mechanisms and prognosis. We presented the clinical and genetic characteristics of 60 Russian pediatric patients with type II collagenopathies caused by previously described and newly identified variants in the COL2A1 gene. Diagnosis confirmation was carried out by new generation sequencing of the target panel with subsequent validation of the identified variants using automated Sanger sequencing. It has been shown that clinical forms of spondyloepiphyseal dysplasias predominate in childhood, both with more severe clinical manifestations (58%) and with unusual phenotypes of mild forms with normal growth (25%). However, Stickler syndrome, type I was less common (17%). In the COL2A1 gene, 28 novel variants were identified, and a total of 63% of the variants were found in the triple helix region resulted in glycine substitution in Gly-XY repeats, which were identified in patients with clinical manifestations of congenital spondyloepiphyseal dysplasia with varying severity, and were not found in Stickler syndrome, type I and Kniest dysplasia. In the C-propeptide region, five novel variants leading to the development of unusual phenotypes of spondyloepiphyseal dysplasia have been identified.
Background. Despite the success in the treatment of children with mucopolysaccharidoses (MPS) as a result of the widespread of enzyme replacement therapy and hematopoietic stem cells transplantation, orthopedic manifestations continue to be a significant problem, while the pathology of the upper limbs in children with MPS is not sufficiently represented in the literature. The aim of this studywas to analyze orthopedic and neurological manifestations in the upper extremities of children with mucopolysaccharidosis based on a sequential case series. Materials and Methods. We carried out a comprehensive analysis of clinical and radiological involvement of the upper extremities in 49 patients with MPS. Results. The most common complaints reated to the upper extremities were difficulties in the daily activities (dressing, self-care, playing), impairment of the fine motor skills, and muscle weakness. The most frequent clinical manifestations related to the upper extremities were limited active shoulder abduction, impaired hand grip, flexion contractures of the elbow joint, ulnar deviation of the hand. All patients with MPS types I, II, and VI had limited active and passive extension and flexion of the metacarpophalangeal and interphalangeal joints. In patients with MPS IV, hypermobility of the hand joints prevailed. We noticed minimal presence of typical clinical manifestations related to compression of the median nerve secific for carpal tunnel syndrome. The majority of patients showed a decrease in tendon and periosteal reflexes. The most pronounced decrease in muscle strength was observed in to extensors (elbow, fingers) and shoulder abductors, which may contribute to the predominant formation of a flexion pattern of contractures. On radiographs of the hand, the “melting sugar” symptom and shortening of the metacarpal bones were observed in most patients. Conclusion.Clinical and radiological manifestations related to the upper extremities take place in all types of the mPS, and lead to functional disorders that complicate daily life and self-care. Upper limb pathology in children with MPS requires earlier detection and more active treatment after comprehensive risk assessment.
This article analyzes the literature related to flaccid paresis and paralysis of the upper extremities in children during the first months of life. This pathology is a heterogeneous group of diseases with different etiopathogenesis. There are various courses of flaccid paresis and paralysis of the upper extremities in children: damage to the spinal cord, brachial plexus, peripheral nervous system to the level of the brachial plexus, and isolated damage to peripheral nerves. According to the time of occurrence, flaccid paresis and paralysis can be divided into three groups: antenatal, intranatal, and postnatal pathology. The main mechanism of occurrence of this pathology is intranatal trauma. More rare causes of flaccid paresis and paralysis of the upper extremities are antenatal conditions of dysplastic and traumatic origin, postnatal damage to the peripheral nervous system due to trauma or infection. Congenital contractures of the upper extremities combined with flaccid paralysis are connected with genetically determined diseases of the lower motor neurons and congenital myopathies, intrauterine injuries of the brachial plexus peripheral nerves. This article discusses the issues of topical and differential diagnosis of this pathology, the clinical picture suitable for each period of the childs life, and the prognosis of the disease. This research will be useful not only for neurologists, but also for specialists of related specialties: orthopedists, physiotherapists, and neonatologists for making correct the diagnosis, providing adequate treatment, and predicting its results.
Introduction. Desbuquois dysplasia is a rare skeletal dysplasia with an autosomal recessive inheritance, resembling to the group of multiple joint dislocations. The disease is caused by mutations in the CANT1 and XYLT1 genes, the protein products of which are involved in the degradation of proteoglycans, which play an important role in endochondral ossification. The polymorphism of clinical and radiological characteristics and the genetic heterogeneity of Desbuquois dysplasia necessitate the description of the phenotypic characteristics of patients with various types of mutations, which optimize diagnosis. Objective description of the clinical and radiological characteristics of three Russian patients with Desbuquois dysplasia of types 1 and 2 with remarkable orthopedic manifestation, caused by mutations in the CANT1 and XYLT1 genes. Materials and Methods. Genealogical, clinical, radiographic and genetic data of three unrelated Russian patients aged 2 to 8 years was carried out. Genetic testing was carried out using clinical exome sequencing and methyl-sensitive PCR. Results. Two patients were diagnosed with type 1 disease due to a previously described homozygous mutation in the CANT1 gene: c.898CT (p.Arg300Cys), and one type 2 due to heterozygous mutations in the XYLT1 gene. One mutation: c.1651CT (p.Arg551Cys) was detected during exome sequencing, and the second mutation: expansion of GGC repeats in the promoter region of the gene, revealed by methyl-sensitive PCR of the first exon of the gene. The main clinical signs of the disease were micromelic dwarfism, hypermobility in the joints and specific facial dysmorphisms, radiographic analysis revealed characteristic monkey wrench appearance of the proximal femur in all 3 patients, additional ossification center of the second metacarpal, advanced bone age and multiple dislocations in the joints. The patients also had extra-skeletal manifestations (congenital glaucoma, obstructive bronchitis, renal hypoplasia and congenital heart malformations). Conclusion. Genetic heterogeneity and the presence of polymorphism of clinical manifestations make it possible to consider sequencing of the clinical exome as the optimal method for diagnosing Desbuquois dysplasia types 1 and 2. Analysis of the literature and the results of our molecular genetic data indicate the possibility of expansion of the GGC repeat in the XYLT1 gene in patients with clinical manifestations of type 2 Desbuquois dysplasia.
Introduction. Metaphyseal chondrodysplasia, McKusick type (MCD) (OMIM: #250250) (cartilage-hair hypoplasia) is a rare, autosomal recessive disorder with main clinical manifestations including disproportionate short stature, hair thinning and hypotrichosis. Some patients with MCD develop cellular and humoral immunodeficiency, bronchiectases and Hirschsprung disease. Such patients have an increased risk of developing malignant tumors and hypoplastic anemia. MCD is one of the rare monogenic disorders caused by mutations in the RMRP gene encoding a non-coding RNA instead of a protein. So far, 123 pathogenic RMRP variants have been described. The evidence of clinical genetic correlations in patients with different types and localization of gene mutations will facilitate further understanding of pathogenetic mechanisms of the disorder and enable to predict the spectrum and severity of clinical symptoms in individual patients.Materials and methods. We present the first description of clinical genetic characteristics of two Russian patients with MCD caused by mutations in the RMRP gene, along with the comparison of our results with literature data. In both cases the diagnosis was confirmed by analyzing the RMRP gene sequence using the direct Sanger sequencing technique.Results. Analysis of specific clinical signs observed during clinical examination of our patients in comparison with those reported in literature has shown the presence of typical skeletal and extraskeletal manifestations suggestive of MCD. In Russian patients we found the major mutation previously described in the Amish and Finnish populations, n.71A>G, present in compound heterozygous state, along with two other mutations: in one patient with an earlier described n.80G>A mutation, and in the other — a newly detected n.76C>T mutation. All detected mutations were mapped to a highly conserved region of the first domain that plays a major role in the functioning of the endoribonuclease complex.Conclusions. Considering the small size of the RMRP gene and presence of specific signs of MCD, the most accurate and inexpensive method of molecular genetic analysis is the detection of mutations in the RMRP gene using direct automated Sanger sequencing. Timely diagnosis of MCD enables to choose the correct follow-up strategy for patients with this disorder.
Schwartz–Jampel syndrome (chondrodystrophic myotonia) is a monogenic genetic disorder, demonstrating unique coincidence of the features of skeletal dysplasia and neuromuscular disease. We present four clinical cases of Schwartz–Jampel syndrome. Principles of diagnostic and results of surgical treatment of the lower limbs deformities are discussed. Importance of this study comprises unique description of rare cases. Surgical treatment for orthopaedic conditions is important and can lead to functional improvement, prevent progression of deformities and enhance daily activity.
Relevance. Acromezomelic dysplasia Maroteaux type (AMDM) is a rare variant of autosomal recessive skeletal disorder. The disease is caused by mutations in the NPR2 gene, coding the protein product which is one of the main regulators of endochondral ossification. To date, 49 mutations in this gene have been identified, more than half of which are missense substitutions. The presence of polymorphism of phenotypic manifestations makes it necessary to describe the features of clinical and radiological characteristics of the disease in patients with newly identified mutations in the gene, which will help to optimize its diagnosis. Case presentation. The clinical and radiological characteristics of two siblings with newly identified mutations c.125_126insTGGCG (p.Trp42CysfsTer12) and (p.Arg767Ter) in the NPR2 gene are described. Intra-family polymorphism of clinical manifestations is shown. Discussion. Clinical manifestations and radiological data in two siblings with AMDM caused by new mutations in the NPR2 gene and analysis of the literature data allowed us to conclude that there is no correlation of the severity of clinical signs and the type of mutations in the gene. Patients are born with normal growth and weight, and clinical manifestations (disproportionate dwarfism) appeared during the first year of life. The main radiological signs are shortening of tubular bones, most pronounced in the upper limbs and wedge-shaped formation of the vertebral bodies. Genotype-phenotype correlations confirmed the hypothesis that the majority of mutations leading to the disease is localized within the ligand-binding and guanylate cyclase domains. Conclusion. The obvious genetic heterogeneity, the similarity of the clinical manifestations of individual nosological groups of skeletal dysplasias, as well as the presence of intrafamily and interfamily polymorphism of clinical manifestations allows us to consider sequencing of a clinical exome or whole exome as the optimal method for diagnosing this group of diseases.
Ossificans progressive fibrodysplasia (OPF) presents a rare genetically caused osteopenia manifested by calcification and ossification of muscles, tendons, ligaments, fascia, and subcutaneous tissues due to aggressive fibroblasts proliferation. The disease is usually associated with congenital skeletal abnormalities: clinodactyly of the first toe, ankylosis of the first interphalangeal joints, and flexion contracture of the first finger. Surgical attempts of ossifications excision are unsuccessful and worsen the situation. 5 patients with OPF are presented. A course of the disease, clinical pattern, and surgery outcomes are disclosed. Both orthopedic manifestations such as congenital hand and foot abnormalities being a key to early clinical evaluation and secondary changes are described in detail. Also, postoperative complications are presented. Surgeonsare recommended to be on guard against this disease when planning the operations for heterotopic ossifications as well as for relating hand and foot abnormalities.
Skeletal dysplasias are challenging for diagnostics and treatment. We present a series of fifteen patients with different forms of skeletal dysplasias with age ranged from 6 to 17 years with variable clinical presentations managed as a part of the project of scientific cooperation between Turner Paediatric Orthopaedic Institute and Orthopaedic Hospital Vienna-Speising. The spectrum of diagnoses included multiple epiphyseal dysplasia, spondyloepiphyseal dysplasia congenita, diastrophic dysplasia, metaphyseal dysplasia, spondylometaphyseal dysplasia, Stickler syndrome, Kniest dysplasia, and anauxetic dysplasia. Complex treatment, which included axial correction and juxta-articular realignment, was performed as a single-stage, or consecutive surgery. Surgical techniques included corrective osteotomies with internal fixation, guided growth technique and external fixation devices. Best results (full axial correction, normal alignment of the joint) were achieved in 8 patients, including 2 patients with metaphyseal dysplasia, 2 patients with multiple epyphyseal dysplasia, 2 patients with spondyloepyphyseal dysplasia, patient with Stickler syndrome and patient with spondylometaphyseal dysplasia. Good results (partial correction at the present time) were seen in 4 patients (2 patients with Kniest dysplasia, 1 - with multiple epyphyseal dysplasia and 1 - with anauxetic dysplasia). Satisfactory results (non-progressive condition in previous progression) were obtained in 2 patients with diastrophic dysplasia, and poor results (progression of the deformity) - in 1 patient with diastrophic dysplasia. Positive results in most of the cases of our series make promising future for usage of complex approach for orthopedic management of children with skeletal dysplasias; advanced international cooperation is productive and helpful for diagnostics and management of rare diseases.
Anisospondyly (irregularly shaped vertebral bodies) and enchondroma-like lesions in the metaphyseal and diaphyseal portions of the long tubular bones are the characteristic features in patients with dysspondyloenchondromatosis (DSC). Thoraco-lumbar scoliosis and windswept deformity of the lower limbs were the major abnormalities encountered in this patient. To the best of our knowledge this is the first case report delineating the spine pathology via reformatted CT scan and the correction of a windswept deformity by means of temporary hemiepiphysiodesis in a patient with (DSC).
[english] Anisospondyly (irregularly shaped vertebral bodies) and enchondroma-like lesions in the metaphyseal and diaphyseal portions of the long tubular bones are the characteristic features in patients with dysspondyloenchondromatosis (DSC). Thoraco-lumbar scoliosis and windswept deformity of the lower limbs were the major abnormalities encountered in this patient. To the best of our knowledge this is the first case report delineating the spine pathology via reformatted CT scan and the correction of a windswept deformity by means of temporary hemiepiphysiodesis in a patient with (DSC). [german] Anisospondylie (irregular geformte Wirbelkörper) und Enchondrom-artige Läsionen im metaphysären und dipaphysären Bereich langer Röhrenknochen sind die charakteristischen Merkmale bei Patienten mit Dysspondyloenchondromatose (DSC). Bei dem von uns vorgestellten Patienten war eine thorako-lumbale Skoliose sowie eine Windschlag-Deformität der unteren Extremität ein wesentliches Merkmal. Unseres Wissens ist dies der erste Case-Report, welcher die Wirbelsäulen-Pathologie mittels CT-Untersuchung darstellt und die Korrektur der Windschlag-Deformität mit Hilfe einer Hemiepiphyseodese bei einem Patienten mit DSC beschreibt.