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At least 19 recordsLinked to original sources

Mobius syndrome: a case report.

Mobius Syndrome is characterized by showing unilateral facial nerve palsy of the sixth and seventh nerves, lack of facial expression, inability to smile and to tightly close the right eyelids. In this report, a 7-year-old-boy with Mobius syndrome is presented. He had asymmetry of facial expression, anomalies of fingers and severe tooth decay. After dental treatment, the periodic re-care visits should be done according to the eruption pattern.

Child↗

Mobius syndrome: electrophysiologic studies in seven cases.

Mobius syndrome is characterized by congenital facial diplegia, frequent impairment of gaze, variable involvement of other cranial muscles, and various musculoskeletal anomalies. The site of dysfunction remains debatable. We performed detailed electrophysiologic studies in 5 children and 2 adults with Mobius syndrome to better delineate the pathophysiology of this disorder. Sensory and motor conduction studies were normal in the extremities. Facial compound muscle action potential amplitudes were reduced in all patients. The blink reflex R1 responses were unobtainable unilaterally in 2 patients and unobtainable bilaterally in 3 patients. Otherwise, R1 and R2 latencies were variably prolonged. The jaw jerk and masseter silent periods, tested in 2 patients, were normal. Detailed electromyographic studies of facial muscles revealed multifocal, chronic neurogenic changes. The findings indicate a brain stem process predominantly affecting the facial nuclei and their internuclear connections rather than a supranuclear or muscular site of involvement.

Action Potentials↗

Mobius syndrome with basal ganglia calcification.

Basal ganglia calcification has not been described in Mobius syndrome. A family with two children with Mobius syndrome are reported. Bilateral basal ganglia calcification was seen on computed tomography in both. This is the first family where cerebral involvement has been clearly documented in this syndrome.

Abducens Nerve↗

Behavior management of a patient with Mobius syndrome: report of case.

A twelve-year old Mobius syndrome patient was successfully examined as an outpatient, using patience, tactile desensitization, and cooperative interaction. Restoration of carious teeth was accomplished, using general anesthesia. Behavioral intervention was successful, thus avoiding an unnecessary hospitalization for examination only.

Anesthesia, Dental↗

Mobius syndrome associated with ventricular septal defect.

We report a 10-year-old boy with Mobius syndrome (MS) associated with ventricular septal defect who was delivered after an unsuccessful curettage before the 10th week of gestation. Methylergobasine which is an ergot alkaloid was also applied during the curettage procedure. Despite of the curettage procedure, the pregnancy was continued and he was delivered. His developmental milestones were delayed. On account of this case, we think that direct mechanical fetal trauma and vasoconstriction or both may cause MS. But, further extensive studies are needed to verify this hypothesis.

Child↗

Mobius syndrome and Poland anomaly: case report and review of the literature.

A 6-year-old boy had the combination of Mobius Syndrome and the Poland anomaly. Although rare, this association is repeatedly encountered. The absence of the pectoral muscle in the Poland anomaly supports the theory that in both conditions the muscular and skeletal abnormalities are due to a common fetal mesodermal defect.

Child↗

Mobius syndrome and limb abnormalities.

Most ophthalmologists are aware of the cranial nerve dysfunctions that have been associated with the facial diplegias of Mobius syndrome. However, many are not aware of the combined limb deficiencies and cranial nerve dysfunctions. Limb malformations have been associated with a spectrum of oral facial anomalies consisting of micrognathia, hypoglossia, microstomia, hypodontia, oral bands, and dysarthria. It has been suggested that the differences which exists between these entities may in fact represent a common etiology. The variability may be related to an intrauterine insult at slightly different times. The oral-facial anomalies associated with absence of limbs or of limb anomalies suggests a correlation between the limbs and the first visceral arch possibly within the second month of gestation.

Abnormalities, Multiple↗

MOBIUS SYNDROME.

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Abducens Nerve↗

Studies of malformation syndromes of man XXXXI B: nosologic studies in the Hanhart and the Möbius syndrome.

We reviewed etiologic and phenotypic aspects of those orofacial and limb anomalies usually diagnosed as Hanhart syndrome and Mobius syndrome but also those described, among others, under names such as aglossia-adactylia syndrome, gloss-palatine ankylosis, ankyloglossia superior, peromelia and micrognathia, cleft palate/lateral synechiae syndrome, and the Charlie M. syndrome. By coding the degree of severity of the limb defects it was possible to compare these cases quantitatively and to determine the nosologic significance of associated cranial nerve palsies and chest abnormalities. We analyzed 7 personal and 62 previously reported cases and found: 1. that the severity in the upper limbs and, particularly, malformations of the feet, but not the presence or absence of cranial nerve palsies, is a significant feature in the differentiation of cases, and 2. that the group of patients with cranial nerve palsies includes some with limb defects similar to those in the Hanhart syndrome and others with features which overlap the manifestations of the Poland syndrome. Still other cases had cranial nerve palsy as an isolated trait or as a component manifestation of several different syndromes. These findings permit re-definition and nosologic delimitation of the various syndromes as follows: 1. The Hanhart-syndrome: usually severe limb defect of at least one hand or foot, frequently associated with severe oral abnormalities and sometimes also with cranial nerve palsy. Most cases reported as aglossia-adactylia syndrome, aglossia-hypomelia syndrome, and some cases reported as glossopalatine ankylosis, ankyloglossia superior and Mobius syndrome describe instances of the Hanhart syndrome. 2. The Poland-Mobius syndrome: we suggest this term to refer to those cases of "Mobius syndrome" which have a chest defect and/or symbrachydactyly of the type seen in the Poland syndrome. We suspect that these cases of the "Mobius syndrome," and most of the cases which are usually diagnosed as Poland syndrome represent a different spectrum of the same condition, hence the term Poland-Mobius syndrome. 3. The autosomal dominant cleft palate/lateral synechiae syndrome delineated by Fuhrmann et al. and other apparently less frequent conditions are mentioned in the discussion. Cranial nerve palsy obviously occurs in several etiologically distinct conditions. An analogous situation is present, although less obvious, in the Hanhart and the Poland-Mobius syndrome. Both of these conditions are formal genesis malformation syndromes which implies that they are etiologically non-specific developmental field complexes. In the Hanhart syndrome Bersu et al. postulate a common pathogenetic disturbance for oral and limb defects, thus suggesting that the manifestations represent a single anomaly rather than a "syndrome." This anomaly, for which we suggest the term Kettner anomaly, may occur not only in the Hanhart syndrome but also in other conditions. Similarly, the Poland anomaly, i.e...

Abducens Nerve↗

SOX14 is a candidate gene for limb defects associated with BPES and Möbius syndrome.

Members of the SOX gene family encode proteins with homology to the HMG box DNA-binding domain of SRY, the Y-linked testis-determining gene. SOX genes are expressed during embryogenesis and are involved in the development of a wide range of different tissues. Mutations in SRY, SOX9 and SOX10 have been shown to be responsible for XY sex reversal, campomelic dysplasia and Waardenburg-Hirschsprung disease, respectively. It is likely that mutations in other SOX genes are responsible for a variety of human genetic diseases. SOX14 has been identified from a human genomic library and the mouse and chicken sequences obtained by polymerase chain reaction amplification. The SOX14 amino acid sequence is highly conserved across these species, suggesting an important role for this protein in vertebrate development. SOX14 is expressed in the neural tube and apical ectodermal ridge of the developing chicken limb. This is the only SOX gene known to be expressed in the apical ectodermal ridge, a structure that directs outgrowth of the embryonic limb bud. Human SOX14 is localised to a 1.15-Mb yeast artificial chromosome on chromosome 3q23, close to loci for BPES (blepharophimosis, ptosis, epicanthus inversus syndrome) and Mobius syndrome. Although SOX14 maps outside these loci, its expression pattern and chromosomal localisation suggest that it is a candidate gene for the limb defects frequently associated with these syndromes.

Amino Acid Sequence↗

Mobius's syndrome.

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Abducens Nerve↗