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Brain Stem Hypoplasia Associated with Cri-du-Chat Syndrome

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960 Korean J Radiol 14(6), Nov/Dec 2013 kjronline.org

INTRODUCTION

Cri-du-Chat syndrome, or “cat-cry syndrome,” is due to a large deletion of the terminal short arm of chromosome 5. Therefore, the disorder is also called the 5p-syndrome.

Characteristic clinical manifestations of this syndrome are cat-like high-pitched cries, psychomotor retardation, microcephaly and hypertelorism. Cri-du-Chat syndrome is a rare genetic abnormality, and to the best of our knowledge, the associated neuroradiological findings are rarely being reported. We herein report brain abnormalities observed in MRI of a 1-year-old girl with Cri-du-Chat syndrome.

Brain Stem Hypoplasia Associated with Cri-du-Chat Syndrome

Jin Ho Hong, MD, Ha Young Lee, MD, Myung Kwan Lim, MD, Mi Young Kim, MD, Young Hye Kang, MD, Kyung Hee Lee, MD, Soon Gu Cho, MD

All authors: Department of Radiology, Inha University Hospital, Inha University School of Medicine, Incheon 400-711, Korea

Cri-du-Chat syndrome, also called the 5p-syndrome, is a rare genetic abnormality, and only few cases have been reported on its brain MRI findings. We describe the magnetic resonance imaging findings of a 1-year-old girl with Cri-du-Chat syndrome who showed brain stem hypoplasia, particularly in the pons, with normal cerebellum and diffuse hypoplasia of the cerebral hemispheres. We suggest that Cri-du-Chat syndrome chould be suspected in children with brain stem hypoplasia, particularly for those with high-pitched cries.

Index terms: Cri-du-Chat syndrome; Genetic disorder; Brain stem hypoplasia; Brain MRI

Received April 30, 2013; accepted after revision July 19, 2013.

Corresponding author: Ha Young Lee, MD, Department of Radiology, Inha University College of Medicine, 27 Inhang-ro, Jung-gu, Incheon 400-711, Korea.

• Tel: (8232) 890-2114 • Fax: (8232) 890-2743

• E-mail: pengoon@gmail.com

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

Case Report

| Pediatric Imaging

Korean J Radiol 2013;14(6):960-962

CASE REPORT

A girl aged 1 year and 4 months was admitted for evaluation of psychomotor retardation and an operation for exotropia. She was born at term (gestational age: 40 weeks) by cesarean delivery after an uneventful pregnancy, and was the first child of healthy, unrelated parents. The family history was unremarkable. On admission, she was presented with a characteristic high-pitched cry and microcephaly. She showed delayed motor functions and crawling. She was able to sit unassisted but unable to stand; her developmental characteristics lagged behind for the normal chronologic age. On neurologic examination, she had left leg hypotonia, with normal tendon reflexes and normal cranial nerve signs.

When she was 6 months old, the ventricular septal defect was detected by echocardiography. Chromosome analysis revealed 46,XX,del (5) (p15.2) one month after delivery, resulting in a diagnosis of 5p-syndrome. When the patient was 1-year-old, MRI revealed brain stem hypoplasia (most prominently in the pons), with normal cerebellum, diffuse mild atrophy of the deep white matter of both cerebral hemispheres, as well as mild thinning of the corpus callosum and mega cisterna magna. The anterior limb of the internal capsules on both sides showed reduced http://dx.doi.org/10.3348/kjr.2013.14.6.960

pISSN 1229-6929 · eISSN 2005-8330

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Korean J Radiol 14(6), Nov/Dec 2013

kjronline.org 961

Brain Stem Hypoplasia

are mainly brain stem atrophy (with predominant pontine involvement), with or without cerebellar atrophy (1-6).

Other associated findings were thinning (or agenesis) of the corpus callosum, mega cisterna magna, fourth ventricle enlargement, lateral ventricle dilatation, cerebellar vermian atrophy (or agenesis), cerebellar cortical thickening and incompleted arborization of white matters (1-6). Our case showed hypoplasia of the brain stem (prominent in the pons) with normal cerebellum, diffused mild atrophy of the deep white matter in both cerebral hemispheres, mild thinning of the corpus callosum and mega cistern magna.

myelination, which decreased as compared to normal myelination patterns for 1-year-old infants (Fig. 1).

DISCUSSION

Neuroradiological findings, particularly MRI findings, regarding Cri-du-Chat syndrome are rarely being reported.

Currently, there are only six studies reporting MR features of its associated brain abnormalities (1-6). In our case, the MRI revealed hypoplasia of the brain stem, which was most prominent in the pons. Reported neuroradiological findings

A

C

B

D Fig. 1. MR images of 1 year and 4 months girl with Cri-du-Chat syndrome.

Sagittal T1-weighted (A) and axial T2-weighted (B-D) images show hypoplasia of brainstem, most prominently in pons, with normal cerebellum, thinning of corpus callosum and mega cisterna magna (A, C). Mild atrophy of both frontal and temporal lobes and decreased myelination in both anterior limbs of internal capsules (arrows) are seen (D).

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Korean J Radiol 14(6), Nov/Dec 2013 kjronline.org 962

Hong et al.

Barkovich et al. (7) suggested developmental

classifications of brain stem malformations according to MRI findings. Pontine hypoplasia was the most common finding and was sometimes associated with cerebellar hypoplasia, microcephaly, and corpus callosum anomalies. Cri-du- Chat syndrome was one cause of brain stem hypoplasia.

According to previous case reports, including our case, supratentorial abnormalities such as atrophic changes in cerebral white matter and corpus callosum atrophy are often accompanied by pontine hypoplasia and could be explained as secondary changes resulting from brain stem hypoplasia (1-6, 7). Some reports have described skull base malformations and their relationships to brain stem hypoplasia in this syndrome. In a report of skull base malformation in 23 patients with Cri-du-Chat syndrome, sella turcica and clivus malformations and reduced cranial base angles were described (8). The authors suggested that derangements during notochord developments around the specific cranial base region, from ventral neuron migration to the larynx and dorsal development of the rhombencephalic-derived brain stem, pons, and cerebellum, are related to malformations of the cranial base-brain stem and laryngeal region resulting in high-pitched cries in patients with Cri-du-Chat syndrome.

Although brain MRI findings of Cri-du-Chat syndrome are rarely reported, the most common finding was pontine hypoplasia according to previous case reports, as well as our current report (1-6). We suggested that Cri-du-Chat syndrome should be included in a differential diagnosis of

brain stem hypoplasia for children with a history of high- pitched cries.

REFERENCES

1. Tamraz J, Rethoré MO, Lejeune J, Outin C, Goepel R, Stievenart JL, et al. [Brain morphometry using MRI in Cri- du-Chat Syndrome. Report of seven cases with review of the literature]. Ann Genet 1993;36:75-87

2. De Michele G, Presta M, Di Salle F, Serra L, Mazzaccara A, Della Rocca G, et al. Cerebellar vermis hypoplasia in a case of cri-du-chat syndrome. Acta Neurol (Napoli) 1993;15:92-96 3. Arts WF, Hofstee Y, Drejer GF, Beverstock GC, Oosterwijk JC.

Cerebellar and brainstem hypoplasia in a child with a partial monosomy for the short arm of chromosome 5 and partial trisomy for the short arm of chromosome 10. Neuropediatrics 1995;26:41-44

4. Ninchoji T, Takanashi J. Pontine hypoplasia in 5p-syndrome: a key MRI finding for a diagnosis. Brain Dev 2010;32:571-573 5. Selim LA, Zaki MS, Hussein HA, Saleem SN, Kotoury AS, Issa

MY. Developmental abnormalities of mid and hindbrain:

A study of 23 Egyptian patients. Egypt J Med Hum Genet 2008;9:215-236

6. Vialard F, Robyr R, Hillion Y, Molina Gomes D, Selva J, Ville Y.

Dandy-Walker syndrome and corpus callosum agenesis in 5p deletion. Prenat Diagn 2005;25:311-313

7. Barkovich AJ, Millen KJ, Dobyns WB. A developmental classification of malformations of the brainstem. Ann Neurol 2007;62:625-639

8. Kjaer I, Niebuhr E. Studies of the cranial base in 23 patients with cri-du-chat syndrome suggest a cranial developmental field involved in the condition. Am J Med Genet 1999;82:6-14

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