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Published in: Acta Neurochirurgica 6/2021

01-06-2021 | Magnetic Resonance Imaging | Original Article - Spine - Other

MRI characteristics of syringomyelia associated with foramen magnum arachnoiditis: differentiation from Chiari malformation

Authors: Keisuke Hatano, Hiroki Ohashi, Daichi Kawamura, Akira Isoshima, Hiroyasu Nagashima, Satoru Tochigi, So Ohashi, Jun Takei, Akihiko Teshigawara, Satoshi Tani, Yuichi Murayama, Toshiaki Abe

Published in: Acta Neurochirurgica | Issue 6/2021

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Abstract

Background

It is important to distinguish foramen magnum arachnoiditis (FMA) from Chiari malformation (CM) before surgery because the operative strategies for these diseases differ. In the current study, we compared pretreatment magnetic resonance imaging (MRI) of FMA with CM and investigated the MRI findings useful to differentiate between these diseases.

Methods

We retrospectively reviewed patients with FMA or CM aged ≥ 18 years who underwent surgeries at our institution between 2007 and 2019. The morphologies of the syrinx, neural elements, and posterior cranial fossa were preoperatively evaluated with MRI. We used the receiver operating characteristic (ROC) curve for the fourth ventricle-to-syrinx distance (FVSD).

Results

Ten patients with FMAs and 179 with CMs were included. FVSD in the FMA group was significantly shorter than that in the CM group (7.5 mm [IQR, 2.8–10 mm] in FMA vs. 29.9 mm [IQR, 16.3–52.9 mm] in CM, p < 0.0001). The other MRI findings that showed the height, size, and length of the syrinx; size of the foramen magnum; degree of cerebellar tonsillar descent; shape of the cerebellar tonsil; and dorsal subarachnoid space at the foramen magnum differed significantly between the two groups. The ROC curve analysis showed that patients whose FVSD was less than 11 mm could be diagnosed with FMA with a specificity of 90% and sensitivity of 96%.

Conclusions

A more cranial syrinx development (FVSD < 11 mm) appears to be the characteristic MRI finding in FMA.
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Literature
1.
go back to reference Appleby A, Bradley WG, Foster JB, Hankinson J, Hudgson P (1969) Syringomyelia due to chronic arachnoiditis at the foramen magnum. J Neurol Sci 8:451–464CrossRef Appleby A, Bradley WG, Foster JB, Hankinson J, Hudgson P (1969) Syringomyelia due to chronic arachnoiditis at the foramen magnum. J Neurol Sci 8:451–464CrossRef
2.
go back to reference Azahraa Haddad F, Qaisi I, Joudeh N, Dajani H, Jumah F, Elmashala A, Adeeb N, Chern JJ, Tubbs RS (2018) The newer classifications of the chiari malformations with clarifications: an anatomical review. Clin Anat 31:314–322CrossRef Azahraa Haddad F, Qaisi I, Joudeh N, Dajani H, Jumah F, Elmashala A, Adeeb N, Chern JJ, Tubbs RS (2018) The newer classifications of the chiari malformations with clarifications: an anatomical review. Clin Anat 31:314–322CrossRef
3.
go back to reference Blegvad C, Grotenhuis JA, Juhler M (2014) Syringomyelia: a practical, clinical concept for classification. Acta Neurochir (Wien) 156:2127–2138CrossRef Blegvad C, Grotenhuis JA, Juhler M (2014) Syringomyelia: a practical, clinical concept for classification. Acta Neurochir (Wien) 156:2127–2138CrossRef
4.
go back to reference Bollo RJ, Riva-Cambrin J, Brockmeyer MM, Brockmeyer DL (2012) Complex Chiari malformations in children: an analysis of preoperative risk factors for occipitocervical fusion. J Neurosurg Pediatr 10:134–141CrossRef Bollo RJ, Riva-Cambrin J, Brockmeyer MM, Brockmeyer DL (2012) Complex Chiari malformations in children: an analysis of preoperative risk factors for occipitocervical fusion. J Neurosurg Pediatr 10:134–141CrossRef
5.
go back to reference Caplan LR, Norohna AB, Amico LL (1990) Syringomyelia and arachnoiditis. J Neurol Neurosurg Psychiatry 53:106–113CrossRef Caplan LR, Norohna AB, Amico LL (1990) Syringomyelia and arachnoiditis. J Neurol Neurosurg Psychiatry 53:106–113CrossRef
6.
go back to reference Davidoff CL, Liu S, Wong JHY, Koustais S, Rogers JM, Stoodley MA (2017) Treatment of syringomyelia in patients with arachnoiditis at the craniocervical junction. World Neurosurg 107:565–573CrossRef Davidoff CL, Liu S, Wong JHY, Koustais S, Rogers JM, Stoodley MA (2017) Treatment of syringomyelia in patients with arachnoiditis at the craniocervical junction. World Neurosurg 107:565–573CrossRef
7.
go back to reference GARDNER WJ, (1965) Hydrodynamic mechanism of syringomyelia: its relationship to myelocele. J Neurol Neurosurg Psychiatry 28:247–259CrossRef GARDNER WJ, (1965) Hydrodynamic mechanism of syringomyelia: its relationship to myelocele. J Neurol Neurosurg Psychiatry 28:247–259CrossRef
8.
go back to reference Gimenez-Roldan S, Esteban A, Benito C (1974) Communicating syringomyelia following cured tuberculous meningitis. J Neurol Sci 23:185–197CrossRef Gimenez-Roldan S, Esteban A, Benito C (1974) Communicating syringomyelia following cured tuberculous meningitis. J Neurol Sci 23:185–197CrossRef
9.
go back to reference Godzik J, Kelly MP, Radmanesh A, Kim D, Holekamp TF, Smyth MD, Lenke LG, Shimony JS, Park TS, Leonard J, Limbrick DD (2014) Relationship of syrinx size and tonsillar descent to spinal deformity in Chiari malformation Type I with associated syringomyelia. J Neurosurg Pediatr 13:368–374CrossRef Godzik J, Kelly MP, Radmanesh A, Kim D, Holekamp TF, Smyth MD, Lenke LG, Shimony JS, Park TS, Leonard J, Limbrick DD (2014) Relationship of syrinx size and tonsillar descent to spinal deformity in Chiari malformation Type I with associated syringomyelia. J Neurosurg Pediatr 13:368–374CrossRef
10.
go back to reference Grabb PA, Mapstone TB, Oakes WJ (1999) Ventral brain stem compression in pediatric and young adult patients with Chiari I malformations. Neurosurgery 44:520–527; discussion 527–528 Grabb PA, Mapstone TB, Oakes WJ (1999) Ventral brain stem compression in pediatric and young adult patients with Chiari I malformations. Neurosurgery 44:520–527; discussion 527–528
11.
go back to reference Greitz D (2006) Unraveling the riddle of syringomyelia. Neurosurg Rev 29:251–263; discussion 264 Greitz D (2006) Unraveling the riddle of syringomyelia. Neurosurg Rev 29:251–263; discussion 264
12.
go back to reference Heidary M, Respondek M, Klekamp J (2021) Histological and intraoperative evaluations of the arachnoid in patients with Chiari I malformation. Acta Neurochir (Wien) 163:219–225CrossRef Heidary M, Respondek M, Klekamp J (2021) Histological and intraoperative evaluations of the arachnoid in patients with Chiari I malformation. Acta Neurochir (Wien) 163:219–225CrossRef
13.
go back to reference Heiss JD, Patronas N, DeVroom HL, Shawker T, Ennis R, Kammerer W, Eidsath A, Talbot T, Morris J, Eskioglu E, Oldfield EH (1999) Elucidating the pathophysiology of syringomyelia. J Neurosurg 91:553–562CrossRef Heiss JD, Patronas N, DeVroom HL, Shawker T, Ennis R, Kammerer W, Eidsath A, Talbot T, Morris J, Eskioglu E, Oldfield EH (1999) Elucidating the pathophysiology of syringomyelia. J Neurosurg 91:553–562CrossRef
14.
go back to reference Ikushima I, Korogi Y, Hirai T, Yamashita Y (2007) High-resolution constructive interference in a steady state imaging of cervicothoracic adhesive arachnoiditis. J Comput Assist Tomogr 31:143–147CrossRef Ikushima I, Korogi Y, Hirai T, Yamashita Y (2007) High-resolution constructive interference in a steady state imaging of cervicothoracic adhesive arachnoiditis. J Comput Assist Tomogr 31:143–147CrossRef
15.
go back to reference Iskandar BJ, Hedlund GL, Grabb PA, Oakes WJ (1998) The resolution of syringohydromyelia without hindbrain herniation after posterior fossa decompression. J Neurosurg 89:212–216CrossRef Iskandar BJ, Hedlund GL, Grabb PA, Oakes WJ (1998) The resolution of syringohydromyelia without hindbrain herniation after posterior fossa decompression. J Neurosurg 89:212–216CrossRef
16.
go back to reference Klekamp J (2012) Surgical treatment of Chiari I malformation—analysis of intraoperative findings, complications, and outcome for 371 foramen magnum decompressions. Neurosurgery 71:365–380; discussion 380 Klekamp J (2012) Surgical treatment of Chiari I malformation—analysis of intraoperative findings, complications, and outcome for 371 foramen magnum decompressions. Neurosurgery 71:365–380; discussion 380
17.
go back to reference Klekamp J, Iaconetta G, Batzdorf U, Samii M (2002) Syringomyelia associated with foramen magnum arachnoiditis. J Neurosurg 97:317–322PubMed Klekamp J, Iaconetta G, Batzdorf U, Samii M (2002) Syringomyelia associated with foramen magnum arachnoiditis. J Neurosurg 97:317–322PubMed
18.
go back to reference Landis JR, Koch GG (1977) The measurement of observer agreement for categorical data. Biometrics 33:159–174CrossRef Landis JR, Koch GG (1977) The measurement of observer agreement for categorical data. Biometrics 33:159–174CrossRef
19.
20.
go back to reference Milhorat TH, Capocelli AL Jr, Anzil AP, Kotzen RM, Milhorat RH (1995) Pathological basis of spinal cord cavitation in syringomyelia: analysis of 105 autopsy cases. J Neurosurg 82:802–812CrossRef Milhorat TH, Capocelli AL Jr, Anzil AP, Kotzen RM, Milhorat RH (1995) Pathological basis of spinal cord cavitation in syringomyelia: analysis of 105 autopsy cases. J Neurosurg 82:802–812CrossRef
21.
go back to reference Milhorat TH, Kotzen RM, Anzil AP (1994) Stenosis of central canal of spinal cord in man: incidence and pathological findings in 232 autopsy cases. J Neurosurg 80:716–722CrossRef Milhorat TH, Kotzen RM, Anzil AP (1994) Stenosis of central canal of spinal cord in man: incidence and pathological findings in 232 autopsy cases. J Neurosurg 80:716–722CrossRef
22.
go back to reference Newman PK, Terenty TR, Foster JB (1981) Some observations on the pathogenesis of syringomyelia. J Neurol Neurosurg Psychiatry 44:964–969CrossRef Newman PK, Terenty TR, Foster JB (1981) Some observations on the pathogenesis of syringomyelia. J Neurol Neurosurg Psychiatry 44:964–969CrossRef
23.
go back to reference Nishikawa M, Sakamoto H, Hakuba A, Nakanishi N, Inoue Y (1997) Pathogenesis of Chiari malformation: a morphometric study of the posterior cranial fossa. J Neurosurg 86:40–47CrossRef Nishikawa M, Sakamoto H, Hakuba A, Nakanishi N, Inoue Y (1997) Pathogenesis of Chiari malformation: a morphometric study of the posterior cranial fossa. J Neurosurg 86:40–47CrossRef
24.
go back to reference Perrini P, Anania Y, Cagnazzo F, Benedetto N, Morganti R, Di Carlo DT (2021) Radiological outcome after surgical treatment of syringomyelia-Chiari I complex in adults: a systematic review and meta-analysis. Neurosurg Rev 44:177–187CrossRef Perrini P, Anania Y, Cagnazzo F, Benedetto N, Morganti R, Di Carlo DT (2021) Radiological outcome after surgical treatment of syringomyelia-Chiari I complex in adults: a systematic review and meta-analysis. Neurosurg Rev 44:177–187CrossRef
25.
go back to reference Shoja MM, Johal J, Oakes WJ, Tubbs RS (2018) Embryology and pathophysiology of the Chiari I and II malformations: A comprehensive review. Clin Anat 31:202–215CrossRef Shoja MM, Johal J, Oakes WJ, Tubbs RS (2018) Embryology and pathophysiology of the Chiari I and II malformations: A comprehensive review. Clin Anat 31:202–215CrossRef
26.
go back to reference Shoja MM, Ramdhan R, Jensen CJ, Chern JJ, Oakes WJ, Tubbs RS (2018) Embryology of the craniocervical junction and posterior cranial fossa, part II: embryogenesis of the hindbrain. Clin Anat 31:488–500CrossRef Shoja MM, Ramdhan R, Jensen CJ, Chern JJ, Oakes WJ, Tubbs RS (2018) Embryology of the craniocervical junction and posterior cranial fossa, part II: embryogenesis of the hindbrain. Clin Anat 31:488–500CrossRef
27.
go back to reference Smoker WR (1994) Craniovertebral junction: normal anatomy, craniometry, and congenital anomalies. Radiographics 14:255–277CrossRef Smoker WR (1994) Craniovertebral junction: normal anatomy, craniometry, and congenital anomalies. Radiographics 14:255–277CrossRef
28.
go back to reference Smoker WR, Khanna G (2008) Imaging the craniocervical junction. Childs Nerv Syst 24:1123–1145CrossRef Smoker WR, Khanna G (2008) Imaging the craniocervical junction. Childs Nerv Syst 24:1123–1145CrossRef
29.
go back to reference Strahle J, Muraszko KM, Kapurch J, Bapuraj JR, Garton HJ, Maher CO (2011) Chiari malformation Type I and syrinx in children undergoing magnetic resonance imaging. J Neurosurg Pediatr 8:205–213CrossRef Strahle J, Muraszko KM, Kapurch J, Bapuraj JR, Garton HJ, Maher CO (2011) Chiari malformation Type I and syrinx in children undergoing magnetic resonance imaging. J Neurosurg Pediatr 8:205–213CrossRef
30.
go back to reference Talacchi A, Meneghelli P, Borghesi I, Locatelli F (2016) Surgical management of syringomyelia unrelated to Chiari malformation or spinal cord injury. Eur Spine J 25:1836–1846CrossRef Talacchi A, Meneghelli P, Borghesi I, Locatelli F (2016) Surgical management of syringomyelia unrelated to Chiari malformation or spinal cord injury. Eur Spine J 25:1836–1846CrossRef
31.
go back to reference Tubbs RS, Elton S, Grabb P, Dockery SE, Bartolucci AA, Oakes WJ (2001) Analysis of the posterior fossa in children with the Chiari 0 malformation. Neurosurgery 48:1050–1054; discussion 1054–1055 Tubbs RS, Elton S, Grabb P, Dockery SE, Bartolucci AA, Oakes WJ (2001) Analysis of the posterior fossa in children with the Chiari 0 malformation. Neurosurgery 48:1050–1054; discussion 1054–1055
32.
go back to reference Tubbs RS, Iskandar BJ, Bartolucci AA, Oakes WJ (2004) A critical analysis of the Chiari 1.5 malformation. J Neurosurg 101:179–183CrossRef Tubbs RS, Iskandar BJ, Bartolucci AA, Oakes WJ (2004) A critical analysis of the Chiari 1.5 malformation. J Neurosurg 101:179–183CrossRef
33.
go back to reference Tubbs RS, Smyth MD, Wellons JC 3rd, Oakes WJ (2004) Arachnoid veils and the Chiari I malformation. J Neurosurg 100:465–467PubMed Tubbs RS, Smyth MD, Wellons JC 3rd, Oakes WJ (2004) Arachnoid veils and the Chiari I malformation. J Neurosurg 100:465–467PubMed
34.
35.
go back to reference Williams B (1980) On the pathogenesis of syringomyelia: a review. J R Soc Med 73:798–806CrossRef Williams B (1980) On the pathogenesis of syringomyelia: a review. J R Soc Med 73:798–806CrossRef
36.
go back to reference Williams B (1976) Cerebrospinal fluid pressure changes in response to coughing. Brain 99:331–346CrossRef Williams B (1976) Cerebrospinal fluid pressure changes in response to coughing. Brain 99:331–346CrossRef
Metadata
Title
MRI characteristics of syringomyelia associated with foramen magnum arachnoiditis: differentiation from Chiari malformation
Authors
Keisuke Hatano
Hiroki Ohashi
Daichi Kawamura
Akira Isoshima
Hiroyasu Nagashima
Satoru Tochigi
So Ohashi
Jun Takei
Akihiko Teshigawara
Satoshi Tani
Yuichi Murayama
Toshiaki Abe
Publication date
01-06-2021
Publisher
Springer Vienna
Published in
Acta Neurochirurgica / Issue 6/2021
Print ISSN: 0001-6268
Electronic ISSN: 0942-0940
DOI
https://doi.org/10.1007/s00701-021-04845-9

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