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Published in: Emergency Radiology 2/2017

01-04-2017 | Original Article

Acute traumatic intraosseous fluid sign predisposes to dynamic fracture mobility

Authors: Troy A. Hutchins, Richard H. Wiggins, Jill M. Stein, Lubdha M. Shah

Published in: Emergency Radiology | Issue 2/2017

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Abstract

The intraosseous fluid sign (IFS) in chronic osteoporotic vertebral fractures is attributed to fluid accumulation within non-healing intervertebral clefts. IFS can also be seen in acute traumatic fractures, not previously described. We hypothesize a pathophysiological mechanism for the acute traumatic intraosseous fluid sign (ATIFS) and its predisposition to dynamic fracture mobility with axial loading on upright radiographs. Retrospective analysis was performed of 41 acute thoracic and lumbar compression or stable burst fractures with both supine CT and upright plain films completed within 1 week of each other. The presence of an intravertebral cleft with fluid attenuation and vertebral body height loss was assessed on CT scans. Changes in the fractured vertebral body height and angulation were measured on upright radiographs. The ATIFS was identified in 18 (44%) of the 41 acute fractures. Mean kyphotic angle increase was significantly greater (p = 0.000) for ATIFS fractures (8.2°, SD ±4.2) than fractures without ATIFS (1.6°, SD ±3.4). There was significantly greater mean anterior (p = 0.0009) and central (p = 0.026) height loss in ATIFS fractures (4.3 mm, SD ±3.76 and 1.89 mm, SD ±4.44, respectively) compared to fractures without ATIFS (0.59 mm, SD ±2.24 and −0.52 mm, SD ±2.01, respectively). The IFS can be seen in acute traumatic vertebral fractures and show dynamic mobility. These ATIFS fractures show statistically significant greater mean height loss ratio differences and have significantly greater changes in kyphotic angulation on upright imaging when compared to fractures without ATIFS.
Literature
5.
go back to reference Mirovsky Y, Anekstein Y, Shalmon E, Peer A (2005) Vacuum clefts of the vertebral bodies. AJNR Am J Neuroradiol 26(7):1634–1640PubMed Mirovsky Y, Anekstein Y, Shalmon E, Peer A (2005) Vacuum clefts of the vertebral bodies. AJNR Am J Neuroradiol 26(7):1634–1640PubMed
6.
go back to reference Sarli M, Perez Manghi FC, Gallo R, Zanchetta JR (2005) The vacuum cleft sign: an uncommon radiological sign. Osteoporosis international: a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA 16(10):1210–1214. doi:10.1007/s00198-005-1833-4 CrossRef Sarli M, Perez Manghi FC, Gallo R, Zanchetta JR (2005) The vacuum cleft sign: an uncommon radiological sign. Osteoporosis international: a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA 16(10):1210–1214. doi:10.​1007/​s00198-005-1833-4 CrossRef
7.
go back to reference Yu CW, Hsu CY, Shih TT, Chen BB, Fu CJ (2007) Vertebral osteonecrosis: MR imaging findings and related changes on adjacent levels. AJNR Am J Neuroradiol 28(1):42–47PubMed Yu CW, Hsu CY, Shih TT, Chen BB, Fu CJ (2007) Vertebral osteonecrosis: MR imaging findings and related changes on adjacent levels. AJNR Am J Neuroradiol 28(1):42–47PubMed
8.
go back to reference Kawaguchi S, Horigome K, Yajima H, Oda T, Kii Y, Ida K, Yoshimoto M, Iba K, Takebayashi T, Yamashita T (2010) Symptomatic relevance of intravertebral cleft in patients with osteoporotic vertebral fracture. J Neurosurg Spine 13(2):267–275. doi:10.3171/2010.3.SPINE09364 CrossRefPubMed Kawaguchi S, Horigome K, Yajima H, Oda T, Kii Y, Ida K, Yoshimoto M, Iba K, Takebayashi T, Yamashita T (2010) Symptomatic relevance of intravertebral cleft in patients with osteoporotic vertebral fracture. J Neurosurg Spine 13(2):267–275. doi:10.​3171/​2010.​3.​SPINE09364 CrossRefPubMed
10.
go back to reference Jang JS, Kim DY, Lee SH (2003) Efficacy of percutaneous vertebroplasty in the treatment of intravertebral pseudarthrosis associated with noninfected avascular necrosis of the vertebral body. Spine 28(14):1588–1592PubMed Jang JS, Kim DY, Lee SH (2003) Efficacy of percutaneous vertebroplasty in the treatment of intravertebral pseudarthrosis associated with noninfected avascular necrosis of the vertebral body. Spine 28(14):1588–1592PubMed
12.
go back to reference Alexandru D, So W (2012) Evaluation and management of vertebral compression fractures. Permanente J 16(4):46–51CrossRef Alexandru D, So W (2012) Evaluation and management of vertebral compression fractures. Permanente J 16(4):46–51CrossRef
13.
go back to reference Denis F (1983) The three column spine and its significance in the classification of acute thoracolumbar spinal injuries. Spine 8(8):817–831CrossRefPubMed Denis F (1983) The three column spine and its significance in the classification of acute thoracolumbar spinal injuries. Spine 8(8):817–831CrossRefPubMed
15.
go back to reference Ghobrial GM, Jallo J (2013) Thoracolumbar spine trauma: review of the evidence. J Neurosurg Sci 57(2):115–122PubMed Ghobrial GM, Jallo J (2013) Thoracolumbar spine trauma: review of the evidence. J Neurosurg Sci 57(2):115–122PubMed
18.
go back to reference Schreiber JJ, Anderson PA, Rosas HG, Buchholz AL, Au AG (2011) Hounsfield units for assessing bone mineral density and strength: a tool for osteoporosis management. J Bone Joint Surg Am 93(11):1057–1063. doi:10.2106/JBJS.J.00160 CrossRefPubMed Schreiber JJ, Anderson PA, Rosas HG, Buchholz AL, Au AG (2011) Hounsfield units for assessing bone mineral density and strength: a tool for osteoporosis management. J Bone Joint Surg Am 93(11):1057–1063. doi:10.​2106/​JBJS.​J.​00160 CrossRefPubMed
20.
go back to reference Teng MM, Wei CJ, Wei LC, Luo CB, Lirng JF, Chang FC, Liu CL, Chang CY (2003) Kyphosis correction and height restoration effects of percutaneous vertebroplasty. AJNR Am J Neuroradiol 24(9):1893–1900PubMed Teng MM, Wei CJ, Wei LC, Luo CB, Lirng JF, Chang FC, Liu CL, Chang CY (2003) Kyphosis correction and height restoration effects of percutaneous vertebroplasty. AJNR Am J Neuroradiol 24(9):1893–1900PubMed
21.
go back to reference Alanay A, Pekmezci M, Karaeminogullari O, Acaroglu E, Yazici M, Cil A, Pijnenburg B, Genc Y, Oner FC (2007) Radiographic measurement of the sagittal plane deformity in patients with osteoporotic spinal fractures evaluation of intrinsic error. Eur Spine J: Off Publ Eur Spine Soc Eur Spinal Deformity Soc Eur Section Cervical Spine Res Soc 16(12):2126–2132. doi:10.1007/s00586-007-0474-z CrossRef Alanay A, Pekmezci M, Karaeminogullari O, Acaroglu E, Yazici M, Cil A, Pijnenburg B, Genc Y, Oner FC (2007) Radiographic measurement of the sagittal plane deformity in patients with osteoporotic spinal fractures evaluation of intrinsic error. Eur Spine J: Off Publ Eur Spine Soc Eur Spinal Deformity Soc Eur Section Cervical Spine Res Soc 16(12):2126–2132. doi:10.​1007/​s00586-007-0474-z CrossRef
23.
go back to reference Wood K, Buttermann G, Mehbod A, Garvey T, Jhanjee R, Sechriest V (2003) Operative compared with nonoperative treatment of a thoracolumbar burst fracture without neurological deficit. A prospective, randomized study. J Bone Joint Surg Am 85-A(5):773–781CrossRefPubMed Wood K, Buttermann G, Mehbod A, Garvey T, Jhanjee R, Sechriest V (2003) Operative compared with nonoperative treatment of a thoracolumbar burst fracture without neurological deficit. A prospective, randomized study. J Bone Joint Surg Am 85-A(5):773–781CrossRefPubMed
24.
go back to reference Mehta JS, Reed MR, McVie JL, Sanderson PL (2004) Weight-bearing radiographs in thoracolumbar fractures: do they influence management? Spine 29(5):564–567CrossRefPubMed Mehta JS, Reed MR, McVie JL, Sanderson PL (2004) Weight-bearing radiographs in thoracolumbar fractures: do they influence management? Spine 29(5):564–567CrossRefPubMed
27.
go back to reference Voormolen MH, van Rooij WJ, van der Graaf Y, Lohle PN, Lampmann LE, Juttmann JR, Sluzewski M (2006) Bone marrow edema in osteoporotic vertebral compression fractures after percutaneous vertebroplasty and relation with clinical outcome. AJNR Am J Neuroradiol 27(5):983–988PubMed Voormolen MH, van Rooij WJ, van der Graaf Y, Lohle PN, Lampmann LE, Juttmann JR, Sluzewski M (2006) Bone marrow edema in osteoporotic vertebral compression fractures after percutaneous vertebroplasty and relation with clinical outcome. AJNR Am J Neuroradiol 27(5):983–988PubMed
28.
go back to reference Winklhofer S, Thekkumthala-Sommer M, Schmidt D, Rufibach K, Werner CM, Wanner GA, Alkadhi H, Hodler J, Andreisek G (2013) Magnetic resonance imaging frequently changes classification of acute traumatic thoracolumbar spine injuries. Skelet Radiol 42(6):779–786. doi:10.1007/s00256-012-1551-x CrossRef Winklhofer S, Thekkumthala-Sommer M, Schmidt D, Rufibach K, Werner CM, Wanner GA, Alkadhi H, Hodler J, Andreisek G (2013) Magnetic resonance imaging frequently changes classification of acute traumatic thoracolumbar spine injuries. Skelet Radiol 42(6):779–786. doi:10.​1007/​s00256-012-1551-x CrossRef
Metadata
Title
Acute traumatic intraosseous fluid sign predisposes to dynamic fracture mobility
Authors
Troy A. Hutchins
Richard H. Wiggins
Jill M. Stein
Lubdha M. Shah
Publication date
01-04-2017
Publisher
Springer Berlin Heidelberg
Published in
Emergency Radiology / Issue 2/2017
Print ISSN: 1070-3004
Electronic ISSN: 1438-1435
DOI
https://doi.org/10.1007/s10140-016-1460-8

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