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Erschienen in: European Spine Journal 6/2017

09.01.2017 | Original Article

A pilot cadaveric study of temperature and adjacent tissue changes after exposure of magnetic-controlled growing rods to MRI

verfasst von: Selina Poon, Ryan Nixon, Stephen Wendolowski, Rachel Gecelter, Yen Hsun Chen, Jon-Paul DiMauro, Terry Amaral, Adam Graver, Daniel A. Grande

Erschienen in: European Spine Journal | Ausgabe 6/2017

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Abstract

Purpose

To test for possible thermal injury and tissue damage caused by magnetic-controlled growing rods (MCGRs) during MRI scans.

Methods

Three fresh frozen cadavers were utilized. Four MRI scans were performed: baseline, after spinal hardware implantation, and twice after MCGR implantation. Cross connectors were placed at the proximal end and at the distal end of the construct, making a complete circuit hinged at those two points. Three points were identified as potential sites for significant heating: adjacent to the proximal and distal cross connectors and adjacent to the actuators. Data collected included tissue temperatures at baseline (R1), after screw insertion (R2), and twice after rod insertions (R3 and R4). Tissue samples were taken and stained for signs of heat damage.

Results

There was a slight change in tissue temperature in the regions next to the implants between baseline and after each scan. Average temperatures (°C) increased by 0.94 (0.16–1.63) between R1 and R2, 1.6 (1.23–1.97) between R2 and R3, and 0.39 (0.03–0.83) between R3 and R4. Subsequent histological analysis revealed no signs of heat induced damage.

Conclusion

Recurrent MRI scans of patients with MCGRs may be necessary over the course of treatment. When implanted into human cadaveric tissue, these rods appear to not be a risk to the patient with respect to heating or tissue damage. Further in vivo study is warranted.

Level of evidence

N/A.
Literatur
1.
Zurück zum Zitat Yang S, Andras LM, Redding GJ, Skaggs DL (2016) Early-onset scoliosis: a review of history, current treatment, and future directions. Pediatrics 137:e20150709CrossRef Yang S, Andras LM, Redding GJ, Skaggs DL (2016) Early-onset scoliosis: a review of history, current treatment, and future directions. Pediatrics 137:e20150709CrossRef
3.
Zurück zum Zitat Campbell RM Jr, Smith MD, Mayes TC, Mangos JA, Willey-Courand DB, Kose N, Pinero RF, Alder ME, Duong HL, Surber JL (2003) The characteristics of thoracic insufficiency syndrome associated with fused ribs and congenital scoliosis. J Bone Jt Surg Am 85-a:399–408CrossRef Campbell RM Jr, Smith MD, Mayes TC, Mangos JA, Willey-Courand DB, Kose N, Pinero RF, Alder ME, Duong HL, Surber JL (2003) The characteristics of thoracic insufficiency syndrome associated with fused ribs and congenital scoliosis. J Bone Jt Surg Am 85-a:399–408CrossRef
4.
Zurück zum Zitat Pehrsson K, Larsson S, Oden A, Nachemson A (1992) Long-term follow-up of patients with untreated scoliosis. A study of mortality, causes of death, and symptoms. Spine (Phila Pa 1976) 17:1091–1096CrossRef Pehrsson K, Larsson S, Oden A, Nachemson A (1992) Long-term follow-up of patients with untreated scoliosis. A study of mortality, causes of death, and symptoms. Spine (Phila Pa 1976) 17:1091–1096CrossRef
5.
Zurück zum Zitat Robinson CM, McMaster MJ (1996) Juvenile idiopathic scoliosis. Curve patterns and prognosis in one hundred and nine patients. J Bone Jt Surg Am 78:1140–1148CrossRef Robinson CM, McMaster MJ (1996) Juvenile idiopathic scoliosis. Curve patterns and prognosis in one hundred and nine patients. J Bone Jt Surg Am 78:1140–1148CrossRef
7.
Zurück zum Zitat Akbarnia BA, Marks DS, Boachie-Adjei O, Thompson AG, Asher MA (2005) Dual growing rod technique for the treatment of progressive early-onset scoliosis: a multicenter study. Spine (Phila Pa 1976) 30:S46–S57CrossRef Akbarnia BA, Marks DS, Boachie-Adjei O, Thompson AG, Asher MA (2005) Dual growing rod technique for the treatment of progressive early-onset scoliosis: a multicenter study. Spine (Phila Pa 1976) 30:S46–S57CrossRef
8.
Zurück zum Zitat Bess S, Akbarnia BA, Thompson GH, Sponseller PD, Shah SA, El Sebaie H, Boachie-Adjei O, Karlin LI, Canale S, Poe-Kochert C, Skaggs DL (2010) Complications of growing-rod treatment for early-onset scoliosis: analysis of one hundred and forty patients. J Bone Jt Surg Am 92:2533–2543. doi:10.2106/jbjs.i.01471 CrossRef Bess S, Akbarnia BA, Thompson GH, Sponseller PD, Shah SA, El Sebaie H, Boachie-Adjei O, Karlin LI, Canale S, Poe-Kochert C, Skaggs DL (2010) Complications of growing-rod treatment for early-onset scoliosis: analysis of one hundred and forty patients. J Bone Jt Surg Am 92:2533–2543. doi:10.​2106/​jbjs.​i.​01471 CrossRef
9.
Zurück zum Zitat Akbarnia BA, Cheung K, Noordeen H, Elsebaie H, Yazici M, Dannawi Z, Kabirian N (2013) Next generation of growth-sparing techniques: preliminary clinical results of a magnetically controlled growing rod in 14 patients with early-onset scoliosis. Spine (Phila Pa 1976) 38:665–670. doi:10.1097/BRS.0b013e3182773560 CrossRef Akbarnia BA, Cheung K, Noordeen H, Elsebaie H, Yazici M, Dannawi Z, Kabirian N (2013) Next generation of growth-sparing techniques: preliminary clinical results of a magnetically controlled growing rod in 14 patients with early-onset scoliosis. Spine (Phila Pa 1976) 38:665–670. doi:10.​1097/​BRS.​0b013e3182773560​ CrossRef
10.
Zurück zum Zitat Hickey BA, Towriss C, Baxter G, Yasso S, James S, Jones A, Howes J, Davies P, Ahuja S (2014) Early experience of MAGEC magnetic growing rods in the treatment of early onset scoliosis. Eur Spine J 23(Suppl 1):S61–S65. doi:10.1007/s00586-013-3163-0 CrossRefPubMed Hickey BA, Towriss C, Baxter G, Yasso S, James S, Jones A, Howes J, Davies P, Ahuja S (2014) Early experience of MAGEC magnetic growing rods in the treatment of early onset scoliosis. Eur Spine J 23(Suppl 1):S61–S65. doi:10.​1007/​s00586-013-3163-0 CrossRefPubMed
12.
13.
Zurück zum Zitat Gupta P, Lenke LG, Bridwell KH (1998) Incidence of neural axis abnormalities in infantile and juvenile patients with spinal deformity. Is a magnetic resonance image screening necessary? Spine (Phila Pa 1976) 23:206–210CrossRef Gupta P, Lenke LG, Bridwell KH (1998) Incidence of neural axis abnormalities in infantile and juvenile patients with spinal deformity. Is a magnetic resonance image screening necessary? Spine (Phila Pa 1976) 23:206–210CrossRef
15.
18.
Zurück zum Zitat Muthusubramanian M, Limson KS, Julian R (2005) Analysis of rugae in burn victims and cadavers to simulate rugae identification in cases of incineration and decomposition. J Forensic Odontostomatol 23:26–29PubMed Muthusubramanian M, Limson KS, Julian R (2005) Analysis of rugae in burn victims and cadavers to simulate rugae identification in cases of incineration and decomposition. J Forensic Odontostomatol 23:26–29PubMed
19.
Zurück zum Zitat Willinek WA, Schild HH (2008) Clinical advantages of 3.0 T MRI over 1.5 T. Eur J Radiol 65:2–14CrossRefPubMed Willinek WA, Schild HH (2008) Clinical advantages of 3.0 T MRI over 1.5 T. Eur J Radiol 65:2–14CrossRefPubMed
Metadaten
Titel
A pilot cadaveric study of temperature and adjacent tissue changes after exposure of magnetic-controlled growing rods to MRI
verfasst von
Selina Poon
Ryan Nixon
Stephen Wendolowski
Rachel Gecelter
Yen Hsun Chen
Jon-Paul DiMauro
Terry Amaral
Adam Graver
Daniel A. Grande
Publikationsdatum
09.01.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
European Spine Journal / Ausgabe 6/2017
Print ISSN: 0940-6719
Elektronische ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-016-4918-1

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