Detection of low back pain using ph level-dependent imaging of the intervertebral disc using the ratio of R dispersion and -OH chemical exchange saturation transfer (RROC)

Qi Liu, Wafa Tawackoli, Gadi Pelled, Zhaoyang Fan, Ning Jin, Yutaka Natsuaki, Xiaoming Bi, Avrom Gart, Hyun Bae, Dan Gazit, Debiao Li*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

Purpose: Low pH is associated with intervertebral disc (IVD)-generated low back pain (LBP). The purpose of this work was to develop an in vivo pH level-dependent magnetic resonance imaging (MRI) method for detecting discogenic LBP, without using exogenous contrast agents. Methods: The ratio of R dispersion and chemical exchange saturation transfer (CEST) (RROC) was used for pH-level dependent imaging of the IVD while eliminating the effect of labile proton concentration. The technique was validated by numerical simulations and studies on phantoms and ex vivo porcine spines. Four male (ages 42.8 ± 18.3) and two female patients (ages 55.5 ± 2.1) with LBP and scheduled for discography were examined with the method on a 3.0 Tesla MR scanner. RROC measurements were compared with discography outcomes using paired t-test. Results: Simulation and phantom results indicated RROC is a concentration independent and pH level-dependent technique. Porcine spine study results found higher RROC value was related to lower pH level. Painful discs based on discography had significant higher RROC values than those with negative diagnosis (P < 0.05). Conclusion: RROC imaging is a promising pH level dependent MRI technique that has the potential to be a noninvasive imaging tool to detect painful IVDs in vivo.

Original languageEnglish
Pages (from-to)1196-1205
Number of pages10
JournalMagnetic Resonance in Medicine
Volume73
Issue number3
DOIs
StatePublished - 1 Mar 2015

Bibliographical note

Publisher Copyright:
© 2014 Wiley Periodicals, Inc.

Keywords

  • CEST
  • Intervertebral disc
  • R dispersion
  • RROC
  • pH imaging

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