Published October 2006 | Version v1
Journal article

Diffraction-enhanced imaging of the rat spine

  • 1. Cleveland Clinic, Dept. of Neurosurgery, Cleveland, Ohio (United States)
  • 2. Univ. of Saskatchewan, Royal Univ. Hospital, Div. of Orthopaedic Surgery, Saskatoon, Saskatchewan (Canada)
  • 3. Univ. of Saskatchewan, Royal Univ. Hospital, Div. of Neurosurgery, Saskatoon, Saskatchewan (Canada)
  • 4. Univ. of Saskatchewan, Dept. of Anatomy and Cell Biology, Saskatoon, Saskatchewan (Canada)
  • 5. Univ. of North Carolina, Dept. of Biomedical Engineering, Chapel Hill, North Carolina (United States)
  • 6. Brookhaven National Laboratory, National Synchrotron Light Source, Upton, New York (United States)

Description

Diffraction-enhanced imaging (DEI) uses monochromatic synchrotron X-rays to image tissue. This technique has been shown to produce superior bony and soft tissue characterization when compared with conventional absorption radiography. Application of this imaging modality is under investigation, and this study represents the first DEI analysis of the vertebral column. Four male Wistar rats were studied. Spine muscle blocks were imaged in 3 of the rats after thoracic laminectomy (n = 1), after lumbar laminectomy (n = 1), and in a control condition (n = 1). The fourth rat was imaged as a whole animal control. Conventional radiography and synchrotron-supported DEI at 40 keV were performed on all specimens. We compared images side by side, using a nonvalidated subjective assessment technique. DEI produced superior visualization of the vertebral anatomy, compared with conventional absorption radiography for all specimens. Greater bony and soft tissue detail was noted, with improved image contrast. In addition to imaging the anatomical structures, DEI showed the polyglactin suture material used for fascial closure in the 2 animals that underwent surgery. Artifact from air bubbles was present on DEI images but not on plain radiographs. This represents the first use of DEI, a novel imaging modality, to image the vertebral column. It provides excellent anatomic detail with superior contrast and visualization of both bone and soft tissue when compared with conventional radiography. Future applications of this investigational technique may include analysis of spinal fusion as well as degenerative and neoplastic conditions of the spine. (author)

Additional details

Publishing Information

Journal Title
Canadian Association of Radiologists Journal
Journal Volume
57
Journal Issue
4
Journal Page Range
p. 204-210
ISSN
0846-5371

Optional Information

Notes
9 refs., 7 figs.