Semin Musculoskelet Radiol 2001; 05(3): 275-288
DOI: 10.1055/s-2001-17549
Copyright © 2001 by Thieme Medical Publishers, Inc., 333 Seventh Avenue, New York, NY 10001, USA. Tel.: +1(212) 584-4662

Magnetic Resonance Imaging of the Wrist in Rheumatoid Arthritis

Charles G. Peterfy
  • Synarc, Inc., San Francisco, California
Further Information

Publication History

Publication Date:
01 October 2001 (online)

ABSTRACT

Despite the extraordinary advances made in medical imaging over the past two decades and the central role that magnetic resonance imaging (MRI) and other sophisticated technologies now play in routine clinical practice, rheumatology has benefited relatively little from these advances thus far. Over the past few years, however, evidence has accumulated to show that MRI can identify joint damage in patients with rheumatoid arthritis earlier and more sensitively than other techniques can, and that MRI can directly visualize and monitor changes in synovium and bone that precede actual bone erosion. Much of this development is being driven by the pharmaceutical and biotechnology industries as they search for novel therapies to combat this disease. Accordingly, the imaging tools that ultimately will be used to direct patients to specific therapies and then to monitor treatment effectiveness and safety are currently being refined and validated in rigorous multicenter and multinational clinical trials aimed at gaining regulatory approval of these new therapies. As these therapies become available for clinical use, radiologists can anticipate increased demand for expertise and experience in evaluating disease progression and treatment response with these techniques and the emergence of MRI systems specifically adapted for this application. The following discussion reviews the current status of this development, and points to areas where further advances are anticipated in the near future.

REFERENCES

  • 1 Peterfy C. Imaging techniques. In: Klippel J, Dieppe P, eds. Rheumatology, 2nd ed Philadelphia: CV Mosby 1997: 14.1-14.18
  • 2 Budinger T, Lauterbur P. Nuclear magnetic resonance technology for medical studies.  Science . 1984;  226 288-298
  • 3 Pykett I. NMR imaging in medicine.  Sci Am . 1982;  246 78-88
  • 4 Jorgensen C, Cyteval C, Anaya J, Baron M, Lamarque J, Sany J. Sensitivity of magnetic resonance imaging of the wrist in very early rheumatoid arthritis.  Clin Exp Rheumatol . 1993;  11 163-168
  • 5 McQueen F, Stewart N, Crabbe J. Magnetic resonance imaging of the wrist in early rheumatoid arthritis reveals a high prevalence of erosions at four months after symptom onset.  Ann Rheum Dis . 1998;  57 350-360
  • 6 Peterfy C, Dion E, Miaux Y. Comparison of MRI and X-ray for monitoring erosive changes in rheumatoid arthritis.  Arthritis Rheum . 1998;  41(Suppl) S51
  • 7 Østergaard M, Hansen M, Stolenberg M. Magnetic resonance imaging-determined synovial membrane volume as a marker of disease activity and a predictor of progressive joint destruction in the wrists of patients with rheumatoid arthritis.  Arthritis Rheum . 1999;  42 918-929
  • 8 Klarlund M, Østergaard M, Gideon P, Sorensen K, Hendriksen O, Lorenzen I. Wrist and finger joint MR imaging in rheumatoid arthritis.  Acta Radiol . 1999;  40 400-409
  • 9 Foley-Nolan D, Stack J, Ryan M. Magnetic resonsnce imaging in the assessment of rheumatoid arthritis: a comparison with plain film radiographs.  Br J Rheumatol . 1991;  30 101-106
  • 10 McGonagle D, Conaghan P G, O'Connor P. The relationship between synovitis and bone changes in early untreated rheumatoid arthritis: a controlled magnetic resonance imaging study.  Arthritis Rheum . 1999;  42 1706-1711
  • 11 Østergaard M, Gideon P, Sorenson K. Scoring of synovial membrane hypertrophy and bone erosions by MR imaging and clinically active and inactive rheumatoid arthritis of the wrist.  Scand J Rheumatol . 1995;  24 212-218
  • 12 Emery P, Luqmani R. The validity of surrogate markers in rheumatic disease.  Br J Rheumatol . 1993;  32 Suppl 3 3-8
  • 13 Tonolli-Serabian I, Poet J, Dufour M, Carasset S, Mattei J, Roux H. Magnetic resonance imaging of the wrist in rheumatoid arthritis: comparison with other inflammatory joint diseases and control subjects.  Clin Rheumatol . 1996;  15 137-142
  • 14 Resnick D. Diagnosis of Bone and Joint Disorders, 3rd ed. Philadelphia: W.B Saunders; 1995
  • 15 Peterfy C, Linaris R, Steinbach L. Recent advances in magnetic resonance imaging of the musculoskeletal system.  Radiol Clin North Am . 1994;  32 291-311
  • 16 Lee J K, Yao L, Wirth C R. MR imaging of solitary osteochondroma: report of eight cases.  AJR . 1987;  149 557-560
  • 17 McQueen F M. Magnetic resonance imaging in early arthritis: what is its role?.  Rheumatology . 2000;  39 700-706
  • 18 McQueen F, Stewart N, Crabbe J. Magnetic resonance imaging of the wrist in early rheumatoid arthritis reveals progression of erosions despite clinical improvement.  Ann Rheum Dis . 1999;  58 156-163
  • 19 Alasaarela E, Suramo I, Tervonen O, Lähde S, Takalo R, Hakala M. Evaluation of humeral head erosions in rheumatoid arthritis: a comparison of ultrasonography, magnetic resonance imaging, computed tomography and plain radiography.  Br J Rheumatol . 1998;  37 1152-1156
  • 20 Irvine S, Munro R, Porter D. Early referral, diagnosis, and treatment of rheumatoid arthritis: evidence for changing medical practice.  Ann Rheum Dis . 1999;  58 510-513
  • 21 Sugimoto H, Takeda A, Masuyama J, Furuse M. Early-stage rheumatoid arthritis: diagnostic accuracy of MR imaging.  Radiology . 1996;  198 185-192
  • 22 Lee J, Lee S, Suh J, Yoon M, Song J, Lee C. Magnetic resonance imaging of the wrist in defining remission of rheumatoid arthritis.  J Rheumatol . 1997;  24 1303-1308
  • 23 Sugimoto H, Takeda A, Kano S. Assessment of disease activity in rheumatoid arthritis using magnetic resonance imaging: quantification of pannus volume in the hands.  Br J Rheumatol . 1998;  37 854-861
  • 24 Østergaard M, Stoltenberg M, Hendricksen O, Lorenzen I. Quantitative assessment of synovial inflammation by dynamic gadolinium-enhanced magnetic resonance imaging: a study of the effect of intra-articular methyl-prednisolone on the rate of early synovial enhancement.  Br J Rheumatol . 1996;  35 50-59
  • 25 Huang J, Stewart N, Crabbe J. A 1-year follow-up study of dynamic magnetic resonance imaging in early rheumatoid arthritis reveals synovitis to be increased in shared epitope-positive patients and predictive of erosions at 1 year.  Rheumatology . 2000;  39 407-416
  • 26 Rominger M, Bernreuter W, Kenny P, Morgan S, Blackburn W, Alarcon G. MR imaging of the hands in early rheumatoid arthritis: preliminary results.  Radiographics . 1993;  13 37-46
  • 27 Sharp J T, Young D Y, Bluhm G B. How many joints in the hands and wrists should be included in a score of radiologic abnormalities used to assess rheumatoid arthritis.  Arthritis Rheum . 1985;  28 1326-1335
  • 28 Larsen A, Dale K, Eek M. Radiographic evaluation of rheumatoid arthritis and related conditions by standard reference films.  Acta Radiol Diagn (Stockh) . 1977;  18 481-491
  • 29 Feller J F, Rishi M, Hughes E C. Lipoma arborescens of the knee: MR demonstration.  AJR . 1994;  163 162-164
  • 30 Peterfy C G, Majumdar S, Lang P, van Dijke F C, Sack K, Genant H. MR imaging of the arthritic knee: improved discrimination of cartilage, synovium and effusion with pulsed saturation transfer and fat-suppressed T1-weighted sequences.  Radiology . 1994;  191 413-419
  • 31 Smith H-J, Larheim T A, Aspestrand F. Rheumatic and nonrheumatic disease in the temporomandibular joint: gadolinium-enhanced MR imaging.  Radiology . 1992;  185 229-234
  • 32 Drapé J-L, Thelen P, Gay-Depassier P, Silbermann O, Benacerraf R. Intraarticular diffusion of Gd-DOTA after intravenous injection in the knee: MR imaging evaluation.  Radiology . 1993;  188 227-234
  • 33 Yamato M, Tamai K, Yamaguchi T, Ohno W. MRI of the knee in rheumatoid arthritis: Gd-DTPA perfusion dynamics.  J Comput Assist Tomogr . 1993;  17 781-785
  • 34 Winalski C S, Aliabadi P, Wright R J, Shortkroff S, Sledge C B, Weissman B N. Enhancement of joint fluid with intravenously administered gadopentetate dimeglumine: technique, rationale, and implications.  Radiology . 1993;  187 197-185
  • 35 Jevtic V, Watt I, Rozman B. Precontrast and postcontrast (Gd DTPA) magnetic resonance imaging of hand joints in patients with rheumatoid arthritis.  Clin Radiol . 1993;  48 176-181
  • 36 Jevtic V, Watt I, Rozman B, Kos-Goljja M, Demsar F, Jarh O. Distinctive radiological features of small hand joints in rheumatoid arthritis and seronegative spondyloarthritis demonstrated by contrast-enhanced (Gd-DTPA) magnetic resonance imaging.  Skeletal Radiol . 1995;  24 351-355
  • 37 Klarlund M, Østergaard M, Rostrup E, Skjodt H, Lorenzen I. Dynamic magnetic resonance imaging of the metacarpophalangeal joints in rheumatoid arthritis, early unclassified polyarthritis and healthy controls.  Scand J Rheumatol . 2000;  29 108-115
  • 38 Østergaard M, Hansen M, Stoltenberg M, Lorenzen I. Quantitative assessment of the synovial membrane in the rheumatoid wrist: an easily obtained MRI score reflects the synovial volume.  Br J Rheumatol . 1996;  35 965-971
  • 39 Østergaard M, Stoltenberg M, Lovgreen-Nielsen P, Volck B, Jensen C, Lorenzen I. Magnetic resonance imaging-determined synovial membrane and joint effusion volumes in rheumatoid arthritis and osteoarthritis: comparison with the macroscopic and microscopic appearance of the synovium.  Arthritis Rheum . 1997;  40 1856-1867
  • 40 Parmelee D, Walovitch R, Ouellet H, Lauffer R. Preclinical evaluation of the pharmacokinetics, biodistribution, and elimination of MS-325, a blood pool agent for magnetic resonance imaging.  Invest Radiol . 1997;  32 741-747
  • 41 van Dijke C, Kirk B, Peterfy C, Genant H, Brasch R, Kapila S. Arthritic temporomandibular joint: correlation of macromolecular contrast-enhanced MR imaging parameters and histopathologic findings.  Radiology . 1997;  204 825-832
  • 42 Palmer W E, Rosenthal D I, Shoenberg O I. Quantification of inflammation in the wrist with gadolinium-enhanced MR imaging and PET with 2-[F-18]-fluoro-2-deoxy-D-glucose.  Radiology . 1995;  196 645-655
  • 43 Tamai K, Yamato M, Yamaguchi T, Ohno W. Dynamic magnetic resonance imaging for the evaluation of synovitis in patients with rheumatoid arthritis.  Arthritis Rheum . 1994;  37 1151-1157
  • 44 Stiskal M A, Neuhold A, Szolar D H. Rheumatoid arthritis of the craniocervical region by MR imaging: detection and characterization.  AJR . 1995;  165 585-592
  • 45 Østergaard M, Stoltenberg M, Lovgreen-Nielsen P, Volck B, Sonne-Holm S. Quantification of synovistis by MRI: correlation between dynamic and static gadolinium enhanced magnetic resonance imaging and microscopic and macroscopic signs of synovial inflammation.  Magn Reson Imaging . 1998;  16 743-754
  • 46 Østergaard M. Different approaches to synovial membrane volume determination by magnetic resonance imaging: manual versus automated segmentation.  Br J Rheumatol . 1997;  36 1166-1177
  • 47 Kalden-Nemeth D, Grebmeier J, Antoni C, Manger B, Wolf F, Kalden J. NMR monitoring of rheumatoid arthritis patients receiving anti-TNF-alpha monoclonal antibody therapy.  Rheumatol Int . 1997;  16 249-255
  • 48 Huh Y M, Suh J S, Jeong E K. Role of the inflamed synovial volume of the wrist in defining remission of rheumatoid arthritis with gadolinium-enhanced 3D SPGR MR imaging.  J Magn Reson Imaging . 1999;  10 202-208
  • 49 Peterfy C G. Scratching the surface: articular cartilage disorders in the knee.  MRI Clin North Am . 2000;  8 409-429
  • 50 Disler D. Fat-suppressed three-dimensional spoiled gradient-recalled MR imaging: assessment of articular and physeal hyaline cartilage.  AJR . 1997;  169 1117-1123
  • 51 Recht M P, Pirraino D W, Paletta G A, Schils J P, Belhobek G H. Accuracy of fat-suppressed three-dimensionl spoiled gradient-echo FLASH MR imaging in the detection of patellofemoral articular cartilage abnormalities.  Radiology . 1996;  198 209-212
  • 52 Bredella M, Tirman P, Peterfy C. Accuracy of T2-weighted fast spin echo MR imaging with fat saturation in detecting cartilage defects in the knee: comparison with arthroscopy in 130 patients.  AJR . 1999;  172 1073-1080
  • 53 Peterfy C G, van Dijke F C, Janzen D L. Quantification of articular cartilage in the knee by pulsed saturation transfer and fat-suppressed MRI: optimization and validation.  Radiology . 1994;  192 485-491
  • 54 Bashir A, Gray M L, Hartke J, Burstein D. Nondistructive imaging of human cartilage glycosaminoglycan concentration by MRI.  Magn Reson Med . 1999;  41 857-865
  • 55 Burstein D, Gray M L, Hartman A L, Gipe R, Foy B D. Diffusion of small solutes in cartilage as measured by nuclear magnetic resonance (NMR) spectroscopy and imaging.  J Orthop Res . 1993;  11 465-478
  • 56 Peterfy C G, van Dijke F C, Lu Y. Quantification of articular cartilage in the metacarpophalangeal joints of the hand: accuracy and precision of 3D MR imaging.  AJR . 1995;  165 371-375
  • 57 Rubens D J, Blebea J S, Totterman S M, Hooper M M. Rheumatoid arthritis: evaluation of wrist extensor tendons with clinical examination versus MR imaging: a preliminary report.  Radiology . 1993;  187 831-838
  • 58 Williamson S C, Feldon P. Extensor tendon ruptures in rheumatoid arthritis.  Hand Clin . 1995;  11 449-459
  • 59 Leslie B M. Rheumatoid extensor tendon ruptures.  Hand Clin . 1989;  5 191-202
  • 60 Peterfy C G, Roberts T, Genant H K. Dedicated extremity MRI: an emerging technology.  Radiol Clin North Am . 1996;  35 1-20
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