By James J. Yue MD, Rudolph Bertagnoli MD, Paul C. McAfee MD, Howard S. An MD
New motion-preserving units are revolutionizing backbone surgery.but the educational curve for those operations is steep, and nice consciousness needs to be given to sufferer and machine choice and the appropriate execution of every approach. just one reference spells out precisely the best way to practice those new techniques.and its peerless writer group, created from key investigators occupied with the units' genuine medical trials, is uniquely certified that can assist you get the easiest effects! those worldwide leaders during this region speak about the benefits and drawbacks of the entire variety of non-fusion technologies.and current the step by step, richly illustrated operative suggestions you want to in achieving optimum results! three hours of surgical video on DVD exhibit the best way to practice key systems, and entry to the full contents of the ebook on-line allows you to reference it very easily from any computer.Select the easiest equipment and procedure for every patient!*cervical overall disc arthroplasty*lumbar overall disc arthroplasty*lumbar partial disc alternative: nucleus replacement*lumbar posterior dynamic stabilization: pedicle screw based*lumbar posterior dynamic stabilization: interspinous based*lumbar side replacementProduce optimum results with particular recommendation on. *advantages and downsides of every option*indications and contraindications*patient selection*interpretation of imaging studies*surgical anatomy and biomechanics*surgical techniques*tips and pearlsSee the way to practice every one strategy, due to. *step-by-step, full-color illustrations*more than three hours of surgical movies on DVD, narrated by means of the specialists! entry to the whole contents of the e-book on-line helps you to practice quick searches, keep on with hyperlinks to Medline and PubMed abstracts, and extra.
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Extra resources for Motion Preservation Surgery of the Spine: Advanced Techniques and Controversies
Spine J 6:258–266, 2006. 28. Hoffman-Daimler, German Patent 2263842, 1974. 29. Weber, Swiss Patent 624673, 1978. 30. Weber, Swiss Patent 640131, 1979. 31. Keller A, inventor: Surgical instrument set. US patent 4,997,432, March 5, 1991. 32. Savchenko et al, Russian Patent 2140229, 1999. 33. Ojima, European Patent 0317972, 1989. 34. Bryan V, Kunzler A, inventor: Human spinal disc prosthesis. US patent 5,865,846, February 2, 1999. 35. Gordon J, inventor: Intervertebral disc replacement prothesis. US Patent 20050234553, October 20, 2005.
Both of these designs are discussed in detail in later chapters. Most designs use a polyethylene or other plastic type of core articulating with one or both metal end plates. In 1974, Hoffman-Daimler invented n F I G U R E 2–6. Yuan incorporated the articulating plate design into implants with large articulating surfaces. n F I G U R E 2–7. Cauthen’s slit-and-rib design uses two articulating components, both convex at the articulating surfaces. It constrains rotational motion in the coronal and horizontal planes but allows for rocking motion in the sagittal plane.
66. Main JA, Wells ME, Keller TS, inventors: Vertebral prosthesis. US patent 4,932,975, June 12, 1990. 67. Froning EC, inventor: Intervertebral disc prosthesis and instruments for locating same. US patent 3,875,595, April 8, 1975. 68. Edeland HG: Suggestions for a total elasto-dynamic intervertebral disc prosthesis. Biomater Med Devices Artif Organs 9:65–72, 1981. 69. Monson GL, inventor: Synthetic intervertebral disc prosthesis. US patent 4,863,477, September 5, 1989. 70. Frey O, Koch R, Planck HMF, inventors: Joint endoprosthesis.