ASTM F2077-2011 Test Methods For Intervertebral Body Fusion Devices《椎间体融合设备的试验方法》.pdf
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1、Designation: F2077 11Test Methods ForIntervertebral Body Fusion Devices1This standard is issued under the fixed designation F2077; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses i
2、ndicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test method covers the materials and methods forthe static and dynamic testing of intervertebral body fusiondevice assemblies, spinal implants designed t
3、o promote arthro-desis at a given spinal motion segment.1.2 This test method is intended to provide a basis for themechanical comparison among past, present, and future non-biologic intervertebral body fusion device assemblies. This testmethod allows comparison of intervertebral body fusion deviceas
4、semblies with different intended spinal locations and meth-ods of application to the intradiscal spaces. This test method isintended to enable the user to compare intervertebral bodyfusion device assemblies mechanically and does not purport toprovide performance standards for intervertebral body fus
5、iondevice assemblies.1.3 The test method describes static and dynamic tests byspecifying force types and specific methods of applying theseforces. These tests are designed to allow for the comparativeevaluation of intervertebral body fusion device assemblies.1.4 These tests are designed to character
6、ize the structuralintegrity of the device and are not intended to test thebone-implant interface.1.5 This test method does not address expulsion testing ofintervertebral body fusion device assemblies (see 1.4).1.6 Guidelines are established for measuring displacements,determining the yield force or
7、moment, evaluating the stiffness,and strength of the intervertebral body fusion device assem-blies.1.7 Some intervertebral body fusion device assemblies maynot be testable in all test configurations.1.8 The values stated in SI units are to be regarded asstandard. No other units of measurement are in
8、cluded in thisstandard, with the exception of angular measurements, whichmay be reported in terms of either degrees or radians.1.9 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish a
9、ppro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:2E4 Practices for Force Verification of Testing MachinesE6 Terminology Relating to Methods of Mechanical TestingE1823 Terminology Relating to Fati
10、gue and Fracture Test-ingE2309 Practices for Verification of Displacement Measur-ing Systems and Devices Used in Material Testing Ma-chinesF1582 Terminology Relating to Spinal Implants3. Terminology3.1 For definition of terms refer to Terminology E6, E1823,and F1582.3.2 Definitions of Terms Specific
11、 to This Standard:3.2.1 coordinate system/axes, nThree orthogonal axes aredefined by Terminology F1582. The center of the coordinatesystem is located at the geometric center of the intervertebralbody fusion device assembly. The XY plane is to bisect thesagittal plane angle between superior and infer
12、ior lines (sur-faces) that are intended to simulate the adjacent vertebral endplates. The positive Z axis is to be directed superiorly. Forcecomponents parallel to the XY plane are shear components ofloading. The compressive axial force is defined to be thecomponent in the negative Z direction. Tors
13、ional force isdefined to be the component of moment parallel to the Z axis.3.2.2 crack, nan externally visible physical discontinuityin the form of a narrow opening that arises from mechanicalforces.3.2.3 fatigue life, nthe number of cycles, N, that theintervertebral body fusion device assembly can
14、sustain at aparticular force or moment before mechanical or functionalfailure occurs.1This test method is under the jurisdiction of ASTM Committee F04 on Medicaland Surgical Materials and Devices and is the direct responsibility of SubcommitteeF04.25 .Current edition approved July 15, 2011. Publishe
15、d August 2011. Originallypublished in 2000. Last previous edition approved in 2003 as F2077 - 03. DOI:10.1520/F2077-11.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer
16、to the standards Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.2.4 functional failure, npermanent deformation thatrenders the intervertebral body fusion device assembly inef-fective or una
17、ble to resist force and/or maintain attachmentadequately.3.2.5 ideal insertion location, nthe implant location withrespect to the simulated inferior and superior vertebral bodies(polyacetal or metal blocks) dictated by the type, design, andmanufacturers surgical installation instructions.3.2.6 inten
18、ded method of application, nintervertebralbody fusion device assemblies may contain different types ofstabilizing anchors such as threads, spikes, and knurled sur-faces. Each type of anchor has an intended method of appli-cation or attachment to the spine.3.2.7 intended spinal location, nthe anatomi
19、c region ofthe spine intended for the intervertebral body fusion deviceassembly. Intervertebral body fusion device assemblies may bedesigned and developed for specific regions of the spine suchas the lumbar, thoracic, and cervical spine. Also, there existsdifferent anatomical potential surgical appr
20、oaches, which willresult in different implant orientation at different levels of thespine.3.2.8 intervertebral body fusion device, na structure (bio-logic or synthetic) that is placed in the disc space between twoadjacent vertebral bodies to provide support for eventualarthrodesis of the two adjacen
21、t vertebral bodies.3.2.9 intradiscal height, nthe straight-line distance alongthe Z axis between the unaltered simulated vertebral bodiesminimum height of 4 mm and a maximum height of 18 mm.See Fig. 1.3.2.10 force point, nthe point through which the resultantforce on the intervertebral device passes
22、 (that is, the geometriccenter of the superior fixtures sphere) (Figs. 2-5).3.2.11 maximum run out force or moment, nthe maximumforce or moment for a given test that can be applied to anintervertebral body fusion device assembly in which all of thetested constructs have withstood 5 000 000 cycles wi
23、thoutfunctional or mechanical failure.3.2.12 mechanical failure, nthat associated with the onsetof a new defect in the material (that is, initiation of fatiguecrack).3.2.13 offset angular displacement, n(Distance OBFig.6)offset on the angular displacement axis equal to 10 % ofthe intradiscal height,
24、 H, divided by the outside diameter orheight of the implant (maximum dimension of implant in XZplane if not cylindrical) (for example, for a 10-mm intradiscalheight and 16-mm intervertebral body fusion device assembly,distance OB = 10 mm/16 mm (0.10)(180)/p = 3.6).3.2.14 offset displacement, n(Dista
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