2.
    发明专利
    未知

    公开(公告)号:DE4243913C2

    公开(公告)日:2000-10-05

    申请号:DE4243913

    申请日:1992-12-23

    Abstract: Bone-treating devices made of biodegradable polymers having a high-density and a high-orientation along the major axis, which have a density of 1.260 g/cm3 or more (when measured by the sink and float method) and which possess the bending strength and the bending strength-retaining characteristic defined by the following equations: A>/=B>/=23 (kgf/mm2)(1) B/A>/=0.85(2) wherein A is the initial bending strength and B is the bending strength after 90-days immersion of the devices in a phosphate buffer at 37 DEG C. and preparing the same.

    METHOD FOR BUNDLING AND PROCESSING YARN FOR REINFORCING MATERIAL

    公开(公告)号:JPH01292132A

    公开(公告)日:1989-11-24

    申请号:JP12323388

    申请日:1988-05-19

    Applicant: GUNZE KK

    Abstract: PURPOSE:To obtain the subject yarn excellent in compatibility of reinforcing materials with matrices, by covering a fiber yarn for the reinforcing materials with a bundling material containing a yarn or slender tape formed of the same resin as that of an injection molded matrix, heat-treating the covered yarn, melting and embrittling the bundling material. CONSTITUTION:A fiber yarn 2 for reinforcing materials is covered with a bundling material 7 (at least one kind is formed of the same resin as an injection molded matrix resin) using a covering machine 3 and heated in a heat-treating machine 10 to melt the bundling material 7. Thereby, the bundling material 7 in a molten state sticks to the surface of the yarn 2. The bundled and finished yarn (2B) is then cut by a rotary cutter 13 to afford a chopped fiber (2C).

    SCREW FOR BONE FIXATION
    9.
    发明专利

    公开(公告)号:JPH09253089A

    公开(公告)日:1997-09-30

    申请号:JP11003396

    申请日:1996-03-25

    Applicant: GUNZE KK

    Abstract: PROBLEM TO BE SOLVED: To smoothly perform screwing-in and to prevent the occurrence of damage by constituting a screwing cross hole having R at the heat part of a screw for bone fixation composed of intracelom decomposing and absorbing materials. SOLUTION: A screw head part 1 is composed of a vertex face 4 and a seat face 5, communicated through an under-neck round part 6 to a cylindrical part 7 of a thin part 2 and further communicated to a screw part 3 composed of a screw thread 8 and a screw valley 9. Then, the screw head part 1 has a screwing cross hole 10 for a driver or the like and further, the R, namely, curved line is formed at an apex part 11 of cross and a line 12 connecting the mutually adjacent apex parts to each other. The curvature radius of R part is not limited and for the purpose of use not requiring any strength comparatively, the constitution just providing the curved line at its one part is available as well. Then, the materials constituting the screw are composed of intracelom decomposing and absorbing polymers and use polylactic acid, polyglycolic acid or the coplymer of polylactic acid and polyglycolic acid having the molecular weight of about several ten thousands to one million, for example.

    CROSS-LINKED HYALURONIC ACID AND COMPOUND MATERIAL THEREOF

    公开(公告)号:JPH07102002A

    公开(公告)日:1995-04-18

    申请号:JP24507293

    申请日:1993-09-30

    Abstract: PURPOSE:To obtain a cross-linked hyaluronic acid material improved in respect of toxicity and gel strength and having a high strength and a variety of decomposition and absorption rates, by mixing an aq. soln. of hyaluronic acid with a carbodiimide and drying the aq. soln. to introduce thereinto cross-linkages. CONSTITUTION:An aq. soln. of hyaluronic acid is mixed with a carbodiimide, and then dried to introduce thereinto cross-linkages to thereby obtain the desired cross-linked hyaluronic acid material. The mol.wt. of hyaluronic acid to the used is usually about 10 to 2X10 . Hyaluronic acid may be used either in the form of a free acid or in the form of a salt of an alkali metal such as sodium or potassium, or an alkaline earth metal such as calcium or magnesium. The carbodiimide is desirably a water-soluble carbodiimide from the viewpoint of removal treatment thereof during and after the cross-linking reaction, though a carbodiimicle soluble only in an org. solvent, such as dicyclohexylcarbodiimicle, may instead be used.

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