The invention relates to a spinal fixation device, and more particularly to a spinal flexible-cable fixation device comprising a flexible cable and a plurality of components jointly fitted or the flexible cable, so that an inflexible section covered by the components is formed while retaining a flexible section thereof which is not covered by the components, wherein two neighboring components are connected with an adjustable angle.
Traditionally, if a spinal injury is mended by using nails and rods, a fixed rod made of titanium alloys or stainless steel is used in combination with a plurality of nails that are implanted into several vertebrae, so that the injured vertebrae are forcefully connected and secured to one another.
However, such method of forcefully securing the vertebrae together is not only unable to reduce undue stress on the vertebrae, but also unable to stimulate the injured vertebrae so as to promote the growth of bone mass and stabilize the injured vertebrae. As a result, an afflicted patient is either bedridden or only able to get around with a support for a long time, and the injured spine may not recover soon enough.
On the other hand, if the implanted nails are connected by using rods made of flexible cables only, it gives rise to two kinds of problems consequently. One of which is that the flexible cables may be too hard and stiff, which causes this remedy to have the same disadvantages as that from using the fixed rod made of titanium alloys or stainless steel. The other problem is that if the flexible cable is too flimsy, it cannot provide adequate support for the spine and the flexible cable is prone to deformation. Moreover, if the flexible cable is enclosed with a supporting tube, the flexible cable would become substantially weakened in regard to its flexibility, elasticity, and bending property, which makes this approach have the same disadvantages as that of using an ordinary rod.
In light of the aforesaid problems, a spinal fixation device for securing the nails implanted into vertebrae and providing support to the spine is proposed in the invention, which has a flexible cable with adequate flexibility and elasticity, and a plurality of components fitted onto the flexible cable, wherein the flexible cable has flexible sections and inflexible sections that are separated from each other by the components jointly fitted on the flexible cable. The components have contacts that form an adjustable angle between two neighboring components so as to ensure the flexibility of the flexible cable.
Therefore, a primary objective of the invention is to propose a spinal fixation device that comprises a flexible cable and a plurality of components jointly fitted onto the flexible cable.
This objective is solved by a spinal fixation device according to the following Item 1, and preferred embodiments are given in the following Items 2 to 23:
a flexible cable;
a plurality of components fittingly disposed on the flexible cable; and
a plurality of fixing nails having a fixing portion at an end thereof, wherein each fixing portion has a screw hole and an opening, the flexible cable can be movably placed into the opening after being fitted with the components, and a screw can be screwed into the screw hole subsequently so as to secure the flexible cable along with the components in each fixing nail;
characterized in that: sections of the flexible cable enclosed by the components are inflexible, whereas sections of the flexible cable not enclosed by the components remain flexible, and two neighboring components disposed on the flexible cable are connected with an adjustable angle, while the fixing nails are linked together by the flexible cable fitted with the components.
The structure and the technical means adopted by the present invention to achieve the above and other objectives can be best understood by referring to the following detailed description of the preferred embodiments and the accompanying diagrams, wherein:
a and 1b are schematic views that show a spinal fixation device comprising a flexible cable and components before and after being assembled according to a preferred embodiment of the present invention, respectively.
c is a schematic view that shows a flexible cable integrally formed with a retainer at one end thereof suitable for use in the spinal fixation device shown in
a and 3b are schematic views that show components 30 with two spherical ends 302 of the spinal fixation device of the present invention, wherein the components 30 shown in
c to 3e are schematic views that show components 32 of the spinal fixation device of the present invention with one spherical end, a matching indentation at another end thereof, and a various length between the two ends.
f are schematic views that show components of the spinal fixation device of the present invention, which are generally flattened with arcuate surfaces at both ends.
g are schematic views that show components of the spinal fixation device of the present invention, which are conical at one end and has a matching indentation at another end, with a various length between the two ends.
a is a schematic view that shows a bent insertion kit for inserting the flexible cable together with the components into the fixing portion of the fixing nails of the present invention.
b is a schematic view that shows the usage of the bent insertion kit in
Preferred embodiments and drawings of the invention are given below to facilitate better understanding toward the invention.
a and 1b show a spinal fixation device 10 comprising a flexible cable and components according to a first preferred embodiment of the invention, which comprises a flexible cable 20, a plurality of components 30 formed into a first shape, a plurality of conversion components 31 (only one is shown in the drawings), a plurality of fixing nails 40, a plurality of screws 50, and a plurality of retainers 60.
The flexible cable 20 is a wire cable that has elasticity and flexibility resulted from material and structure thereof, and when the flexible cable 20 is bent, compressed, or stretched; the flexible cable 20 may be contorted in response to the applied forces. Each of the components 30 has a slit 301 disposed thereof, and the flexible cable 20 may be fittingly disposed through a central opening as well as a narrow gap of the slit 301, so that the components 30 are elastically fitted onto the flexible cable 20.
Each of the conversion components 31 has a middle portion 311, respectively; the middle portion 311 is functionally similar to the components 30, and may be fitted onto the flexible cable 20 and disposed into the fixing nails 40; the middle portion 311 has a linking portion 312 extendingly disposed at both ends thereof, and the linking portions 312 may movably contact with the components 30. Each of the fixing nails 40 has a fixing portion 41, respectively; the fixing portion 41 has a screw hole 411 vertically disposed therein and a U-shaped groove 412 horizontally disposed therein. When the flexible cable 20 is fitted with the components 30 or the conversion components 31, the flexible cable 20 may be movably placed into the U-shaped groove 412. The screws 50 are screwed into the screw holes 411, so as to tightly secure the fixing nails 40 together with the combination of the flexible cable 20 and the components 30 or the conversion components 31.
Sections of the flexible cable 20 are enclosed by the combination of the conversion components 31 that extendingly linked to the components 30, as well as the combination of the components 30 that movably contact one another. Because the components 30 are hard and may support each other, the aforesaid sections of the flexible cable 20 are limited by the components 30 and are relatively difficult to be bent and compressed.
On the other hand, other sections of the flexible cable 20 that are not enclosed by the components 30 and are free from any supports or restrictions (such as the components 30), thus these sections of the flexible cable 20 may be flexibly bent, compressed, or stretched. Moreover, two neighboring components 30 are connected with an adjustable angle; an adjustable angle may be formed when a surface of a sphere comes into contact with a surface of another sphere. In addition, the fixing nails 40 are connected to each other with the flexible cable 20 that has been fitted with the components 30.
The screw 50 has a protrusion 51 disposed on a bottom surface thereof, and the protrusion 51 may press against and secure the combination of the flexible cable 20 and the components 30 or the conversion components 31 onto the fixing nails 40. Furthermore, the retainers 60 are disposed at both ends of the flexible cable 20, so that when one end of the flexible cable 20 is pulled, the retainer 60 at another end of the flexible cable 20 may press against the fixing portion 41 of the fixing nail 40, and subsequently prevent the flexible cable 20 from moving further. In contrast, if the flexible cable 20 is made of special materials like the polyetheretherketone (PEEK) plastic, a retainer 61 shaped into a different form may be directly formed at an end of the flexible cable 20, which achieves identical purpose as the aforesaid retainer 60 disposed at the other end of the flexible cable 20, as shown in
Details of the conversion component 31 is shown in
a and 3b show the components 30 with two spherical ends 302 according to the first preferred embodiment of the invention, wherein the components 30 shown in
c to 3e show the components 32 with one spherical end 321 and one matching indention 322 at the other end according to a second preferred embodiment of the invention, and how the components 32 contact one another with an adjustable angle. If a spherical end 321 contacts a matching indentation 322, each of the components 32 may be an elongated cylinder as a whole without being limited in length. Moreover, if the elongated cylindrical component 32 is thin and short, it may be shaped as a concave body in which a lateral end thereof being the spherical end 321, and an opposite lateral end thereof being the matching indentation 322, so that one component 32 may be arranged adjacent to another component 32 in a scale-like fashion. A plurality of components 32 may be arranged such that a spherical end 321 faces another spherical end 321.
f and 3g show the components 33 and 34 according to a third and a fourth preferred embodiments of the invention, and how the components 33 and 34 contact one another with an adjustable angle. In
As shown in
Although a preferred embodiment of the invention has been described for purposes of illustration, it is understood that various changes and modifications to the described embodiment can be carried out without departing from the scope and the spirit of the invention as disclosed in the appended claims.