Medical Screw
20170238982 · 2017-08-24
Inventors
Cpc classification
International classification
Abstract
A dual drive screw that includes a head and a shaft. The head has a top surface, a first recess in the top surface comprising a first drive and a second recess below the first recess comprising a second drive. The shaft extends from the head opposite the top surface and includes an exterior surface with a thread formed on at least part of the exterior surface. The first drive may be a star drive, a hex drive, a square drive, a 12-point flange, a double square, a double hex, a spline drive or any other drive that has an opening large enough for a device to pass through and engage the second drive in the second recess. A first device engages the first drive and rotates the screw in a clockwise direction. A second device engages the second drive and rotates the screw in a counter-clockwise direction for removal. The dual drive screw is preferably implanted in a person.
Claims
1. A dual drive screw comprising: a head with a top surface, a first recess in the top surface comprising a first drive and a second recess below the first recess comprising a second drive; and a shaft extending from the head opposite the top surface, the shaft having an exterior surface with a thread formed on at least part of the exterior surface.
2. The dual drive screw according to claim 1, wherein, the first drive is a star drive, a hex drive, a square drive, a 12-point flange, a double square, a double hex or a spline drive.
3. The dual drive screw according to claim 2, wherein a first device is used to engage the first drive and rotate the screw.
4. The dual drive screw according to claim 3, wherein the first device rotates the screw in a clockwise direction.
5. The dual drive screw according to claim 1, wherein the second drive is a reverse thread drive, a torx drive, a slot drive, a Phillips drive, a tri-wing or a spanner head drive.
6. The dual drive screw according to claim 5, wherein a second device is used to engage the second drive and rotate the screw.
7. The dual drive screw according to claim 6, wherein the second device rotates the screw in a counter-clockwise direction.
8. The dual drive screw according to claim 1, wherein the dual drive screw is implanted in a person.
9. A dual drive screw comprising: a head with a top surface, a first recess in the top surface comprising a first drive and a second recess below the first recess comprising a second drive, wherein, the first drive is a star drive, a hex drive, a square drive, a 12-point flange, a double square, a double hex or a spline drive and wherein the second drive is a reverse thread drive, a torx drive, a slot drive, a Phillips drive, a tri-wing or a spanner head drive; and a shaft extending from the head opposite the top surface, the shaft having an exterior surface with a thread formed on at least part of the exterior surface.
10. The dual drive screw according to claim 9, wherein a first device is used to engage the first drive and rotate the screw in a clockwise direction.
11. The dual drive screw according to claim 10, wherein a second device is used to engage the second drive and rotate the screw in a counter-clockwise direction.
12. The dual drive screw according to claim 11, wherein the dual drive screw is implanted in a person.
13. A dual drive screw comprising: a head with a top surface, a first recess in the top surface comprising a first drive and a second recess below the first recess comprising a second drive, wherein, the first drive is a star drive, a hex drive, a square drive, a 12-point flange, a double square, a double hex or a spline drive and wherein the second drive is a reverse thread drive, a torx drive, a slot drive, a Phillips drive, a tri-wing or a spanner head drive; and a shaft extending from the head opposite the top surface, the shaft having an exterior surface with a thread formed on at least part of the exterior surface, wherein a first device is used to engage the first drive and rotate the screw in a clockwise direction and a second device is used to engage the second drive and rotate the screw in a counter-clockwise direction, and wherein the dual drive screw is implanted in a person.
Description
BRIEF DESCRIPTION OF THE FIGURES
[0007] The preferred embodiments of the dual drive screw of the present invention, as well as other objects, features and advantages of this invention, will be apparent from the accompanying drawings wherein:
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DETAILED DESCRIPTION OF THE INVENTION
[0026] The present invention is a dual drive medical screw having a first drive in the head of the screw, such as any standard drive (hex, star, etc.). Countersunk below the first drive is a second drive, such as a left hand reverse thread, in a recessed portion of the head. If the first drive becomes stripped and it is desired to remove the screw, the second drive provides a means for extraction. Having the dual head drive provides redundancy for the removal of the screw.
[0027] The dual head screws have a recess below the first screw drive that is also referred to as a sub-recess (a separate section or chamber) of the screw head that has a second drive (such as counter clockwise threads) integrally formed in the screw head. The second drive (such as the threads of a counter clockwise drive) can be easily engaged by the surgeon to remove the stripped screw by rotating the screw in counter-clockwise direction after the device (e.g., a screwdriver) engages the second drive.
[0028] Stardrive and hexdrive recesses are currently the predominant choice of design for medical screws. However, the dual head screws are not limited to star drives and hexdrives and any number of different screw head drives can be used, for example, the drives shown in Table I. The choice of which drive to use for the first drive and which drive to use for the second drive is determined by the configuration of the drives and one skilled in the art would easily be able to select the appropriate drives. As a rule of thumb, the first drive must have an opening large enough to allow the device or tool for engaging the second drive to pass through the opening in the first drive and engage the second drive. The dual drive design allows a “second chance” at screw removal and thereby saves time and expense.
[0029] The dual drive design is not limited to medical screws. One skilled in the art would recognize that the dual drive design could be utilized for any type of screw. Many industries will benefit from this cost effective design, e.g., automotive, aircraft, aerospace, home and commercial construction. However, when the dual drive screw is used as a medical screw, it is preferably made of titanium or stainless steel. When the dual drive screw is used in non-medical applications, it can be made from any suitable metal, plastic, ceramic or composite material without limitation. One skilled in the art will appreciate that the inventive feature is the design of the dual drive head and not the material of construction.
[0030] As used herein, the terms “screw drive” and “drive” refer to a system used to turn a screw. It is the structural portion of the head of the screw that allows torque to be applied to rotate the screw. The shape of this structural portion is not intended to be a limitation of the invention and it is contemplated that a variety of different shapes can be used.
[0031] As used herein, the term “reverse threaded drive” means that the threads of the screwdriver and the recessed screw head are designed to operate in a counter clockwise direction to thread the screwdriver tip into the screw head. When the dual drive screw is installed using the first drive, the screw is typically turned in a clockwise direction. The recessed second drive is typically used to extract the screw in the event that the first drive is damaged and cannot be used. Typically, the recessed second drive is not used to install the screw and is typically used only when the primary drive is damaged.
[0032] The screws have two drives that share the same opening in the head of the screw. The first drive is located in the top surface of the screw head, preferably in a recess. The first drive is selected so that the size of the opening for the first drive is large enough to allow a device for operating the second drive to pass through the recess for the first drive and engage the second drive. For example, the first drive may be a hex drive, a square drive, a 12-point flange, a double square, a double hex or a spline drive. The openings for these drives are large enough so that a device can pass through and operate a second drive, such as a reverse thread drive, a torx drive, a slot drive, a Phillips drive, a tri-wing or a spanner head drive.
[0033] The dual drive screw uses one or two mating devices or tools, such as a screwdriver, for rotating the screw clockwise and/or counter clockwise. The drives in the screw head are categorized based on commonality, with the less common drives being classified as “tamper-resistant.” Most heads come in a range of sizes, typically distinguished by a number, such as “Phillips #00” or “Torx T5.” These sizes do not necessarily describe a particular dimension of the drive shape, but are often arbitrary designations in the same sense as a “Size 8” dress.
[0034] The different types of drives that can be used include slot, Phillips, square, Robertson, hex, 12-point flange, hex socket (Allen), torx, tri-wing torq-set, spanner head, clutch, double-square, triple square, polydrive, spline drive, double hex, Bristol, Pentalobe. A listing of different drives and their configurations are shown below in Table I.
TABLE-US-00001 TABLE I Head configuration Type Slot
Phillips (PH) □ Square
Robertson
Hex
12-point flange
Hex socket (Allen)
Security hex socket (pin-in- hex-socket)
Torx (T & TX)
Security Torx (TR)
Tri-Wing
Torq-set
Spanner head (Snake-eye) (TH)
Clutch (A & G)
One-way
Double-square
Triple square (XZN)
Polydrive
Spline drive
Double hex
Bristol
Pentalobe
[0035] The medical screw will now be described with respect to the accompanying figures.
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[0038] Thus, while there have been described the preferred embodiments of the present invention, those skilled in the art will realize that other embodiments can be made without departing from the spirit of the invention, and it is intended to include all such further modifications and changes as come within the true scope of the claims set forth herein.