Powered surgical tool with transmission
The present invention relates to a powered surgical tool that selectively rotates a tool head (effector) to effect tissue modification during a surgical procedure, and allows for use also as a fastener driver by a simple change of end effectors and shifting a drive selector.
1 . A power operated surgical tool comprising:
a transmission;
a motor operably connected to the transmission, which operably couples the motor to an output shaft that carries a tool coupler, the transmission including a plurality of drive mechanisms to provide two modes of operation, wherein in a first mode of operation, rotation of a crank assembly hub by rotation of a rotor of the motor effects reciprocating rotation of a shuttle and a gear segment to provide oscillating rotary movement of the output shaft, and operation of the transmission in a second mode provides continuous rotary motion to the output shaft; and
an external housing enclosing the transmission.
2 . The power operated surgical tool as claimed in claim 1 wherein the drive mechanism is coupled to a shaft of the motor with the crank assembly hub mounted to the shaft, the drive mechanism also including a link that revolves about the shaft and is attached to the shuttle, which is rotatably mounted, the shuttle including an arcuate rack gear that, through oscillating rotation of the shuttle, effects reciprocating motion of the rack gear, wherein a gear attached to the output shaft carrying the tool coupler, meshes with the arcuate rack gear to provide oscillating rotary motion to the output shaft.
3 . The power operated surgical tool as claimed in claim 1 wherein a shaft is mounted to the crank assembly hub and has a portion extending into a bore in the crank assembly hub the drive mechanism including a link having a bore that has one or more bearings mounted therein, with the shaft being rotatably mounted in the bearing(s) and fixed to the crank assembly hub, the link attached to the shuttle, by having a pair of spaced apart arms each having a bearing which receives therein a shaft that is rotatably received within arm bearings and mounted in the shuttle.
4 . The power operated surgical tool as claimed in claim 1 wherein a link has a head portion fixed to a shaft portion, including a through bore in which a pair of bearings are mounted, the shuttle has a bore in which a pivot shaft is rotatably mounted in the bearings, and attaches the link to the shuttle.
5 . The power operated surgical tool as claimed in claim 1 wherein the shuttle is attached to a link via a shaft mounted in bearings, which in turn are mounted to respective arms, the link including a shaft portion, which is slidably and rotatably mounted in bearings, which are mounted in a bore of the link.
6 . The power operated surgical tool as claimed in claim 1 including a selector shuttle reciprocally slidably mounted on an axle in a manner to permit relative sliding movement of the shuttle on the axle and prevent relative rotation therebetween, the shuttle having opposite end portions that are each adapted to drivingly engage a bevel gear hub or an output gear to select between oscillating rotation of the output shaft or continuous driving of the output shaft.
7 . The power operated surgical tool as claimed in claim 6 wherein movement of the selector shuttle is effected by a selector device, such as a slidably mounted being movably mounted on a slide secured within the housing.
8 . The power operated surgical tool as claimed in claim 7 wherein the selector device includes a fork received within an annular groove that allows the fork to effect forward and aft movement of the shuttle on the axle, while allowing rotation of the shuttle during movement thereof.
9 . The power operated surgical tool as claimed in claim 7 wherein in the second mode of operation the transmission includes a plurality of gears constructed and arranged to provide a predetermined gear reduction to provide a desired output rotation speed of the output shaft given a predetermined motor rotation speed.
10 . The power operated surgical tool as claimed in claim 9 wherein the hub is provided with a gear portion which will rotate when the shaft of the motor has the rotor rotating, the gear portion meshes with a first gear that is mounted on a first shaft that is in turn rotatably mounted in the housing via a pair of first bearings, the gear is in driving engagement with a second gear that is rotatably mounted in the housing via a second shaft rotatably carried by the housing via a pair of second bearings, the second gear is coupled to an output gear, which is fixed to the second gear in a manner to effect simultaneous rotation therewith, the output gear is drivingly engaged with a third gear, which is rotatably mounted in the housing via a third shaft, which is rotatably mounted in the housing by a pair of third bearings, a fourth gear is also mounted on the shaft to rotate with the third gear, and meshes with a fifth gear.
11 . The power operated surgical tool as claimed in claim 10 wherein when the selector device is moved to a first forward position, the firth gear is drivingly coupled to first shaft, while an oscillating gear is decoupled from the driving engagement with the axle, wherein the axle is driven by the fifth gear along with the first, second, third and fourth gears.
12 . The power operated surgical tool as claimed in claim 9 wherein the motor includes a switch for controlling the direction of rotation of the motor, the switch having a first position for clockwise rotation of the output shaft and a second position for counterclockwise rotation of the output shaft.
13 . The power operated surgical tool as claimed in claim 9 wherein the orientation of the motor and its output shaft is at an angle of between 80 and 120 degrees relative to the orientation of the output shaft.
14 . The power operated surgical tool as claimed in claim 9 wherein the orientation of the motor and its output shaft is at an angle of 90 degrees relative to the orientation of the output shaft.
15 . The power operated surgical tool as claimed in claim 9 wherein the first mode of operation is driven by a first motor and the second mode of operation is driven by a second motor.