Handheld robot for orthopedic surgery and control method thereof

US9561082B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9561082-B2
Application numberUS-201414228726-A
CountryUS
Kind codeB2
Filing dateMar 28, 2014
Priority dateDec 30, 2013
Publication dateFeb 7, 2017
Grant dateFeb 7, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The present invention provides a handheld robot for orthopedic surgery and a control method thereof. The handheld robot of the present invention includes a main body, a grip, a kinematic mechanism, a tool connector, a tool, a force sensor and a positioning unit. The handheld robot of the present invention combines the position/orientation information of the tool acquired by the positioning unit with the force/torque information acquired by the force sensor, and utilizes the combined information to adjust the position of the tool so as to keep the tool within the range/path of a predetermined operation plan. In this way, the precision of the orthopedic surgery can be enhanced, and the error occurred during the surgery can be minimized.

First claim

Opening claim text (preview).

What is claimed is: 1. A handheld robot for orthopedic surgery, comprising: a main body; a grip, connected to the main body; a kinematic mechanism connected to the main body; a tool connector connected to the kinematic mechanism; a tool connected to the tool connector; and a force sensor configured to measure a deviation force, a deviation torque, or a combination thereof that deviates the tool from a predetermined range, a predetermined path or a combination thereof, wherein the kinematic mechanism is capable to adjust at least one of the position and the orientation of the tool based on the measured deviation force, the measured deviation torque, or the combination thereof; and a controller programmed to receive an operation plan with the predetermined range, the predetermined path, or the combination thereof, control the force sensor to measure the deviation force, the deviation torque, or the combination thereof and control the kinematic mechanism to adjust at least one of the position and the orientation of the tool based on the measured deviation force, the measured deviation torque, or the combination thereof, so as to keep the tool within the predetermined range, the predetermined path, or the combination thereof, of the received operation plan. 2. The handheld robot according to claim 1 , further comprising: a positioning unit configured to acquire position information, orientation information, or a combination thereof, of the tool, wherein the kinematic mechanism is capable to adjust at least one of the position and the orientation of the tool further based on the position information, the orientation information, or the combination thereof, of the tool, the positioning unit is a plurality of light-reflecting balls, the light-reflecting balls position the position and orientation of the tool in coordination with an optical positioning system. 3. The handheld robot according to claim 1 , wherein the tool connector includes a spindle motor configured to drive the tool to rotate. 4. The handheld robot according to claim 1 , wherein another said force sensor is disposed between the grip and the main body. 5. The handheld robot according to claim 1 , wherein the tool has a threaded segment and a non-threaded segment. 6. The handheld robot according to claim 5 , wherein the threaded segment has a first diameter, the non-threaded segment has a second diameter, and the first diameter is smaller than the second diameter. 7. The handheld robot according to claim 1 , further comprising: a positioning unit configured to acquire position information, orientation information, or a combination thereof, of the tool, wherein the kinematic mechanism is capable to adjust at least one of the position and the orientation of the tool further based on the position information, the orientation information, or the combination thereof, of the tool, the positioning unit is an electro-magnetic positioning system, an inertia measurement unit, or a combination thereof. 8. The handheld robot according to claim 1 , wherein the controller is programmed to acquire position information, orientation information, or a combination thereof, of the tool, and adjust at least one of the position and the orientation of the tool based on the acquired position information, the acquired orientation information, or the combination thereof, so as to keep the tool within the predetermined range, the predetermined path, or the combination thereof, of the received operation plan. 9. The handheld robot according to claim 8 , wherein the controller is programmed to combine the acquired position information, the acquired orientation information, or the combination thereof with the measured deviation force, and adjust at least one of the position and the orientation of the tool based on result information of the combining. 10. The handheld robot according to claim 1 , wherein the handheld robot is configured to drill, the deviation force, the deviation torque, or the combination thereof includes a force, a torque, or a combination thereof orthogonal to an axial direction of the tool. 11. The handheld robot according to claim 10 , wherein the controller is programmed to calculate a drilling force, a drilling torque, or a combination thereof which is parallel to an axial direction of the tool to determine if the drilling is completed. 12. The handheld robot according to claim 1 , wherein the handheld robot is configured to cut, the deviation force, the deviation torque, or the combination thereof includes a force parallel to a normal vector of a cutting surface and includes two torques that are orthogonal to the normal vector of the cutting surface. 13. The handheld robot according to claim 12 , wherein the controller is programmed to calculate a combination of a cutting force and a cutting torque which includes a force parallel to a cutting surface and a torque orthogonal to the cutting surface to determine if the cutting is completed.

Assignees

Inventors

Classifications

  • for measuring dimensions, e.g. length · CPC title

  • of the patient or his organs · CPC title

  • Manipulators having means for prevention or compensation of hand tremors · CPC title

  • Cutting femur · CPC title

  • using imaging means, e.g. by X-rays · CPC title

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What does patent US9561082B2 cover?
The present invention provides a handheld robot for orthopedic surgery and a control method thereof. The handheld robot of the present invention includes a main body, a grip, a kinematic mechanism, a tool connector, a tool, a force sensor and a positioning unit. The handheld robot of the present invention combines the position/orientation information of the tool acquired by the positioning unit…
Who is the assignee on this patent?
Univ Nat Taiwan, Taipei Tzu Chi Hospital Buddhist Tzu Chi Medical Found
What technology area does this patent fall under?
Primary CPC classification A61B19/2203. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Feb 07 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).