IP Library Granted Patent US 12667401
Granted Patent B2
US 12667401 · App. 17/918,143 · Granted Jun 30, 2026

Orthopedic pin for optically analyzing a bone region

Inventors: Jarich Willem Spliethoff (Utrecht, NL); Bernardus Hendrikus Wilhelmus Hendriks (Eindhoven, NL); Manfred Müller (Eindhoven, NL); Gerhardus Wilhelmus Lucassen (Eindhoven, NL)
Assignee: Koninklijke Philips N.V.
A61B17/864A61B5/0053A61B5/0075A61B5/4504A61B5/4509A61B5/4566A61B5/6846A61B5/6876A61B2017/00039A61B2017/00061A61B2017/00066A61B2017/00477A61B17/1697A61B2017/564A61B17/7001A61B17/7005A61B17/7032A61B17/7035A61B17/848A61B17/8897A61B2090/064A61F2/4657A61F2002/4666
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12667401
App. No.
17/918,143
Granted
Jun 30, 2026
Kind
B2
Abstract

An orthopedic pin is for optically analyzing a bone region. An optical fiber arrangement extends within an elongate shaft from a distal end to a proximal end. There is a coupling at an intermediate position along the shaft, and the optical fiber arrangement comprises a first portion on one side of the coupling and a second portion on the other side of the coupling. The coupling allows relative rotation between portions of the shaft at opposite sides of the coupling, while maintaining optical coupling between the first and second portions of the optical fiber.

Claims (43)

1 . An orthopedic pin for optically analyzing a bone region, the orthopedic pin comprising:

an elongate shaft having a distal end configured to be inserted into bone, a proximal end for connection to an analysis unit, a distal portion of the elongate shaft, and a proximal portion of the elongate shaft;

an optical fiber arrangement extending within the elongate shaft from the distal end to the proximal end of the elongate shaft, for transmitting optical radiation from the analysis unit to the bone region and for transmitting reflected optical radiation from the bone region to the analysis unit, when the distal end is inserted into the bone region; and

a mechanical and optical coupling at an intermediate position along the elongate shaft such that the distal portion of the elongate shaft is on one side of the coupling and the proximal portion of the elongate shaft is on the other side of the coupling,

wherein the optical fiber arrangement comprises a first portion on one side of the coupling and a second portion on the other side of the coupling, each for transmitting both the transmitted optical radiation and the reflected optical radiation,

and wherein the coupling allows relative rotation between the distal portion and the proximal portion of the elongate shaft and relative rotation between the first portion and the second portion of the optical fiber arrangement at opposite sides of the coupling, while maintaining optical coupling between the first and second portions of the optical fiber arrangement.

2 . The orthopedic pin of claim 1 , wherein the coupling enables a detachable coupling between the first and second portions.

3 . The orthopedic pin of claim 1 , wherein the end of the optical fiber arrangement at the proximal end is configured for a non-rotating coupling to the analysis unit.

4 . The orthopedic pin claim 1 , wherein the coupling has discrete set of angular orientations between the opposite sides.

5 . The orthopedic pin of claim 1 , wherein the optical fiber arrangement comprises a first optical fiber assembly for optical transmission from an optical analysis unit to the distal end and a second optical fiber assembly for optical transmission from the distal end of the elongate shaft to the optical analysis unit.

6 . The orthopedic pin of claim 5 , wherein one of the first and second optical fiber assemblies extends along a central axis of the elongate shaft, and the other of the first and second optical fiber assemblies extends offset from the central axis.

7 . The orthopedic pin of claim 6 , wherein said other of the first and second optical fiber assemblies comprises a single optical fiber at one side of the coupling and an annular ring of optical fibers at the other side of the coupling.

8 . The orthopedic pin of claim 1 , wherein the optical fiber arrangement comprises a dual core optical fiber comprising a central core and an outer core, wherein one of the central core and the outer core is for optical transmission from an optical analysis unit to the distal end and the other of the central core and the outer core is for optical transmission from the distal end of the elongate shaft to the optical analysis unit.

9 . The orthopedic pin of claim 8 , wherein:

the dual core fiber is at one side of the coupling, and an annular ring of fibers is at the other side of the optical coupling; or

the dual core fiber is at one side of the coupling, and a single non-central optical fiber is at the other side of the optical coupling; or

there is a dual core fiber at each side of the coupling.

10 . The orthopedic pin of claim 8 , wherein the optical fiber arrangement comprises:

at the one side of the coupling, an outer optical fiber arrangement comprising one or more non-central optical fibers or an outer core of a dual core optical fiber;

at the other side of the coupling, a central optical fiber; and

a lens for focusing light from the outer optical fiber arrangement to the central optical fiber.

11 . The orthopedic pin of claim 10 , further comprising a fiber splitter for dividing signals from the central optical fiber.

12 . A surgical tool comprising:

the orthopedic pin for optically analyzing a bone region, the orthopedic pin comprising:

an elongate shaft having a distal end configured to be inserted into bone, a proximal end for connection to an analysis unit, a distal portion of the elongate shaft, and a proximal portion of the elongate shaft;

an optical fiber arrangement extending within the elongate shaft from the distal end to the proximal end of the elongate shaft, for transmitting optical radiation from the analysis unit to the bone region and for transmitting reflected optical radiation from the bone region to the analysis unit, when the distal end is inserted into the bone region; and

a mechanical and optical coupling at an intermediate position along the elongate shaft such that the distal portion of the elongate shaft is on one side of the coupling and the proximal portion of the elongate shaft is on the other side of the coupling,

wherein the optical fiber arrangement comprises a first portion on one side of the coupling and a second portion on the other side of the coupling, each for transmitting both the transmitted optical radiation and the reflected optical radiation, and

wherein the coupling allows relative rotation between the distal portion and the proximal portion of the elongate shaft and relative rotation between the first portion and the second portion of the optical fiber arrangement at opposite sides of the coupling, while maintaining optical coupling between the first and second portions of the optical fiber arrangement; and

an optical analysis unit for connection to the proximal end of the elongate shaft.

13 . The surgical tool of claim 12 , wherein the optical analysis unit comprises an optical source and an optical detector coupled to the optical fiber arrangement.

14 . The surgical tool of claim 13 , wherein the optical analysis unit comprises a spectrometer having the optical detector and a processor, wherein the optical source is for generating optical radiation for irradiating the bone region via the optical fiber arrangement, and optical radiation reflected or scattered by the bone region is optically coupled to the optical detector via the optical fiber arrangement,

wherein the processor is configured to:

cause the optical source to generate the optical radiation for optically irradiating the bone region;

receive electrical signals generated by the at least one optical detector in response to optically irradiating the bone region;

process the received electrical signals with an algorithm configured to:

determine at least a first parameter indicative of a fat content or a water content in the bone region based on the received electrical signals; and to

identify a type of the bone region based on the at least a first parameter; the type being at least one of cancellous bone and cortical bone.

15 . The surgical tool of claim 12 , further comprising:

a pedicle screw, having a central channel for receiving the elongate shaft; and

a hollow drill having a channel configured to receive the orthopedic pin; and/or

a surgical screwdriver having a channel configured to receive the orthopedic pin; and/or

a surgical hammer having a channel configured to receive the orthopedic pin.