Endoillumination using decentered fiber launch
09730576 · 2017-08-15
Assignee
Inventors
Cpc classification
A61B1/07
HUMAN NECESSITIES
A61B90/30
HUMAN NECESSITIES
A61B1/0017
HUMAN NECESSITIES
International classification
F21V5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61B3/00
HUMAN NECESSITIES
A61B90/30
HUMAN NECESSITIES
Abstract
An endoilluminator system includes an endoilluminator probe and an illumination source. The endoilluminator probe includes a nano-scale optical fiber and a probe fiber connector, and the illumination source includes a source fiber connector. The illumination source is configured to produce an illumination spot at the source fiber connector having a diameter smaller than a diameter of a fiber core of the nano-scale optical fiber. The probe fiber connector and the source connector are configured when connected to align the illumination spot off-center relative to the nano-scale optical fiber such that the angular distribution of light emitted by the nano-scale optical fiber is increased relative to aligning the illumination spot at a center of the nano-scale optical fiber.
Claims
1. An endoilluminator system, comprising: an endoilluminator probe comprising: a cannula; a nano-scale optical fiber extending at least partially through the cannula and configured to emit light from a distal end of the cannula; and a probe fiber connector; an illumination source comprising a source fiber connector, the illumination source configured to produce an illumination spot at the source fiber connector, the illumination spot having a diameter equal to or less than 1 μm, the diameter of the illumination spot being smaller than a diameter of a fiber core of the nano-scale optical fiber, wherein the probe fiber connector and the source connector are configured when connected to align the center of the illumination spot off-center relative to the center of the nano-scale optical fiber such that the angular distribution of light emitted by the nano-scale optical fiber is increased relative to aligning the center of the illumination spot with the center of the nano-scale optical fiber, the center of the illumination spot being spaced from the center of the fiber core by a distance in the range of 5 μm to 20 μm.
2. The endoilluminator system of claim 1, wherein the distance between the center of the illumination spot and the center of the fiber core is at least 10 percent of the diameter of the fiber core of the nano-scale optical fiber.
3. The endoilluminator system of claim 1, wherein the illumination source is a supercontinuum laser.
4. The endoilluminator system of claim 1, wherein the nano-scale optical fiber is aligned off-center within the probe fiber connector.
5. The endoilluminator system of claim 1, wherein the illumination spot is produced at the source fiber connector off-center relative to a bulkhead of the source fiber connector.
6. The endoilluminator system of claim 1, wherein an angular distribution of the endoilluminator probe is at least eighty degrees.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(6) In the figures, elements having the same reference number have the same or similar functions.
DETAILED DESCRIPTION
(7) Various embodiments of the present invention provide a fiber connector system with a decentered launch of light beams into the probe optical fiber. Certain embodiments include a source fiber connector and a probe fiber connector, wherein an illumination spot emitted from the source fiber connector is offset from a center of the probe fiber. For example, the connectors can hold the central axes of the source emitter and the probe fiber offset relative to one another. In another example, the source emitter can be configured to emit an illumination spot off center relative to the probe fiber. Additional features of various embodiments of the present invention are described in the following explanation of the FIGs.
(8) Various embodiments of the present invention provide improve endoillumination by increasing the angular distribution of the illuminated area using a decentered launch while providing equivalent or greater coupling efficiency for the illumination source to the probe. Previous systems have centered the illumination spot on the probe fiber in order to avoid significant drops in coupling efficiency, therefore making less light available for illumination. However, when using sufficiently small illumination spots and, in particular, when using illumination spots that can be decentered and still fall within the fiber cross-section, the spot can be decentered without significant illumination loss. The decentration does, however, significantly increase the angular distribution of the illumination, thus allowing a wider area to be illuminated with substantially equal brightness.
(9) In previous systems, particularly xenon lamp assemblies, the illumination spot produced by the illumination source can be relatively large, meaning that decentering the spot produces significantly less illumination. By contrast, when illuminator systems using a tightly focused spot according to various embodiments of the present invention are used, decentration can be exploited for a larger angular distribution without such losses. Thus, various embodiments of the present invention may be particularly useful for illumination sources that produce tightly focused illumination spots, such as supercontinuum lasers.
(10) In general, the following description relates to ophthalmic surgical endoprobes including a handle suitable for being held in one hand and a cannula that is at least partially rigid that is suitable for insertion into a small incision. Such a system is schematically illustrated in
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(12) An alternative embodiment is illustrated in
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(15) Various embodiments of the present invention provide an endoilluminator system including fiber connectors providing a decentered alignment between an illumination spot and a probe optical fiber. Embodiments of the invention described above are exemplary only. One skilled in the art may recognize various alternative embodiments from those specifically disclosed. Those alternative embodiments are also intended to be within the scope of this disclosure. As such, the invention is limited only by the following claims.