Micro vein enhancer with a dual buffer mode of operation

US9949688B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9949688-B2
Application numberUS-201514799863-A
CountryUS
Kind codeB2
Filing dateJul 15, 2015
Priority dateJan 10, 2006
Publication dateApr 24, 2018
Grant dateApr 24, 2018

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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 is a Miniature Vein Enhancer that includes a Miniature Projection Head. The Miniature Projection Head may be operated in one of three modes, AFM, DBM, and RTM. The Miniature Projection Head of the present invention projects an image of the veins of a patient, which aids the practitioner in pinpointing a vein for an intravenous drip, blood test and the like. The Miniature projection head may have a cavity for a power source or it may have a power source located in a body portion of the Miniature Vein Enhancer. The Miniature Vein Enhancer may be attached to one of several improved needle protectors, or the Miniature Vein Enhancer may be attached to a body similar to a flashlight for hand held use. The Miniature Vein Enhancer of the present invention may also be attached to a magnifying glass, a flat panel display, and the like.

First claim

Opening claim text (preview).

We claim: 1. A handheld vein-image-enhancing device configured to project in-focus vein images on a surface of a target to permit mobile imaging of veins, said device comprising: a first laser configured to selectively emit light at a first wavelength; a scanner configured to scan said first wavelength onto the surface of the target in a plurality of successive frames; a photo detector configured to receive a corresponding plurality of contrasted images for each of said plurality of successive frames, each contrasted image formed from differential absorption and reflection of said first wavelength of light by subcutaneous veins and surrounding tissue of the target; said photo detector configured to output an analog signal of each of said contrasted images; an analog-to-digital converter configured to receive and convert each said analog signal of each of said contrasted images from said photo detector, and to output a digital signal therefrom as a digital image for each of said plurality of successive frames; a first image memory configured to successively receive and store said digital image for each of said plurality of successive frames; a second image memory configured to receive and store said stored digital image from said first image memory, as said first image memory receives a next said digital image of said plurality of successive frames; a digital-to-analog converter configured to receive and convert said stored digital image from said second image memory, and to output a converted analog signal thereof; a second laser configured to selectively emit a second wavelength; said second laser further configured to receive and use said converted analog signal from said digital-to-analog converter to project each of said corresponding plurality of contrasted images for each of said plurality of successive frames, using said scanner, to reveal the subcutaneous veins therein. 2. The handheld vein-image-enhancing device according to claim 1 wherein each of said plurality of successive frames comprise complete raster patterns, and wherein each of said complete raster frames comprise a grid of pixels. 3. The handheld vein-image-enhancing device according to claim 2 wherein said grid of pixels comprises a grid of 1000 pixels by 1000 pixels. 4. The handheld vein-image-enhancing device according to claim 2 further comprising a combiner, said combiner configured to combine said first wavelength of light from said first laser and said second wavelength of laser light from said second laser; and wherein said combiner is further configured to transmit said combined laser light along a single optical path to said scanner. 5. The handheld vein-image-enhancing device according to claim 4 further comprising a sensor, said sensor configured to determine an instantaneous position of said scanner relative to the surface of the target; said instantaneous position being determined, converted, and stored in said first image memory for each pixel of said grid of pixels; said instantaneous position for each said pixel being received by said second laser, for each said projection of said corresponding plurality of contrasted images for each of said plurality of successive frames to be in-focus on the surface of the target to represent actual vein sizes and vein locations, regardless of device-to-surface distances. 6. The handheld vein-image-enhancing device according to claim 5 wherein said scanner is a scanner from the group of scanners consisting of: a MEMS scanner; a single biaxial mirror; and a first mirror and a second mirror each configured to pivot about a single axis, wherein said emitted light is directed by said pivoting of said first mirror to bounce off of said first mirror toward said second mirror, said second mirror pivoting to direct said beam toward the surface of the target to produce said pattern. 7. The handheld vein-image-enhancing device according to claim 6 wherein said vein-image-enhancing device is further configured to perform image processing on each of said plurality of contrasted images for each of said plurality of successive frames. 8. The handheld vein-image-enhancing device according to claim 7 wherein said first wavelength of light comprises an infrared wavelength of light. 9. The handheld vein-image-enhancing device according to claim 8 wherein said second wavelength of light comprises a visible wavelength of light. 10. The handheld vein-image-enhancing device according to claim 9 wherein said second image memory is configured to successively receive and store said digital image from said first image memory at a rate equal to a frame rate of said scanner. 11. The handheld vein-image-enhancing device according to claim 10 wherein a rate of said projection of said successive frames occurs at least at a rate of 30 frames per second. 12. The handheld vein-image-enhancing device according to claim 1 further comprising a combiner, said combiner configured to combine said first wavelength of light from said first laser and said second wavelength of laser light from said second laser; and wherein said combiner is further configured to transmit said combined laser light along a single optical path to said scanner. 13. The handheld vein-image-enhancing device according to claim 1 further comprising a sensor, said sensor configured to determine an instantaneous position of said scanner relative to the surface of the target; said instantaneous position being determined, converted, and stored in said first image memory for each pixel of said grid of pixels; said instantaneous position for each said pixel being received by said second laser, for each said projection of said corresponding plurality of contrasted images for each of said plurality of successive frames to be in-focus on the surface of the target to represent actual vein sizes and vein locations, regardless of device-to-surface distances. 14. The handheld vein-image-enhancing device according to claim 1 wherein said scanner is a scanner from the group of scanners consisting of: a MEMS scanner; a single biaxial mirror; and a first mirror and a second mirror each configured to pivot about a single axis, wherein said emitted light is directed by said pivoting of said first mirror to bounce off of said first mirror toward said second mirror, said second mirror pivoting to direct said beam toward the surface of the target to produce said pattern. 15. The handheld vein-image-enhancing device according to claim 1 wherein said vein-image-enhancing device is further configured to perform image processing on each of said plurality of contrasted images for each of said plurality of successive frames. 16. The handheld vein-image-enhancing device according to claim 1 wherein said first wavelength of light comprises an infrared wavelength of light. 17. The handheld vein-image-enhancing device according to claim 16 wherein said second wavelength of light comprises a visible wavelength of light. 18. The handheld vein-image-enhancing device according to claim 1 wherein said second image memory is configured to successively receive and store said digital image from said first image memory at a rate equal to a frame rate of said scanner. 19. The handheld vein-image-enhancing device according to claim 18 wherein a rate of said projection of said successive frames occurs at least at a rate of 30 frames per second.

Assignees

Inventors

Classifications

  • having means for controlling depth of insertion · CPC title

  • User input or interface means, e.g. keyboard, pointing device, joystick · CPC title

  • Displaying an image simultaneously with additional graphical information, e.g. symbols, charts, function plots · CPC title

  • A61B5/489Primary

    Blood vessels · CPC title

  • adapted for particular medical purposes · CPC title

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Frequently asked questions

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What does patent US9949688B2 cover?
The present invention is a Miniature Vein Enhancer that includes a Miniature Projection Head. The Miniature Projection Head may be operated in one of three modes, AFM, DBM, and RTM. The Miniature Projection Head of the present invention projects an image of the veins of a patient, which aids the practitioner in pinpointing a vein for an intravenous drip, blood test and the like. The Miniature p…
Who is the assignee on this patent?
Accuvein Inc
What technology area does this patent fall under?
Primary CPC classification A61B5/489. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Tue Apr 24 2018 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).