Imaging apparatus for use in a robotic surgery system

US11070762B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11070762-B2
Application numberUS-201916598751-A
CountryUS
Kind codeB2
Filing dateOct 10, 2019
Priority dateOct 10, 2019
Publication dateJul 20, 2021
Grant dateJul 20, 2021

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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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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A stereoscopic imaging apparatus for use in a robotic surgery system is disclosed and includes an elongate sheath having a bore. First and second image sensors are adjacently mounted at the distal end to capture high definition images from different perspective viewpoints for generating three-dimensional image information. The image sensors produce an unprocessed digital data signal representing the captured images. A wired signal line transmits the unprocessed digital data signals along the sheath to a proximal end to processing circuitry. The processing circuitry is configured to perform processing operations on the unprocessed digital data signals to produce respective video signals suitable for transmission to a host system or for driving a 3D display. A secondary camera is also disclosed and includes an elongate strip of circuit substrate sized for insertion through a narrow conduit, the strip of circuit substrate connecting between an image sensor and a processing circuit substrate.

First claim

Opening claim text (preview).

What is claimed is: 1. A stereoscopic imaging apparatus for use in a robotic surgery system, the apparatus comprising: an elongate sheath with a bore extending therethrough, the sheath terminating in a distal end sized for insertion into a body cavity of a patient; first and second image sensors adjacently mounted at the distal end of the sheath and oriented to capture high definition images of an object field from different perspective viewpoints for generating three-dimensional image information, each of the first and second image sensors configured to produce an unprocessed digital data signal representing the captured images; a wired signal line configured to transmit the unprocessed digital data signals from each of the first and second image sensors along the sheath to a proximal end thereof; and processing circuitry disposed at the proximal end of the sheath and connected to the wired signal line to receive the unprocessed digital data signals from each of the first and second image sensors, the processing circuitry configured to perform processing operations on each of the unprocessed digital data signals to produce respective video signals for transmission to a host system and driving a display configured to display three-dimensional information, wherein at least one unprocessed digital data signal includes a signal in accordance with a Mobile Industry Processor Interface (MIPI) Camera Serial Interface protocol, and wherein the length of the sheath is greater than 30 millimeters. 2. The apparatus of claim 1 wherein a bit rate of each of the unprocessed digital data signals is higher than about 1 gigabit per second. 3. The apparatus of claim 1 wherein each of the first and second image sensors include at least about 2,000,000 pixels. 4. The apparatus of claim 3 wherein the at least one unprocessed digital data signal comprises 10 bit pixel intensity values read out from the pixels of the respective first and second image sensors. 5. The apparatus of claim 1 wherein the length of the sheath is at least about 800 millimeters. 6. The apparatus of claim 1 wherein the wired signal line comprises a plurality of individual conductors including: conductors for implementing at least one Mobile Industry Processor Interface (MIPI) data lane for each image sensor; conductors for transmitting a synchronization clock signal between the processing circuitry and the first and second image sensors; and at least two conductors for carrying image sensor control signals. 7. A stereoscopic imaging apparatus for use in a robotic surgery system, the apparatus comprising: an elongate sheath with a bore extending therethrough, the sheath terminating in a distal end sized for insertion into a body cavity of a patient; first and second image sensors adjacently mounted at the distal end of the sheath and oriented to capture high definition images of an object field from different perspective viewpoints for generating three-dimensional image information, each of the first and second image sensors configured to produce an unprocessed digital data signal representing the captured images, wherein the first and second image sensors are mounted on a sensor circuit substrate disposed within the bore of the sheath; a wired signal line configured to transmit the unprocessed digital data signals from each of the first and second image sensors along the sheath to a proximal end thereof, wherein the wired signal line comprises a plurality of individual conductors connected via the sensor circuit substrate to the unprocessed digital data outputs of the respective first and second image sensors; and processing circuitry disposed at the proximal end of the sheath and connected to the wired signal line to receive the unprocessed digital data signals from each of the first and second image sensors, the processing circuitry configured to perform processing operations on each of the unprocessed digital data signals to produce respective video signals for transmission to a host system and driving a display configured to display three-dimensional information. 8. The apparatus of claim 7 wherein the plurality of individual conductors of the wired signal line are connected at the proximal end to a strip of the sensor circuit substrate sized to pass through the bore of the sheath, the strip of the sensor circuit substrate including a multiple pin connector for connecting to a corresponding multiple pin connector on a circuit substrate associated with the processing circuitry. 9. The apparatus of claim 7 further comprising a graphene sheet within the bore of the sheath, the graphene sheet being in thermal communication with the sensor circuit substrate and wrapped around at least a portion of a length of the wired signal line to channel heat away from the distal end of the sheath. 10. The apparatus of claim 9 further comprising a heater disposed at the distal end of the sheath and configured to selectively heat the distal end of the sheath to maintain the distal end of the sheath at a temperature that prevents formation of condensation. 11. The apparatus of claim 1 further comprising A stereoscopic imaging apparatus for use in a robotic surgery system, the apparatus comprising: an elongate sheath with a bore extending therethrough, the sheath terminating in a distal end sized for insertion into a body cavity of a patient; first and second image sensors adjacently mounted at the distal end of the sheath and oriented to capture high definition images of an object field from different perspective viewpoints for generating three-dimensional image information, each of the first and second image sensors configured to produce an unprocessed digital data signal representing the captured images; a wired signal line configured to transmit the unprocessed digital data signals from each of the first and second image sensors along the sheath to a proximal end thereof; processing circuitry disposed at the proximal end of the sheath and connected to the wired signal line to receive the unprocessed digital data signals from each of the first and second image sensors, the processing circuitry configured to perform processing operations on each of the unprocessed digital data signals to produce respective video signals for transmission to a host system and driving a display configured to display three-dimensional information; and signal conditioning circuitry configured to condition the unprocessed digital data signals for transmission, the signal conditioning circuitry comprising at least one of: conditioning circuitry positioned at the distal end of the sheath between each of the first and second images sensors and the wired signal line; conditioning circuitry located partway along the sheath in-line with the wired signal line; or conditioning circuitry configured to re-condition the received unprocessed digital data signals prior to performing processing operations on the signals. 12. The apparatus of claim 1 wherein the processing circuitry is configured to convert each of the unprocessed digital data signals into a serial digital interface (SDI) video signal for transmission to the host system. 13. The apparatus of claim 1 wherein the processing circuitry is configured to convert each of the unprocessed digital data signals into a flat patent display (FPD) link video signal for transmission to the host system. 14. The apparatus of claim 1 wherein the sheath comprises one of a rigid sheath or a flexible sheath. 15. The apparatus of claim 1 wherein the sheath comprises a flexible articulating portion which, when actuated by the host system, facilitate

Assignees

Inventors

Classifications

  • Elements optimising image sensor operation, e.g. for electromagnetic interference [EMI] protection or temperature control by heat transfer or cooling elements · CPC title

  • for picking-up images in sites, inaccessible due to their dimensions or hazardous conditions, e.g. endoscopes or borescopes · CPC title

  • provided with illuminating means · CPC title

  • Housings · CPC title

  • Flexible endoscopes · CPC title

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What does patent US11070762B2 cover?
A stereoscopic imaging apparatus for use in a robotic surgery system is disclosed and includes an elongate sheath having a bore. First and second image sensors are adjacently mounted at the distal end to capture high definition images from different perspective viewpoints for generating three-dimensional image information. The image sensors produce an unprocessed digital data signal representin…
Who is the assignee on this patent?
Titan Med Inc
What technology area does this patent fall under?
Primary CPC classification H04N5/38. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jul 20 2021 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).