Control and display device
A device for display of medical vision images and video may include a portable display screen and housing. The device may also include a mounting mechanism located on the back of the housing. The mounting mechanism may be configured to removably engage a complementary mounting mechanism on a structure for removably mounting the portable display screen and housing to the structure. The device may also include means for communicatively coupling the portable display screen to one or more optoelectronic vision and illumination modules for control and processing of information.
1. A control and display device comprising:
a housing;
a display;
illumination and imaging control electronics located within the housing;
image processing electronics located within the housing;
a battery configured to power the display, the illumination and imaging control electronics, and the image processing electronics; and
a connector configured to connect the illumination and imaging control electronics and the battery to flexible circuitry of an optoelectronic module of an anatomically shaped or flexible disposable endoscope used inside an oral cavity, the optoelectronic module including an illumination source and an image sensor, wherein:
the control and display device is configured to power the optoelectronic module of the disposable endoscope, and
the illumination and imaging control electronics are configured to control the illumination source and the image sensor of the optoelectronic module via the flexible circuitry.
2. The control and display device of claim 1 , wherein:
the illumination source includes an RGB illumination source or narrow spectral bank VCSELs,
the image sensor is configured to detect reflected light in a specific RGB spectrum in accordance to an RGB filter set of the image sensor,
the illumination and imaging control electronics are configured to display 2D or 3D images having the specific RGB spectrum on the display.
3. The control and display device of claim 1 , wherein the image processing electronics are configured to control an autofocus of the image sensor of the optoelectronic module via the flexible circuitry.
4. The control and display device of claim 1 , wherein the control and display device is configured to control fluid delivery by the disposable endoscope.
5. The control and display device of claim 1 , wherein:
the image processing electronics are configured to display time-synchronized first perspective image frames and second perspective image frames on the display, the first perspective image frames and the second perspective image frames received from the optoelectronic module; and
the control and display device is further configured to communicate a timing signal to a viewing device, the timing signal associated with a timing of the first perspective image frames and the second perspective image frames.
6. The control and display device of claim 1 , wherein the control and display device is further configured to communicate three-dimensional (3D) image data to a 3D viewer.
7. A control and display device comprising:
a housing;
a display;
a mounting mechanism configured to removably attach the control and display device to a structure or a user;
illumination and imaging control electronics located within the housing;
image processing electronics located within the housing;
a battery configured to power the display, the illumination and imaging control electronics, and the image processing electronics; and
a connector configured to connect the illumination and imaging control electronics and the battery to flexible circuitry of an optoelectronic module of a disposable endoscope, the optoelectronic module including an illumination source, a first image sensor having a first perspective, and a second image sensor having a second perspective different from the first perspective,
wherein:
the illumination and imaging control electronics are configured to:
control the illumination source, the first image sensor and the second image sensor of the optoelectronic module via the flexible circuitry, including autofocus of the first image sensor and the second image sensor;
the image processing electronics are configured to:
receive first image frames from the first image sensor, and second image frames from the second image sensor, the first image frames and the second image frames having a time-synchronization; and
display the first image frames and the second image frames alternatively and with the time-synchronization; and
the control and display device is configured to:
power the first image sensor, the second image sensor, and the illumination source of the optoelectronic module; and
communicate a timing signal to a viewing device having a first shutter configured to be placed in front of a first eye of the user and a second shutter configured to be placed in front of a second eye of the user, the timing signal associated with the time-synchronization of the first image frames and the second image frames.