Showing posts with label Miles Padgett. Show all posts
Showing posts with label Miles Padgett. Show all posts

Monday, April 24, 2017

New Camera System Inspired By Animal Vision

https://www.ecnmag.com/news/2017/04/new-camera-system-inspired-animal-vision

Scientists have taken inspiration from how animals' eyes work to create a new way for computer-controlled cameras to 'see'.
In a new paper published today in the journal Science Advances, University of Glasgow researchers describe a new method for creating video using single- cameras. They have found a way to instruct cameras to prioritise objects in images using a method similar to the way brains make the same decisions.
The eyes and brains of humans, and many animals, work in tandem to prioritise specific areas of their field of view. During a conversation, for example, visual attention is focused primarily on the other speaker, with less of the brain's 'processing time' given over to peripheral details. The vision of some hunting animals also works along similar lines.
The team's sensor uses just one light-sensitive pixel to build up moving images of objects placed in front of it. Single-pixel sensors are much cheaper than dedicated megapixel sensors found in digital cameras, and are capable of building images at wavelengths where conventional cameras are expensive or simply don't exist, such as at the infrared or terahertz frequencies.The images the system outputs are square, with an overall resolution of 1,000 pixels. In conventional cameras, those thousand pixels would be evenly spread in a grid across the image. The team's new system instead can choose to allocate its 'pixel budget' to prioritise the most important areas within the frame, placing more higher resolution pixels in these locations and so sharpening the detail of some sections while sacrificing detail in others. This pixel distribution can be changed from one frame to the next, similar to the way biological vision systems work, for example when human gaze is redirected from one person to another.
Dr David Phillips, Royal Academy of Engineering Research Fellow at the University of Glasgow's School of Physics and Astronomy, led the research.
Dr Phillips said: "Initially, the problem I was trying to solve was how to maximise the frame rate of the single-pixel system to make the video output as smooth as possible.
"However, I started to think a bit about how vision works in living things and I realised that building a programme which could interpret the data from our single-pixel sensor along similar lines could solve the problem. By channelling our pixel budget into areas where high resolutions were beneficial, such as where an object is moving, we could instruct the system to pay less attention to the other areas of the frame.
"By prioritising the information from the sensor in this way, we've managed to produce images at an improved frame rate but we've also taught the system a valuable new skill.
"We're keen to continue improving the  and explore the opportunities for industrial and commercial use, for example in medical imaging."
The research is the latest in a string of single-pixel-imaging breakthroughs from the University's Optics Group, led by Professor Miles Padgett, which include creating 3D images, imaging gas leaks, and 'seeing' through opaque surfaces.

Friday, May 17, 2013

Single-pixel device may spot cancer

http://www.dgstandard.co.uk/dumfries-news/scottish-news/2013/05/17/single-pixel-device-may-spot-cancer-51311-33342968/#.UZWokVFfpW4.blogger

My Note: Thanks to Mike Favale for posting this article on his blog thztechnology.blogspot.com
A new method of producing 3D images could improve cancer screening tests, scientists have said.
The technology uses four single-pixel detectors and has been developed at University of Glasgow's physics and astronomy department. It allows for the creation of 3D pictures without expensive digital cameras.
The technique is called 3D computational imaging, or ghost imaging, and can detect wavelengths that digital cameras cannot pick up. It could be used to look under the skin to detect cancer or other medical conditions quickly.
Oil industry firms could also use the technology to detect gases hidden from the naked eye that leak from the ground near oil wells.
Professor Miles Padgett, Kelvin chair of Natural Philosophy at the university, said: "Single-pixel detectors in four different locations are used to detect light from a data projector which illuminates objects with a rapidly shifting sequence of black-and-white patterns similar to crossword puzzles.
"Four detectors give images, each of which contain shadows, giving us clues about the 3D shape of the object. Combining the four images using a well-known technique known as shape-from-shade allows us to create a full 3D image of the object."
Details of the discovery appear in a report entitled 3D Computational Imaging With Single-Pixel Detectors in the current Science journal.
Research assistant Matthew Edgar, who contributed to the paper, said: "A more portable version of the system could be created quite easily, making it much more practical to use outside the lab. It could be used to look for the tell-tale gases which leak from the ground where oil can be found, for example, or it could be tuned into the terahertz range to probe just below the skin to search for tumours or other medical conditions."
The technology is in its early stages and commercial partners are being sought to help develop it.
Baoqing Sun, lead author of the paper, said: "This means that single-pixel detectors which cost just a few pounds each are now capable of producing images across a far wider spectrum than 3D imaging systems currently on the market which cost tens of thousands of pounds."