Showing posts with label Visual System. Show all posts
Showing posts with label Visual System. Show all posts

May 12, 2023

Human eyes really do play 'tricks' on the mind, say experts

A new study has shown that the human visual system can 'trick' the brain into making inaccurate assumptions about the size of objects in the world around them.

The research findings could have implications for many aspects of everyday life, such as driving, how eye witness accounts are treated in the criminal justice system, and security issues, such as drone sightings.

The research team from the University of York and Aston University presented participants with photographs of full-scale railway scenes, which had the upper and lower parts of the image blurred, as well photographs of small-scale models of railways that were not blurred.

Participants were asked to compare each image and decide which was the 'real' full-scale railway scene. The results were that participants perceived that the blurred real trains were smaller than the models.

Dr Daniel Baker, from the University of York's Department of Psychology, said: "In order for us to determine the real size of objects that we see around us, our visual system needs to estimate the distance to the object.

"To arrive at an understanding of absolute size it can take into account the parts of the image that are blurred out -- a bit like the out-of-focus areas that a camera produces -- which involves a bit of complicated mathematics to give the brain the knowledge of spatial scale.

"This new study, however, shows that we can be fooled in our estimates of object size. Photographers take advantage of this using a technique called 'tilt-shift miniaturisation', that can make life-size objects appear to be scale models."

The findings demonstrate that the human visual system is highly flexible -- sometimes capable of accurate perception of size by exploiting what is known as 'defocus blur', but at other times subject to other influences and failing to make sense of real-world object size.

Professor Tim Meese, from Aston University, said: "Our results indicate that human vision can exploit defocus blur to infer perceptual scale but that it does this crudely.

Read more at Science Daily

Sep 1, 2022

What you know changes how you see things

Researchers at the George Washington University have gained important insight into how the human brain processes an object in the visual system and where in the brain this processing takes place. Their study, "Mugs and Plants: Object Semantic Knowledge Alters Perceptual Processing with Behavioral Ramifications," shows people perceive objects differently depending on their prior knowledge and experience with that object.

The findings could have important implications in applied settings such as medical displays, cognitive assistants, and product and environmental design, according to the researchers.

"Since the way we perceive objects determines how we interact with them, it is important to visually process them quickly and with high detail" Sarah Shomstein, a professor of cognitive neuroscience at GW said. "However, the way our eyes perceive and process an object can be different depending on what we know about this object. Our study shows, for the first time, that if we recognize an object as a tool, we perceive it faster but with less detail. If we recognize an object as a non-tool, we perceive it slower but with higher detail."

To determine how the human brain processes an object visually, Shomstein and Dick Dubbelde, a recent PhD graduate at GW and co-author on the study, showed participants several images of objects that can be easily manipulated by hand such as a coffee mug, snow shovel or screwdriver, and several images of objects that are infrequently manipulated by hand, such as a potted plant, a picture frame or a fire hydrant. For half of the experiment, a small gap could be cut out of the bottom of each object. For the other half of the experiment, the objects could flicker on the screen. The team asked participants to report the presence or absence of a gap or the flicker, which helped the researchers figure out the speed and detail of object processing, and also which regions of the brain were being used to process the object.

Researchers found that objects usually manipulated by your hands are perceived faster than non-manipulable objects, making it easier to see the flickering. Alternatively, objects that we usually do not manipulate are perceived with greater detail than manipulable objects, making it easier to see the small gaps.

"The differences in perception between 'mugs' and 'plants' in both speed and detail of perception means that these objects are sorted by the visual system for processing in different brain regions," Dubbelde said. "In other words, your knowledge of the object's purpose actually determines where in the brain object processing will occur and how well you will perceive it."

The study also showed that if you interfere with object recognition by making it harder to recognize an object as either manipulable or not manipulable -- for example, by turning it upside down -- then the differences in the speed and detail perception of the objects disappear.

Read more at Science Daily