Monday, January 06, 2020

Virtual reality scenes of the Arctic can ease people’s pain

Scientists from Imperial College London have found that using virtual reality headsets could combat increased sensitivity to pain, by immersing people in scenes of icebergs, frigid oceans, and sprawling icescapes. The results of the study were published in the Journal Pain Report.

A team from Imperial used VR (Virtual Reality) video to reduce peoples’ scores of perceived ongoing pain as well their sensitivity to painful stimuli. According to the researchers, the findings add to the growing evidence for the potential of VR technology to help patients with chronic pain.

Beyond the distracting effect, they think immersing patients in VR may actually trigger the body’s own inbuilt pain-fighting systems – reducing their sensitivity to painful stimuli and reducing the intensity of ongoing pain. Dr. Sam Hughes, from the MSk Lab at Imperial and first author on the paper, said: “One of the key features of chronic pain is you get increased sensitivity to painful stimuli. This means patients’ nerves are constantly ‘firing’ and telling their brains they are in a heightened state of pain.

Our work suggests that VR may be interfering with processes in the brain, brainstem and spinal cord, which are known to be key parts of our inbuilt pain-fighting systems and are instrumental in regulating the spread of increased sensitivity to pain.” Virtual reality has been trialled as a method to distract patients from the pain, with some success in minor dental procedures requiring a local anaesthetic. But the latest study looked to see if it could work in a simulated model of chronic pain.

In the trial, 15 healthy volunteers were given a topical cream on the skin of their leg containing capsaicin – the fiery compound in chilis that makes your mouth burn. The capsaicin sensitized the skin, making the area more sensitive to painful stimuli (a very small electric shock) and mimicking the heightened sensitivity of people with chronic pain; such as lower back pain, arthritis, or nerve pain. Participants were then asked to rate the pain caused by the capsaicin cream on a scale of 0-100 (from ‘no sensation’ to ‘worst pain imaginable’) while either watching a VR scene of arctic exploration through a headset or looking at a still image of an Arctic scene on a monitor.

They were also asked to say when a stimulus applied directly to the sensitized skin area is perceived as painful. The team found that ongoing pain was reduced following VR immersion, and that sensitivity to painful stimuli on the skin was also reduced. However, the same effect was not seen in people who looked at still images of the polar environment, showing immersion is the key factor. 


“The aim of this study was to show VR has the ability to change the pathological processing associated with chronic pain,” added Dr. Hughes. “Using this approach does seem to reduce the overall intensity of the ongoing pain as well as the response we get on the skin. We think there could be changes in the body’s pain relief system’s which can affect how pain sensitivity is processed in the spinal cord.

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