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PRiSMA® Blue Blocking Glasses - CliP-ON LiTE

Availability: In stock

£60.00

Quick Overview

Blue light protection for glasses wearers, high protection effect with LiTE lenses


CLiP-ON LiTE


Great blue light protection - averaging around 95% and with good colour recognition 


Please note: LiTE gives you good colour rendering and are easy to adjust to.


The bluelightprotect filter LiTE offers expansive protection of the eye against light-induced oxidative stress and prevents grave disturbances in the hormonal blance.


In the short-wave range up to 500nm, which has the most damaging effect on cells and hormonal balance, LiTE filters out about 92% of the light. To ensure better colour recognition and brightness, LiTEhas a higher transparency than the PRO filter in the less problematical range between 500nm and 550nm (50% transmission) We therefore recommend the LiTE filter for occasions when a better colour recognition is neccessary, for example when watching TV and for use during the day, when the body is less susceptible to blue light damage, as there is more natural light to counter balance it.



Characteristics



  • Blue light protection - LiTE lenses block 92% (380 -500nm) and 50% (500-550nm) 

  • Reduction of reflections

  • Contrast enhancing

  • Reduces eye strain

  • Relaxes the eyesClip-on Glasses

  • Light and robust

  • 100% UV400 filter


1 pair of bluelightprotect glasses LiTE with anti reflective coating

1 soft pouch with microfober cloth



PRiSMA® Blue Blocking Glasses - CliP-ON LiTE

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Healthy Eyes in Modern Times

The flat screen devices that we all use all of the time like our PCs, TVs, tablets and smartphones emit Spectral Distributionlight with a strong content of short wavelength blue light. Compare the top image to the right with the image below of natural daylight. Scientific studies show that this altered light spectrum can damage the retina of the eyes.

The central image to the right shows the frequencies blocked by the LiTE lenses. These are designed for when there is a need for good colour rendering, for daytime use or for people who prefer to wear a lighter tinted lense. Observe that the 'blue' spike has gone, and also an amounbt of the green. The regenerative red is not altered.

The lower image shows the PRO lenses. These are the best choice for light-sensitive individuals and for night time use, especially where chronic conditions are apparent. Observe how the 'blue'spike has gone, and even more of the green is blocked. The regenerative red is not altered.

Have you experienced burning, red eyes after working on the computer for a long time?

Artificial lighting with a high blue-light content is very harsh. Imagine holding a bright torch and shining it in your face. Not something we would usually choose to do, but with all the screen devices we use that is exactly what we are doing. This artificial spectrum of light has been shown to greatly influence the hormonal balance which can lead to sleeping disorders with a disruption of melatonin production, as well as a range of other effects that are being discovered more and more as the research in this field progresses.. Watching TV or looking onto screens in the evening without protecting your eyes from the blue light increases stress on our body, disturbing hormonal balance particularly, so that many of us cannot "switch off“ when it is time to sleep. It is widely known that during sleep is when the 'rest and repair' cycles of natural circadian biology should occur. If sleep hoirmones are disrupted this repair may not happen at all, or the repair time could be reduced and regeneration is impaired. 

PRiSMA blue blocking glasses protect your eyes by filtering out the most damaging blue light content.

DID YOU KNOW THAT ALL BLUE LIGHT BLOCKING GLASSES ARE NOT THE SAME?

PRiSMA lenses are produced according to the most up-to-date filter and measurement technology. Developed by physician and light biologist Dr. Alexander Wunsch, they guarantee highest scientific standards. 

 

What is blue light?

Natural daylight is made up of a nearly continuous spectrum, without sharp spikes of certain light frequencies, in which all colours occur. 

 

Spectral Measurement of Natural Daylight in Winter Under Cloudy Skies.

Natural Light Spectrum

 

 

All the different colours you can see correspond to different wavelengths of light, also called frequencies. This graph just shows the visible part of the spectrum of light. Ultraviolet and infrared are invisible to our eyes. At the left end of the visible spectrum are the short-wave frequencies made up of blue and violet light. UV light is even shorter wave and can not be perceived by the eye. The area with wavelengths up to approx. 500 nm (nanometers) is called blue light. It has been shown that even some of the green light can affect us, and PRiSMA glasses have a range of blocking effects up to 550nm.

This shortwave light has a strong oxidizing effect, and can cause cell damage through the formation of free oxygen radicals. It has long been known that UV light can damage the skin and eyes. That's why, for example, sunglasses are designed to be 100% UV-protected. However, protecting our eyes from blue light has been an underestimated parameter so far.

More and more studies are being published that show the potential danger of short-wave blue light light in the visible range. Not only do these wavelengths of light have a similar oxidative effect to UV light, they also penetrate the eye!  Too much UV light primarily damages the eye lens, where it is mostlly absorbed, and only a small portion is taken inside the eye. Blue light, however, hangs unimpeded on the retina and can cause lasting damage to the visual and pigment cells there.

Why is the topic so current?

Natural daylight from the sun provides a balance of light frequencies. It has been observed that the red parts balance out the blue. In natural daylight the harmful effect of the blue component is largely compensated by the regenerative  effects of red and infrared radiation (light). We are increasingly surrounded by multiple light sources that not only radiate unnatural levels of blue frequencies, but also lack the regenerating red components.

This is particularly serious with computer and phone screens that we are very close to, but also with TVs, which are usually backlit with LED technology and into which we often look for hours.

Here you can see the spectrum of a standard flat screen.

LED Screen Spectrum

In the blue area, a clear "peak" can be seen, an energy peak that never occurs in natural light ( refer back to the diagram above). In addition, this spectrum has little red content. 

Light with a high proportion of short-wave blue frequency radiation can produce oxidative stress in the eye, which promotes long-term diseases such as myopia and macular degeneration. In addition, this short-wave light can also disturb the hormone balance, which is intrinsically linked to so many body functions and can promote the development of a host of chronic diseases. 

It is very common for people to complain about short-term 'screen use' phenomena such as watery, burning and sore red eyes and headaches.

With our PRiSMA bluelight protect range of glasses, we offer you an easy and safe way to protect yourself from aggressive blue levels in the light we are exposed to.

Use PRiSMA Blue Blocking glasses for viewing computers, TVs, phones etc and not forgetting anytime you are exposed to artificial light sources. Think not just about your home but also your work environment - schools, offices, hospitals, supermarkets, shopping centres...

PRiSMA Blue Blocking Glasses

Lenses scientifically designed to protect your eyes, your hormone balance and your general wellbeing.