360Selfie Booth

At Touchpix, we strive to continuously be innovative and be ahead of trends before they are set. Find out more about our features!

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360 MachinePrice

Do you have any questions about our 360 photo booth app? Want to learn some great tips and tricks? Click below to watch our training videos. It’s compatible with many devices, also for example as mirror photo booth software.

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Our intuitive mobile application, compatible with both iOS and Android platforms, offers a plethora of captivating features designed to elevate your event experience to new heights.

360photo booth hire

Touchpix photo booth app stands out as the premier solution for event professionals seeking top-notch 360 photo booth and video booth software.

360Selfie Booth Price

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360photo booth hire cost

The Touchpix app software is a unicorn in the world of 360 photo booth spinners. Our revolutionary platform makes it super simple to switch between using a GoPro camera, iPhone, iPad, Android phone, or Android tablet to produce the most stunning 360 photo booth images and videos.

Ready to get started? Great! Download the Touchpix 360 photo booth app and check out our different subscription plans. With the DuoPass subscription you will have full access to both our iOS and Android apps. Up to 4 active devices (8 for the Pro subscription and 12 for the Enterprise subscription).

Touchpix is designed to make your events exciting!Our software is user friendly and compatible with the below devices and hardware.

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Are you not interested in the full license? Check out our PhotoPass licenses, where you can access all the photo features at a discounted price!

We present a review of short-wave infrared (SWIR, defined here as ∼1000 to 2000 nm) spectroscopy and imaging techniques for biological tissue optical property characterization. Studies indicate notable SWIR absorption features of tissue constituents including water (near 1150, 1450, and 1900 nm), lipids (near 1040, 1200, 1400, and 1700 nm), and collagen (near 1200 and 1500 nm) that are much more prominent than corresponding features observed in the visible and near-infrared (VIS-NIR, defined here as ∼400 to 1000 nm). Furthermore, the wavelength dependence of the scattering coefficient has been observed to follow a power-law decay from the VIS-NIR to the SWIR region. Thus, the magnitude of tissue scattering is lower at SWIR wavelengths than that observed at VIS or NIR wavelengths, potentially enabling increased penetration depth of incident light at SWIR wavelengths that are not highly absorbed by the aforementioned chromophores. These aspects of SWIR suggest that the tissue spectroscopy and imaging in this range of wavelengths have the potential to provide enhanced sensitivity (relative to VIS-NIR measurements) to chromophores such as water and lipids, thereby helping to characterize changes in the concentrations of these chromophores due to conditions such as atherosclerotic plaque, breast cancer, and burns.