^ Bukhari, Hatim; Andreatta, Pamela; Goldiez, Brian; Rabelo, Luis (2017-01-01). "A Framework for Determining the Return on Investment of Simulation-Based Training in Health Care". INQUIRY: The Journal of Health Care Organization, Provision, and Financing. 54: 0046958016687176. doi:10.1177/0046958016687176. ISSN 0046-9580. PMC 5798742. PMID 28133988. https://www.youtube.com/watch?v=k4vRFodAqWo&t=1s
The Fove setup is an 5.7-inch, 1440p display; a 100+ degree field of view; 70fps frame rate; and eye-tracking measured at 120fps. With the redesigned developer kit, gone are the big side panels and quite a lot of the heft of the last prototype design. The company promises the new model offers "dramatically reduced weight, size and overall wearability, as well as better production efficiency." You might have to wait a bit though – Fove hasn't confirmed plans for the consumer version just yet.
In aviation, medicine, and the military, Virtual Reality training is an attractive alternative to live training with expensive equipment, dangerous situations, or sensitive technology. Commercial pilots can use realistic cockpits with VR technology in holistic training programs that incorporate virtual flight and live instruction. Surgeons can train with virtual tools and patients, and transfer their virtual skills into the operating room, and studies have already begun to show that such training leads to faster doctors who make fewer mistakes. Police and soldiers are able to conduct virtual raids that avoid putting lives at risk.
One of the cool things about VR and 360 video is that it can put you in an experience you wouldn't be able to get before. In the case of this video from MythBusters, that's a couple yards away from a postal van filled with explosives. Not only do you get to experience the explosion from the safety of your own home, the video guides you through the explosion frame by frame, millisecond by millisecond. https://www.youtube.com/watch?v=VrI9In6PqCI&t=1s
Wherever it is too dangerous, expensive or impractical to do something in reality, virtual reality is the answer. From trainee fighter pilots to medical applications trainee surgeons, virtual reality allows us to take virtual risks in order to gain real world experience. As the cost of virtual reality goes down and it becomes more mainstream you can expect more serious uses, such as education or productivity applications, to come to the fore. Virtual reality and its cousin augmented reality could substantively change the way we interface with our digital technologies. Continuing the trend of humanising our technology.
When it comes to moving your feet, most peripherals are stuck in traditional gaming mode: You jump with 'A' or use a joystick to walk, ignoring immersive motion from the waist down. Believing VR should have some more mobility options, the folks at 3DRudder created a VR footpad that allows the user to control all movement – horizontal, vertical and turning – using only their feet. (No word on realistically jerky jumping as of yet, though.) https://www.youtube.com/watch?v=6Scd9baRjf8&t=1s
No, this isn't a VR-ready look into the huge court case between Uber and Waymo. It's a 360 video that lets you see how Google's fleet of self-driving cars sees the world. You'll "sit" right on top of the car's LIDAR systems and view the world as machine vision sees the world, complete with lots of little graphics pointing out absolutely everything in sight. There is no better way to learn about self-driving technology than this. https://www.youtube.com/watch?v=UnTPrYdGdkg&t=1s
Because of just how expensive it is to invest in high-end VR, companies have worked hard to bring us affordable VR that can run on those handy supercomputers we all carry around in our pockets. Thus, here are the best headsets you can slip your phone into. They're generally wireless and many are under £100, so it's a whole different ball game to the beasts above. Be careful though, certain devices only work with certain phones, so check before putting down any cash. https://www.aliexpress.com/item/MISECU-5-0MP-3-0MP-1-3MP-360-degree-VR-Audio-128GB-slot-Wireless-IP-Camera/32830686032.html
Standalone headsets were at first a useful novelty that offered a taste of VR without an investment into a gaming PC or a flagship phone. The Oculus Go and the Lenovo Mirage Solo are both capable headsets that work well on their own, but they have the same limited controls as mobile headsets. The recently released Oculus Quest, however, has really sold us on this category. The Quest uses similar outward-facing cameras to the new Rift S to provide 6DOF motion tracking, and uses the same Oculus Touch motion controls. Combined with a faster Snapdragon 835 processor compared with the Oculus Go's Snapdragon 821, the Quest offers a much more compelling and immersive VR experience, all without the unwieldy cable or PC requirement of the Rift S. We hope to see more standalone 6DOF, dual motion controller headsets in the future, like the upcoming HTC Vive Focus Plus. https://www.youtube.com/watch?v=hmnkcP-sJHk&t=1s
You can float down the Colorado River inside the Grand Canyon in this immersive VR adventure. Start off in calm waters and quickly get blasted in the rough whitewater rapids of the Hance, Granite, and Hermit. If you've always wanted to try an adventure on the rapids, but are a bit scared, this video will give you a sense of what it's like without the wet side effects. https://www.youtube.com/watch?v=GFPBJlJurQ8&t=1s
While audio-visual information is most easily replicated in Virtual Reality, active research and development efforts are still being conducted into the other senses. Tactile inputs such as omnidirectional treadmills allow users to feel as though they’re actually walking through a simulation, rather than sitting in a chair or on a couch. Haptic technologies, also known as kinesthetic or touch feedback tech, have progressed from simple spinning-weight “rumble” motors to futuristic ultrasound technology. It is now possible to hear and feel true-to-life sensations along with visual VR experiences. https://www.youtube.com/watch?v=L_pBs1qUhvw&t=1s
Virtual reality is most commonly used in entertainment applications such as video gaming and 3D cinema. Consumer virtual reality headsets were first released by video game companies in the early-mid 1990s. Beginning in the 2010s, next-generation commercial tethered headsets were released by Oculus (Rift), HTC (Vive) and Sony (PlayStation VR), setting off a new wave of application development. 3D cinema has been used for sporting events, pornography, fine art, music videos and short films. Since 2015, roller coasters and theme parks have incorporated virtual reality to match visual effects with haptic feedback. https://www.youtube.com/watch?v=-FyjEnoIgTM&t=1s
Naming discrepancies aside, the concept remains the same - using computer technology to create a simulated, three-dimensional world that a user can manipulate and explore while feeling as if he were in that world. Scientists, theorists and engineers have designed dozens of devices and applications to achieve this goal. Opinions differ on what exactly constitutes a true VR experience, but in general it should include:
David Em became the first artist to produce navigable virtual worlds at NASA's Jet Propulsion Laboratory (JPL) from 1977 to 1984. The Aspen Movie Map, a crude virtual tour in which users could wander the streets of Aspen in one of the three modes (summer, winter, and polygons), was created at the Massachusetts Institute of Technology (MIT) in 1978. https://www.youtube.com/watch?v=XctL6omkT4I&t=1s
In 2014, Sony announced Project Morpheus (its code name for the PlayStation VR), a virtual reality headset for the PlayStation 4 video game console. In 2015, Google announced Cardboard, a do-it-yourself stereoscopic viewer: the user places their smartphone in the cardboard holder, which they wear on their head. Michael Naimark was appointed Google's first-ever 'resident artist' in their new VR division. The Kickstarter campaign for Gloveone, a pair of gloves providing motion tracking and haptic feedback, was successfully funded, with over $150,000 in contributions. Also in 2015, Razer unveiled its open source project OSVR. https://www.youtube.com/watch?v=A2yWbxK7hN8&t=1s