Toggle navigation
Home
Topics
Topics
Clinical Systems
Clinical Systems
Clinical Systems
Clinical Systems
Medical Device Packaging
Obstetrics and Gynecology
Obstetrics and Gynecology
Oncology Systems
Specialties
Specialties
Specialties
Specialties
Sports Medicine
Transformation
Transformation
Transformation
Transformation
Ultrasound Devices
CXO Insights
Vendor Viewpoint
News
Conferences
Newsletter
CXO Awards
About Us
US
US
EUROPE
APAC
Toggle navigation
Obstetrics and Gynecology
ENT Devices
Medical Imaging Systems
Dental Care Devices
Sanitization Products and Equipment
Patient Monitoring Devices Latam
Orthopedic Devices and instruments Latam
Neurology Devices Latam
In Vitro Diagnostics Latam
Endoscopy Latam
Dental Care Devies Latam
Cardio Vascular Devices Latam
Patient Monitoring Devices
Dermatology Care
ENT Devices
FemTech
Regenerative Medicine
Medical Equipment
Medical Imaging Systems
Patient Monitoring Devices
Regenerative Medicine
Cancer Care
Medical Equipment
Medical Device Design and Development
Medical Device Regulatory and Compliance
Medical Device Design and Development Latam
Specialties
Clinical Systems
Transformation
Clinical Systems Latam
Endoscopy
Specialties Latam
Clinical Systems
Transformation Latam
Specialties
Transformation
Transformation
Specialties
Medical Device Packaging
Clinical Systems
Vein Detection
Nephrology and Urology
Medical Aesthetics
Respiratory Care
Medical Device Design and Development
Neurology Devices
Endoscopy
Medical Equipment
Obstetrics and Gynecology
Surgical Devices and Instruments
Sports Medicine
Drug Delivery Solutions
Cardiovascular Devices
In Vitro Diagnostics
Medical Aesthetics
Patient Monitoring Devices
Dermatology Care
ENT Devices
Ultrasound Devices
Physiotherapy and Pain Management
Orthopedic Devices and instruments
Biomechanics
Mobility Devices and Aids
Oncology Systems
Chronic and Long Term Care
Dental Care Devices
Orthopedic Devices and instruments
In Vitro Diagnostic
Mobility Devices and Aids
Surgical Devices and Instruments
Drug Delivery Solutions
Physiotherapy and Pain Management
Medtech Startups
Cardio Vascular Devices
Surgical Devices and Instruments
Cardiovascular Devices
Physiotherapy and Pain Management
Drug Delivery Solutions
Medical Device Consulting
Orthopedic
Respiratory Devices
Medical Device Design and Development
Endoscopy
Medical Imaging Systems
In Vitro Diagnostics
Infection Control Solutions Canada
Physiotherapy and Pain Management Latam
Surgical Devices Latam
Regenerative Medicine
Medical Equipment
Cancer Care
Medical Imaging Systems
Regenerative Medicine
Nephrology and Urology
Medical Equipment
MORE
November - 201819the ability of molecules in LC to arrange themselves in varying directions to permit the wearer of e-Vision's lenses to dynamically adjust (tune) the focus of the lenses from distance viewing to reading and anywhere in between. This lens technology takes advantage of state-of-the-art micro-electronics to provide extremely low power consumption (in a power management focused world) and high speed switching of the focus of the lens, in a very small, light and robust to port form factor with wireless power and control features. e-Vision is utilizing this technology in smart glasses, electronic contact lenses (ECL), and in the near future, it is slated for use in IOLs. Worldwide it is estimated that 2.1 billion people need vision correction and those being corrected spend over $55 billion dollars per year. Presently for reading glasses, people rely on bifocals or progressive lenses that blend the areas of focus. Typically, the user looks down for their reading distance and looks up for far distances. Bifocals have two lens powersthe top half of the lens for distance and the bottom half of the lens for reading with a visible (fashion faux pas) bifocal line that cuts across the center of the lens. Progressive lenses can change the focus range gradually as one gazes down from distance vision on the top of the lens down to intermediate and reading vision at the bottom. Although progressive lenses offer multiple vision fields, they take time getting used to and not everyone can adapt to them (especially with contact lenses and IOLs) and they alter peripheral vision slightly. Today e-Vision is exhibiting a working prototype of its dynamic tunable lens technology demonstrating the ability of the e-Vision lens to shift/adjust to any focus from distance to reading and anywhere in between. In the case of the electronic contact lens/IOLs, the entire field of view of the e-Vision lens will change to the focus desired by the wearerno more will you be looking down and up searching for a specific zone of focus on a lens.e-Vision is also developing applications of its LC technology and its supporting wearable frame technologies (such as those used by Mitsui in its smart glasses) for X Reality (XR). In the rapidly advancing field of Augmented and Mixed Reality, e-Vision's patented technology will keep the augmented and mixed reality content being projected in front of the user's eye in focus as the users' eyes change their focus. In augmented and mixed reality, the virtual content viewed is set to distance viewing, so if a user is focused at distance it works well. However, when the users refocus their gaze upon a near object in the real world, the virtual content goes out of focus. With e-Vision's dynamic lens, they will be able to keep the content in focus regardless of what they are looking at, enhancing the augmented and mixed reality experience as a whole."In the near future our glasses will alter the focus as the user changes their focus," adds Tony Van HeugtenChief Technology Officer of e-Vision.For Virtual Reality e-Vision's technology permits the device to be programmed with each individual user's ophthalmic prescription so that they do not have to be worn over the user's eyeglasses. All of the XR systems will benefit from utilizing e-Vision's wearable frame technology that can provide power and control of the devices. For medical devices, e-Vision's technology is being utilized by the Italian manufacturer, Adaptica SLR, in its head-mounted phoroptor where the patient can get involved in the process of determining their vision prescription with an interactive controller that will fine-tuning the adjustments for their corrective prescription, as opposed to the doctor verifying through trial and error.The need for dynamic, fully tunable optics is now fully established according to these inventors and, as noted above, it is on the radar of companies across many industries.Today e-Vision is a leader in the new field of electronic vision technology, with prototypes whose commercialization can be visualized. They worked with Mitsui and Adaptica in commercializing their products and they have also worked with NASA, and also with the US Army in developing unique vision solutions for their needs. For e-Vision, the roadmap is to make itself known in different industries and they are ready for the prime time--adopting its dynamic, fully tunable optics to the requirements of industry-specific companies, who would then offer the product to the consumer. We at e-Vision are a leader at leveraging electronics and optical devices into a single package, with a particular focus on vision science
<
Page 9
|
Page 11
>