The Experts below are selected from a list of 12048 Experts worldwide ranked by ideXlab platform
Israel Steiner - One of the best experts on this subject based on the ideXlab platform.
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Surprising cause of transient Monocular Vision loss
Practical neurology, 2014Co-Authors: Felix Benninger, Israel SteinerAbstract:A 61-year-old man presented to the emergency department with transient Monocular Vision loss on three occasions over 2 weeks. The episodes of progressive Vision loss in the left eye each lasted between 1 and 20 min, described as a ‘curtain being drawn’ and disappeared without additional symptoms or headache. He had smoked heavily until 3 years before, when he was diagnosed with hypertension and type 2 diabetes mellitus. His blood pressure and …
Hong Xiao-wei - One of the best experts on this subject based on the ideXlab platform.
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A SLAM Algorithm Based on Monocular Vision and Odometer
Computer Simulation, 2008Co-Authors: Hong Xiao-weiAbstract:The SLAM algorithm is mostly based on stereo Vision that has some disadvantages of high cost, complexity of calibration and low robustness. Therefore,the Monocular Vision and odometer based method is proposed to solve this problem.This method uses the scale invariant feature transform algorithm to extract features from images obtained from different view point, then uses extended kalman filter to update the map.The depth information can not be extracted by a sigle camera. The problem can be solved by the landmarks delayed initialization method which makes the Monocular Vision based navigation possible.The simulation of the SLAM algorithm is implemented in MATLAB, the experiment result shows that the proposed method is feasible,and with high localization precision in indoor environments.
Carolyn Ihrig - One of the best experts on this subject based on the ideXlab platform.
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Vision rehabilitation team management of acquired Monocular Vision.
Optometry and Vision Science, 2013Co-Authors: Carolyn IhrigAbstract:PURPOSE: Existing low-Vision programs do not readily meet the needs of the Monocular patient. This case report illustrates the implementation and benefits of an Acquired Monocular Vision Rehabilitation (AMVR) evaluation and training program from the patient's perspective. The AMVR program guides and teaches specific skills to each Monocular patient. Adaptive skills are demonstrated to enhance and maximize the person's remaining Monocular Vision; to teach visual skills; to acquire and maintain independence, living, and functioning; and prevent depression. The purpose of this article is to illustrate the potential for Monocular Vision rehabilitation and justify adding Monocular rehabilitation therapy to current Vision rehabilitation programs and encourage future clinical case studies to measure functional outcomes. CASE REPORT: This case report illustrates one example of concurrent Vision rehabilitation team management including low-Vision optometrists, ophthalmologists, blind rehabilitation specialists (also known as Vision rehabilitation therapist), and orientation and mobility instructors (O&M) of a later stage acquired Monocular patient within a 1-year period. CONCLUSIONS: After completion of the AMVR program (detailed components available in Appendices, available at http://links.lww.com/OPX/A114), our patient expressed an increase in self-confidence, improved motor skills, and less depression since learning more about his condition and adaptations he can maintain. He stated that he feels he is a "better me." The patient's positive feedback encourages further data to be collected with future Monocular patients evaluated at an earlier stage of their Vision loss and to continue to structure supportive services by demonstrating new adaptive techniques and exercises to show each person "is-able" and not "dis-abled.
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Vision rehabilitation team management of acquired Monocular Vision.
Optometry and vision science : official publication of the American Academy of Optometry, 2013Co-Authors: Carolyn IhrigAbstract:ABSTRACTPurposeExisting low-Vision programs do not readily meet the needs of the Monocular patient. This case report illustrates the implementation and benefits of an Acquired Monocular Vision Rehabilitation (AMVR) evaluation and training program from the patient’s perspective. The AMVR program guid
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Acquired Monocular Vision Rehabilitation program
Journal of rehabilitation research and development, 2007Co-Authors: Carolyn Ihrig, Daniel P SchaeferAbstract:Existing programs concerning patients with low Vision do not readily meet the needs of the patient with acquired Monocular Vision. This article illustrates the development, need, and benefits of an Acquired Monocular Vision Rehabilitation evaluation and training program. This proposed program will facilitate the organization of Vision rehabilitation with eye care professionals and social caseworkers to help patients cope with, as well as accept, and recognize obstacles they will face in transitioning suddenly to Monocular Vision.
Felix Benninger - One of the best experts on this subject based on the ideXlab platform.
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Surprising cause of transient Monocular Vision loss
Practical neurology, 2014Co-Authors: Felix Benninger, Israel SteinerAbstract:A 61-year-old man presented to the emergency department with transient Monocular Vision loss on three occasions over 2 weeks. The episodes of progressive Vision loss in the left eye each lasted between 1 and 20 min, described as a ‘curtain being drawn’ and disappeared without additional symptoms or headache. He had smoked heavily until 3 years before, when he was diagnosed with hypertension and type 2 diabetes mellitus. His blood pressure and …
Zhao Yufan - One of the best experts on this subject based on the ideXlab platform.
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General design of the lateral control system based on Monocular Vision on THASV-I
IEEE Intelligent Vehicles Symposium 2004, 1Co-Authors: Yingma, Yuanyi, Wanjian, Chenjun, Zhao YufanAbstract:In the paper, an intelligent vehicle prototype - THASV-I is designed to study the vehicle active safety on highway environment. The structure features and the relative technologies of the prototype are described. The principle and structure of Monocular Vision system are described in detail, as well as the lane identification and following algorithm. With some restrictions the Monocular Vision system can also be used to detect the obstacles in lane before the vehicle. At last, a Vision based human-simulating steering control algorithm is presented. The results of the Vision based auto-drive experiments on the prototype are also described and analyzed in the paper.