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In May 2021, MPEG issued a call for proposals for the specification of a new coding format for haptic data. Following this call, a baseline reference design and associated software implementation were defined for the representation and coding of haptic data. It resulted in a standard that defines a complete generic framework for the delivery of haptic signals, allowing the development of current and future haptic applications in the mobile, gaming, and virtual reality domains. This paper introduces the results of the first phase of the MPEG haptics coding standard. It includes the description of the codec architecture, the current performances in terms of compression efficiency, and the plans for the coding representation and distribution of haptics. The publication of the final ISO international standard is expected in 2024.
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http://dx.doi.org/10.1109/TOH.2025.3539026 | DOI Listing |
IEEE Trans Haptics
June 2025
In May 2021, MPEG issued a call for proposals for the specification of a new coding format for haptic data. Following this call, a baseline reference design and associated software implementation were defined for the representation and coding of haptic data. It resulted in a standard that defines a complete generic framework for the delivery of haptic signals, allowing the development of current and future haptic applications in the mobile, gaming, and virtual reality domains.
View Article and Find Full Text PDFJ Biomed Nanotechnol
July 2013
School of Mechanical and Aerospace Engineering and ReCAPT, Gyeongsang National University, Jinju 660-701, Korea.
When dealing with nano targeted drug delivery process the significant area of virtual reality application can be visualizing real time process and simulating it at nano-scale, since the effectiveness of a drug primarily depends on the affected cell and targeted doze. This paper proposes virtual reality (VR) as a tool to analyze and simulate nanoparticles (NPs) manipulation, in this paper amorphous NPs are analyzed and simulated in virtual environment. Haptic guides virtualizing the atomic force microscope (AFM) is applied in the virtual environment which allows the operators to sense and touch the NPs when evaluating its structure, drug release time, and behavioral study.
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