Abstract
This research and development was performed on (1) a composite physiological function measuring technology for stress measurement, (2) a contact-free skin temperature measuring technology, and (3) a stress indexing substance measuring technology. With regard to the subject (1), the target for the current fiscal year is to restructure a small restraint-free skin impedance measuring device into a practical device that can be used easily at working sites. In order to achieve the goal, electric power conservation and size reduction were moved forward by improving the circuit design, and stabilized measurement, in which the measurement algorithm is made more intelligent, was realized. With regard to the subject (2), the contact-free skin temperature measurement device having been structured by the previous fiscal year was given improvements in such parts as the infrared and visible image input, image processing, and data indication and sense volume estimation. With respect to the subject (3), the technology was established to measure such stress indexing substances as CS and CA from saliva. Positioning of CS and CA as the stress indexing substance was nearly completed. The stress indexing substance measuring device was tried of structuring the prototype A and prototype B applying the semi-micro specifications for an
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Citation Formats
None.
Report on achievements of research and development of a technology to apply human senses to measurements in fiscal 1994. 2. Main issue (Part 1 for research and development of a physiological effect measuring technology); 1994 nendo ningen kankaku keisoku oyo gijutsu no kekyu kaihatsu. 2. Honronhen (Seiriteki eikyo keisoku gijutsu no kenkyu kaihatsu).
Japan: N. p.,
1995.
Web.
None.
Report on achievements of research and development of a technology to apply human senses to measurements in fiscal 1994. 2. Main issue (Part 1 for research and development of a physiological effect measuring technology); 1994 nendo ningen kankaku keisoku oyo gijutsu no kekyu kaihatsu. 2. Honronhen (Seiriteki eikyo keisoku gijutsu no kenkyu kaihatsu).
Japan.
None.
1995.
"Report on achievements of research and development of a technology to apply human senses to measurements in fiscal 1994. 2. Main issue (Part 1 for research and development of a physiological effect measuring technology); 1994 nendo ningen kankaku keisoku oyo gijutsu no kekyu kaihatsu. 2. Honronhen (Seiriteki eikyo keisoku gijutsu no kenkyu kaihatsu)."
Japan.
@misc{etde_20091711,
title = {Report on achievements of research and development of a technology to apply human senses to measurements in fiscal 1994. 2. Main issue (Part 1 for research and development of a physiological effect measuring technology); 1994 nendo ningen kankaku keisoku oyo gijutsu no kekyu kaihatsu. 2. Honronhen (Seiriteki eikyo keisoku gijutsu no kenkyu kaihatsu)}
author = {None}
abstractNote = {This research and development was performed on (1) a composite physiological function measuring technology for stress measurement, (2) a contact-free skin temperature measuring technology, and (3) a stress indexing substance measuring technology. With regard to the subject (1), the target for the current fiscal year is to restructure a small restraint-free skin impedance measuring device into a practical device that can be used easily at working sites. In order to achieve the goal, electric power conservation and size reduction were moved forward by improving the circuit design, and stabilized measurement, in which the measurement algorithm is made more intelligent, was realized. With regard to the subject (2), the contact-free skin temperature measurement device having been structured by the previous fiscal year was given improvements in such parts as the infrared and visible image input, image processing, and data indication and sense volume estimation. With respect to the subject (3), the technology was established to measure such stress indexing substances as CS and CA from saliva. Positioning of CS and CA as the stress indexing substance was nearly completed. The stress indexing substance measuring device was tried of structuring the prototype A and prototype B applying the semi-micro specifications for an attempt of clearing the steps toward practically usable device. (NEDO)}
place = {Japan}
year = {1995}
month = {Mar}
}
title = {Report on achievements of research and development of a technology to apply human senses to measurements in fiscal 1994. 2. Main issue (Part 1 for research and development of a physiological effect measuring technology); 1994 nendo ningen kankaku keisoku oyo gijutsu no kekyu kaihatsu. 2. Honronhen (Seiriteki eikyo keisoku gijutsu no kenkyu kaihatsu)}
author = {None}
abstractNote = {This research and development was performed on (1) a composite physiological function measuring technology for stress measurement, (2) a contact-free skin temperature measuring technology, and (3) a stress indexing substance measuring technology. With regard to the subject (1), the target for the current fiscal year is to restructure a small restraint-free skin impedance measuring device into a practical device that can be used easily at working sites. In order to achieve the goal, electric power conservation and size reduction were moved forward by improving the circuit design, and stabilized measurement, in which the measurement algorithm is made more intelligent, was realized. With regard to the subject (2), the contact-free skin temperature measurement device having been structured by the previous fiscal year was given improvements in such parts as the infrared and visible image input, image processing, and data indication and sense volume estimation. With respect to the subject (3), the technology was established to measure such stress indexing substances as CS and CA from saliva. Positioning of CS and CA as the stress indexing substance was nearly completed. The stress indexing substance measuring device was tried of structuring the prototype A and prototype B applying the semi-micro specifications for an attempt of clearing the steps toward practically usable device. (NEDO)}
place = {Japan}
year = {1995}
month = {Mar}
}