Abstract:
PROBLEM TO BE SOLVED: To provide a dementia inquiry support device for accurately and quickly and automatically performing the determination of the presence/absence of the suspicion of dementia and the estimation of the progress and core symptom of dementia.SOLUTION: A dementia inquiry support device 3 includes: a storage part 36 for storing question information showing a question to be asked to a patient and/or a caregiver of the patient and answer information showing an answer obtained from the patient and/or the caregiver in response to the question information; a dementia suspicion presence/absence determination part 41 for determining whether or not the patient is suspected to have dementia on the basis of the answer information; a progress estimation part 43 for, when it is determined that the patient is suspected to have dementia by the dementia suspicion presence/absence determination part 41, estimating the progress of dementia on the basis of the answer information; and a core symptom estimation part 45 for estimating the core symptom of dementia on the basis of the progress estimated by the progress estimation part 43 and the answer information. Thus, it is possible to estimate the core symptom of the patient about dementia.
Abstract:
PROBLEM TO BE SOLVED: To provide a video display device that allows a user to appropriately view both a stereoscopic video and a plane video without being restricted by an optical viewing environment.SOLUTION: A video display device includes: an image panel unit 101 that creates an image for stereoscopic video display or an image for plane video display; and a parallax barrier unit 106 that is arranged facing and separated from the image panel unit 101, partially blocks light from the image panel unit 101 in viewing a stereoscopic video, and transmits light on the entire surface in viewing a plane video. The parallax barrier unit 106 includes a translucent substrate 107, and a plurality of belt-like modulation units 108 including an electrochromic material arranged on the translucent substrate 107.
Abstract:
PROBLEM TO BE SOLVED: To support a doctor to present appropriate countermeasures corresponding to the symptom of a patient to the patient or a caregiver.SOLUTION: A storage part 203 stores the information of a question to be made to a dementia patient or the caregiver of the patient and countermeasure information corresponding to the dementia, and a countermeasure information selection part 212 selects any of the countermeasure information stored in the storage part 203 on the basis of the information of the reply of the patient or caregiver to the question, and a countermeasure information output part 214 outputs the countermeasure information selected by the countermeasure information selection part 212.
Abstract:
PROBLEM TO BE SOLVED: To provide an electron emitting element capable of improving the amount of electron emission. SOLUTION: The electron emitting element 1 includes an electron accelerating layer 4 between an electrode substrate 2 and a thin film electrode 3. The electron accelerating layer 4 includes a particulate layer 5 and a protective layer 6 in the order from the electrode substrate 2 side. The particulate layer 5 contains insulator particulates 7, and conductive particulates 8 having the average particle diameter which is smaller than that of the insulator particulates 7, and the protective layer 6 contains an electron transportation agent 9 and a binder component 10. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a structure of an electron-emitting element which can maintain electron emission characteristics for a long period by avoiding a situation where an electrode on the electron emission side is lost gradually accompanying electron emission, and to provide its manufacturing method.SOLUTION: The electron-emitting element 1 includes an electron acceleration layer 4 between an electrode substrate 2 and a thin-film electrode 3. The electron acceleration layer 4 includes a particulate layer 105 containing insulator particulates located on the electrode substrate 2 side and includes a deposition 106 of conductive particulates on the surface of the particulate layer 105. Then, a conductive route is formed beforehand on the electron acceleration layer 4, and an electron emission part consisting of a physical defect which corresponds to an outlet of the conductive route is formed on the deposition 106. The electrons are emitted from this electron emission part 108.
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing an electron emitting element easily manufacturable in the atmosphere, and capable of stably and satisfactorily emitting electrons. SOLUTION: After applying conductive particulate dispersion liquid in which conductive particulates 6 are dispersed in a dispersion solvent, insulator particulate dispersion liquid in which insulator particulates 5 each having an average particle diameter larger than that of the conductive particulate 6 are dispersed is applied onto an electrode substrate 2 to form the electron accelerating layer 4 of this electron emitting element 1. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an electron emitting element capable of improving an amount of electron emission since a thin electrode can be thinned down to a moderate thickness. SOLUTION: This electron emitting element 1 includes an electron accelerating layer 4 between an electrode substrate 2 and a thin film electrode 3, and the electron accelerating layer 4 contains an insulator particulate 5 and at least either one of a conductive particulate 6 having an average particle diameter smaller than that of the insulator particulate 5 or a basic dispersant 60. The surface roughness of the electron accelerating layer 4 is not more than 0.2 μm in centerline average roughness (Ra), and the layer thickness of the thin electrode 3 is not more than 100 nm. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a pre-transfer charging device capable of uniformly charging a toner image on an intermediate transfer member before transferring it to material to be transferred in an ozone-less state and stably transferring it to the material to be transferred. SOLUTION: The pre-transfer charging device 3 includes: an electron emitter 30 having an electron acceleration layer 303 held between an electrode substrate 301 and a thin film electrode 302; a first power supply V1 applying voltage between the electrode substrate 301 and the thin film electrode 302 so as to accelerate electron in the electron acceleration layer 303 and emit it from the thin film electrode 302; and a second power supply V2 applying voltage between the thin film electrode 302 and an intermediate transfer belt 21. The thin film electrode 302 is arranged to be opposed to the intermediate transfer belt 21, and the electron acceleration layer 303 includes a particulate layer containing insulation particulates. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an electron emitting element which is improved in electron emission efficiency, for suppressing deterioration of an electron acceleration layer, and has a high mechanical strength. SOLUTION: The electron emitting element 1 includes the electron acceleration layer 4 between an electrode substrate 2 and a thin film electrode 3, and the electron acceleration layer 4 contains a binder component 15 in which insulating particulates 5 and conductive particulates 6 having the average particle diameter smaller than the average particle diameter of the insulating particulates 5 are dispersed. Then, in the electron acceleration layer 4, conductive particulates 6 are dispersed more on the thin film electrode 3 side. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a resin-coated carrier capable of stably charging a toner by preventing the thickness of a resin coating layer that is formed on a surface of the carrier core from becoming nonuniform. SOLUTION: The resin-coated carrier 50 includes a carrier core 51 and a resin coating layer 52, formed on the surface of the carrier core 51. The carrier core 51 is composed of a porous material, having fine pores 51a formed on a surface thereof, and has an apparent density of 1.6-2.0 g/cm 3 . The resin coating layer 52 contains cross-linked fine resin particles 53. Additionally, the resin-coated carrier 50 is configured, such that a volume average particle size of the cross-linked fine resin particles 53 contained in the resin coating layer 52 and the area average diameter of the surface fine pores 51a satisfy a predetermined relational expression. COPYRIGHT: (C)2011,JPO&INPIT
Abstract translation:要解决的问题:通过防止形成在载体芯的表面上的树脂涂层的厚度变得不均匀来提供能够稳定地对调色剂充电的树脂涂布载体。 解决方案:树脂涂覆载体50包括形成在载体芯51的表面上的载体芯51和树脂涂层52.载体芯51由多孔材料构成,具有形成在 其表面,并且具有1.6-2.0g / cm 3的表观密度。 树脂被覆层52含有交联的树脂微粒53.此外,树脂被覆载体50构成为使树脂被覆层52中包含的交联性微粒子树脂53的体积平均粒径和 表面细孔51a的面积平均直径满足规定的关系式。 版权所有(C)2011,JPO&INPIT