会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • TRACHEAL INTUBATION TRAINING APPARATUS
    • TRACHEAL INTUBATION培训设备
    • US20110010155A1
    • 2011-01-13
    • US12922014
    • 2008-09-30
    • Atsuo TakanishiYohan NohJorge SolisHiroyuki IshiiYu OguraKoji NagahiroMasanao SegawaAkihiro ShimomuraTamotsu KatayamaKazuyuki Hatake
    • Atsuo TakanishiYohan NohJorge SolisHiroyuki IshiiYu OguraKoji NagahiroMasanao SegawaAkihiro ShimomuraTamotsu KatayamaKazuyuki Hatake
    • G06G7/60
    • G09B23/32
    • It is an object of the invention to evaluate a tracheal intubation technique in consideration of various points to remember related to a tracheal intubation treatment. A tracheal intubation training apparatus (10) is provided with a model (14) which has an appearance modeled on the upper body portion of a human body and an evaluation means (15) which evaluates the tracheal intubation technique carried out to the model (14). The model (14) has pressure sensors (46, 57, 62, 66) which measure pressurizing force when a tracheal intubation device (12) touches respective sections (31, 32, 34, 36, 41, 63) modeled on sections from the inside of the mouth through to that of the trachea of a living body, position detection sensors (69, 76) which detect whether the tracheal intubation device (12) exists in the predetermined areas of the tracheal part (63) and an esophageal part (64), and angle sensors (79 to 81) which detect the postures of a head/face part (28A), a neck/chest part (28B), and a lower jaw part (31). The evaluation means (15) calculates the evaluation value (Z) of the intubation technique according to the measured values of the respective sensors.
    • 本发明的目的是评估气管插管技术,考虑到与气管插管治疗相关的各种要点。 一种气管插管训练装置(10)具有模型(14),该模型具有模拟人体的上半身部分的外观,以及评估装置(15),其评估对模型进行的气管插管技术(14) )。 该模型(14)具有压力传感器(46,57,62,66),该压力传感器测量当气管插管装置(12)接触来自所述气管插管装置(12)的各部分的相应部分(31,32,34,36,41,63)时的加压力 在口腔内通过活体气管的位置检测传感器(69,76)检测气管插管装置(12)是否存在于气管部分(63)的预定区域和食管部分 检测头/面部(28A),颈部/胸部(28B)和下颚部(31)的姿势的角度传感器(79〜81)。 评估装置(15)根据各传感器的测量值计算插管技术的评估值(Z)。
    • 2. 发明授权
    • Multicolor image forming material and method for forming multicolor image
    • 多色成像材料和形成多色图像的方法
    • US06946425B2
    • 2005-09-20
    • US10811967
    • 2004-03-30
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • B41M5/34B41M5/382B41M5/385B41M5/40B41M5/42B41M5/46G03F3/10
    • B41M5/345B41M5/38207B41M5/38257B41M5/42B41M2205/02Y10S430/146Y10T428/24802
    • A multicolor image-forming material comprises: an image-receiving sheet having an image-receiving layer and a support; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the thermal transfer sheets has a different color, wherein a multicolor image is formed by: superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer, such that the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer with a laser beam; transferring the irradiated area of the image-forming layer onto the image-receiving layer to form an image; and transferring the image on the image-receiving layer onto an actual printing paper, and each of the at least four thermal transfer sheets has a recording area being defined by a product of a length of 515 mm or more and width of 728 mm or more, and each of the at least four thermal transfer sheets is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 20 mm to 80 mm, and the actual printing paper is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 5 mm to 100 mm.
    • 多色图像形成材料包括:具有图像接收层和支撑体的图像接收片材; 以及至少四个热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,其中每个热转印片材具有不同的颜色,其中通过以下方法形成多色图像: 图像接收层中的至少四个热转印片中的每一个中的图像形成层,使得图像形成层与图像接收层相对; 用激光束照射图像形成层; 将图像形成层的照射区域转印到图像接收层上以形成图像; 并且将图像接收层上的图像转印到实际的打印纸上,并且至少四个热转印片中的每一个具有由515mm以上的长度和728mm以上的宽度的乘积限定的记录区域 ,并且所述至少四个热转印片中的每一个在图像接收片中的长度方向和宽度方向上都比20mm至80mm大,并且实际的打印纸中的每一个较大 长度方向和宽度方向比图像接收片材宽5mm至100mm。
    • 3. 发明授权
    • Multicolor image-forming material and method for forming multicolor image
    • 多色成像材料及形成多色图像的方法
    • US06830863B2
    • 2004-12-14
    • US10054891
    • 2002-01-25
    • Naotaka WachiAkihiro ShimomuraKazuhito MiyakeYasutomo GotoMitsuru Yamamoto
    • Naotaka WachiAkihiro ShimomuraKazuhito MiyakeYasutomo GotoMitsuru Yamamoto
    • G03F734
    • B41M5/46B41M5/345B41M5/465G03F3/10Y10S430/153
    • A multicolor image-forming material comprises: an image-receiving sheet having an image-receiving layer; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the thermal transfer sheets has a different color, wherein an image is formed by: superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer in the image-receiving sheet, in which the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer in the thermal transfer sheet with a laser beam; and transferring the irradiated area of the image-forming layer onto the image-receiving layer in the image-receiving sheet, and each of the light-to-heat converting layers in the at least four thermal transfer sheets has a ratio of an optical density (OD) to a layer thickness: OD/layer thickness (&mgr;m unit) of 0.57 or more.
    • 多色图像形成材料包括:具有图像接收层的图像接收片; 以及至少四个热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,其中每个热转印片材具有不同的颜色,其中通过以下步骤形成图像:叠加图像 图像形成层与图像接收层相对的图像接收片中的图像接收层上的至少四个热转印片中的每一个中的形成层; 用激光束照射热转印片中的图像形成层; 以及将图像形成层的照射区域转印到图像接收片材中的图像接收层上,并且至少四个热转印片材中的每个光热转换层具有的光密度 (OD)至层厚度:OD /层厚度(母体单位)为0.57以上。
    • 4. 发明授权
    • Multicolor image forming material and method for forming multicolor image
    • 多色成像材料和形成多色图像的方法
    • US06758932B2
    • 2004-07-06
    • US10060170
    • 2002-02-01
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • Mitsuru YamamotoSusumu SugiyamaAkihiro ShimomuraAkira Hatakeyama
    • B41M540
    • B41M5/345B41M5/38207B41M5/38257B41M5/42B41M2205/02Y10S430/146Y10T428/24802
    • A multicolor image-forming material comprises: an image-receiving sheet having an image-receiving layer and a support; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the thermal transfer sheets has a different color, wherein a multicolor image is formed by: superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer, such that the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer with a laser beam; transferring the irradiated area of the image-forming layer onto the image-receiving layer to form an image; and transferring the image on the image-receiving layer onto an actual printing paper, and each of the at least four thermal transfer sheets has a recording area being defined by a product of a length of 515 mm or more and width of 728 mm or more, and each of the at least four thermal transfer sheets is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 20 mm to 80 mm, and the actual printing paper is larger in each of a length-wise and a width-wise direction than the image-receiving sheet by 5 mm to 100 mm.
    • 多色图像形成材料包括:具有图像接收层和支撑体的图像接收片材; 以及至少四个热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,其中每个热转印片材具有不同的颜色,其中通过以下方法形成多色图像: 图像接收层中的至少四个热转印片中的每一个中的图像形成层,使得图像形成层与图像接收层相对; 用激光束照射图像形成层; 将图像形成层的照射区域转印到图像接收层上以形成图像; 并且将图像接收层上的图像转印到实际的打印纸上,并且至少四个热转印片中的每一个具有由515mm以上的长度和728mm以上的宽度的乘积限定的记录区域 ,并且所述至少四个热转印片中的每一个在图像接收片中的长度方向和宽度方向上都比20mm至80mm大,并且实际的打印纸中的每一个较大 长度方向和宽度方向比图像接收片材宽5mm至100mm。
    • 9. 发明授权
    • Laser thermal transfer recording method and apparatus therefor
    • 激光热转印记录方法及其装置
    • US06879336B2
    • 2005-04-12
    • US10100017
    • 2002-03-19
    • Susumu SugiyamaAkihiro Shimomura
    • Susumu SugiyamaAkihiro Shimomura
    • B41J2/315B41J2/475B41J2/48B41M5/382B41M5/40B41M5/42B41M5/46B41M7/00B41J13/00
    • B41M5/38207B41J2/4753B41M5/38214B41M5/38221B41M5/42B41M5/426B41M5/46
    • A laser thermal transfer recording method comprises: dispensing a thermal transfer sheet and an image-receiving sheet to an exposure recording device; cutting each of the sheets into pieces of a predetermined length; superposing each of the cut pieces of the image-receiving sheet on each of the cut pieces of the thermal transfer sheet; loading an exposure drum installed in the exposure recording device with the thus superposed pieces of sheets; and irradiating the sheets loaded on the exposure drum with a laser beam according to image information, in which the laser beam is absorbed in the thermal transfer sheet and converted into a heat, and an image is transferred onto the image-receiving sheet by the heat converted from the laser beam, wherein each surface of the thermal transfer sheet and the image-receiving sheet is cleaned by contacting with an adhesive roller that includes an adhesive material on its surface, in which the adhesive roller is disposed in any one of a feeding part and a conveying part of the thermal transfer sheet and the image-receiving sheet in the exposure recording device, and the image-receiving sheet has a thickness of 110 to 160 μm, and at least one of pieces of the thermal transfer sheet and pieces of the image-receiving sheet is stacked while be blown.
    • 激光热转印记录方法包括:将热转印片和图像接收片分配到曝光记录装置; 将每个片材切割成预定长度的片段; 将图像接收片的每个切片叠加在热转印片的每个切割片上; 用安装在曝光记录装置上的曝光鼓装载由此叠加的片材; 并且根据图像信息用激光束照射装载在曝光鼓上的片材,其中激光束被吸收在热转印片材中并转换成热量,并且图像通过热量转印到图像接收片材上 从激光束转换,其中热转印片和图像接收片的每个表面通过与其表面上包括粘合剂材料的粘合辊接触来清洁,其中粘合辊设置在任一种喂料 热转印片和图像接收片的输送部分和曝光记录装置中的图像接收片,并且图像接收片具有110至160μm的厚度,并且至少一个热转印片和片 图像接收片材被吹扫时堆叠。
    • 10. 发明授权
    • Multicolor image-forming method and multicolor image-forming material
    • 多色成像方法和多色成像材料
    • US06856337B2
    • 2005-02-15
    • US10100071
    • 2002-03-19
    • Akihiro ShimomuraToshiharu TanakaAkira Hatakeyama
    • Akihiro ShimomuraToshiharu TanakaAkira Hatakeyama
    • B41J2/325B41J2/475B41J2/48
    • B41J2/325
    • A method for forming a multicolor image comprises:preparing: an image-receiving sheet having a support and an image-receiving layer; and at least four thermal transfer sheets each including a support, a light-to-heat converting layer and an image-forming layer, in which each of the at least four thermal transfer sheets has a different color and each of the image-forming layers in the at least four thermal transfer sheets has a ratio of an optical density (OD) to a layer thickness: OD/layer thickness (μm unit) of 1.50 or more; superposing the image-forming layer in each of the at least four thermal transfer sheets on the image-receiving layer in the image-receiving sheet, in which the image-forming layer is opposed to the image-receiving layer; irradiating the image-forming layer in each of the at least four thermal transfer sheets with a laser beam; and transferring the irradiated area of the image-forming layer onto the image-receiving layer in the image-receiving sheet to record an image, in which the transferred image onto the image-receiving sheet has a resolution of 2400 dpi or more, where in a color matching process is performed before the image is recorded on the image-receiving sheet.
    • 用于形成多色图像的方法包括:准备:具有支撑体和图像接收层的图像接收片材; 以及至少四个热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,其中至少四个热转印片中的每一个具有不同的颜色,并且每个图像形成层 在至少四个热转印片材中,光密度(OD)与层厚度之比为OD /层厚度(母体单位)为1.50以上; 将图像形成层叠加在图像接收片中的图像接收层中的至少四个热转印片中的每一个中,其中图像形成层与图像接收层相对; 用激光束照射所述至少四个热转印片中的每一个中的图像形成层; 并且将图像形成层的照射区域转印到图像接收片材中的图像接收层上以记录图像,其中转印到图像接收片材上的图像具有2400dpi或更大的分辨率,其中 在图像被记录在图像接收片材之前执行颜色匹配处理。