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    • 1. 发明申请
    • OPTICAL FIBER PROBE FOR SIDE IMAGING AND METHOD OF MANUFACTURING THE SAME
    • 用于侧面成像的光学纤维探针及其制造方法
    • US20090052849A1
    • 2009-02-26
    • US12182015
    • 2008-07-29
    • Byeong Ha LEEHae Young ChoiSeon Young RyuJihoon NaIk-Bu SohnYoung-Chul NohJongmin Lee
    • Byeong Ha LEEHae Young ChoiSeon Young RyuJihoon NaIk-Bu SohnYoung-Chul NohJongmin Lee
    • G02B6/06
    • G02B6/262A61B5/0066A61B5/0084A61B5/02007G02B6/02347
    • Disclosed are an optical fiber probe for side imaging and a method of manufacturing the same. An optical fiber probe according to an aspect of the invention includes a photonic crystal fiber, and an optical fiber lens that is formed by applying heat to a predetermined region including one end of the photonic crystal fiber and substantially removing air holes formed in the predetermined region. The optical fiber lens includes a light diffusion region that diffuses light propagating along a core of the photonic crystal fiber and focuses the light to enable side imaging, a reflector surface that reflects the light at a right angle to enable side imaging, and a lens surface that focuses the light. A small-sized optical fiber probe can be manufactured using a simple manufacturing process, and the optical fiber probe can be miniaturized. Therefore, a light measurement system can be miniaturized, which makes it possible to obtain side images of a very small sample, such as a blood vessel.
    • 公开了一种用于侧面成像的光纤探针及其制造方法。 根据本发明的一个方面的光纤探针包括光子晶体光纤和光纤透镜,其通过对包括光子晶体光纤的一端的预定区域进行加热而形成,并且基本上去除在预定区域中形成的空气孔 。 光纤透镜包括光扩散区域,其漫射沿着光子晶体光纤的核心传播的光并且聚焦光以实现侧面成像;反射器表面,其以直角反射光以实现侧面成像;以及透镜表面 重点是光。 可以使用简单的制造工艺制造小尺寸的光纤探针,并且可以使光纤探针小型化。 因此,光测量系统可以小型化,这使得可以获得诸如血管的非常小的样品的侧面图像。
    • 6. 发明授权
    • X-ray tube system with disassembled carbon nanotube substrate for generating micro focusing level electron-beam
    • 用于产生微聚焦电子束的分解碳纳米管衬底的X射线管系统
    • US07403595B2
    • 2008-07-22
    • US11783046
    • 2007-04-05
    • Jong Uk KimHae Young Choi
    • Jong Uk KimHae Young Choi
    • H01J35/00H01J35/06H01J35/14
    • H01J35/065H01J35/14H01J2235/062
    • Disclosed is an X-ray tube system with a disassembled carbon nanotube substrate for generating micro focusing level electron beams. A housing provides a vacuum space. An anode forms an electric field by a voltage applied from the outside and accelerates the electrons emitted from the cathode to reach the anode itself. A carbon nanotube substrate used as a cathode corresponding to the anode. A cathode plate supports and fixes the carbon nanotube substrate and applies a voltage to the carbon nanotube substrate. A sample probe is installed assemblably/disassemblably in the housing. A grid electrode is installed in front of the carbon nanotube substrate and extracting electrons from the carbon nanotube substrate in an easy manner. An electron focusing lens focuses the electrons passed through the grid electrode to form a micro level focus in the anode. A feed through applies a voltage to the cathode, the grid electrode and the electron focusing lens. A vacuum pump sustains a vacuum state inside the housing in exchanging the carbon nanotube substrate. A vacuum valve isolates the inside from the outside of the housing when the sample probe is inserted into the housing and disassembled from the housing.
    • 公开了一种具有用于产生微聚焦电子束的分解碳纳米管基底的X射线管系统。 外壳提供真空空间。 阳极通过从外部施加的电压形成电场,并加速从阴极发射的电子到达阳极本身。 用作对应于阳极的阴极的碳纳米管衬底。 阴极板支撑并固定碳纳米管衬底并向碳纳米管衬底施加电压。 样品探针可以安装/拆卸地安装在外壳中。 栅格电极安装在碳纳米管衬底的前面,并以容易的方式从碳纳米管衬底提取电子。 电子聚焦透镜将通过栅格电极的电子聚焦以在阳极中形成微观焦点。 馈电通过对阴极,栅极和电子聚焦透镜施加电压。 在更换碳纳米管基板的过程中,真空泵维持壳体内的真空状态。 当样品探头插入外壳并从外壳拆卸时,真空阀将内部与外壳隔离。
    • 8. 发明申请
    • X-ray tube system with disassembled carbon nanotube substrate for generating micro focusing level electron-beam
    • 用于产生微聚焦电子束的分解碳纳米管衬底的X射线管系统
    • US20070237300A1
    • 2007-10-11
    • US11783046
    • 2007-04-05
    • Jong Uk KimHae Young Choi
    • Jong Uk KimHae Young Choi
    • H01J35/00
    • H01J35/065H01J35/14H01J2235/062
    • Disclosed is an X-ray tube system with a disassembled carbon nanotube substrate for generating micro focusing level electron beams. A housing provides a vacuum space. An anode forms an electric field by a voltage applied from the outside and accelerates the electrons emitted from the cathode to reach the anode itself. A carbon nanotube substrate used as a cathode corresponding to the anode. A cathode plate supports and fixes the carbon nanotube substrate and applies a voltage to the carbon nanotube substrate. A sample probe is installed assemblably/disassemblably in the housing. A grid electrode is installed in front of the carbon nanotube substrate and extracting electrons from the carbon nanotube substrate in an easy manner. An electron focusing lens focuses the electrons passed through the grid electrode to form a micro level focus in the anode. A feed through applies a voltage to the cathode, the grid electrode and the electron focusing lens. A vacuum pump sustains a vacuum state inside the housing in exchanging the carbon nanotube substrate. A vacuum valve isolates the inside from the outside of the housing when the sample probe is inserted into the housing and disassembled from the housing.
    • 公开了一种具有用于产生微聚焦电子束的分解碳纳米管基底的X射线管系统。 外壳提供真空空间。 阳极通过从外部施加的电压形成电场,并加速从阴极发射的电子到达阳极本身。 用作对应于阳极的阴极的碳纳米管衬底。 阴极板支撑并固定碳纳米管衬底并向碳纳米管衬底施加电压。 样品探针可以安装/拆卸地安装在外壳中。 栅格电极安装在碳纳米管衬底的前面,并以容易的方式从碳纳米管衬底提取电子。 电子聚焦透镜将通过栅格电极的电子聚焦以在阳极中形成微观焦点。 馈电通过对阴极,栅极和电子聚焦透镜施加电压。 在更换碳纳米管基板的过程中,真空泵维持壳体内的真空状态。 当样品探头插入外壳并从外壳拆卸时,真空阀将内部与外壳隔离。
    • 9. 发明授权
    • X-ray system for dental diagnosis and oral cancer therapy based on nano-material and method thereof
    • 基于纳米材料的牙科诊断和口腔癌治疗的X射线系统及其方法
    • US07771117B2
    • 2010-08-10
    • US12181791
    • 2008-07-29
    • Jong Uk KimHae Young Choi
    • Jong Uk KimHae Young Choi
    • H05G1/02H01J35/00
    • H01J35/065A61B6/14A61B6/145A61N5/1014H01J1/3048H01J35/32
    • A medical X-ray tube system for dental diagnosis and oral cancer therapy based on nano-material is disclosed. The medical X-ray tube system may include a body and an X-ray emission module emitting X-rays using a cathode having a chipped nano-structured material. The X-ray emission module may be separable from the body. The medical X-ray tube system may be formed as a pen that can be inserted in the oral cavity for displaying an accurate image of an inner location of the oral cavity needing a diagnosis. For treatment of oral cancer requiring an appropriate amount of radiation therapy, brachytherapy may be conducted without concern of exposure of normal tissues to radiation because radiation can be directly irradiated to a diseased part. The X-ray emission module may use a chipped nano-structured material, for example, a carbon nanotube.
    • 公开了一种用于牙科诊断和基于纳米材料的口腔癌治疗的医用X射线管系统。 医疗X射线管系统可以包括使用具有切片纳米结构材料的阴极发射X射线的体和X射线发射模块。 X射线发射模块可以与身体分离。 医疗X射线管系统可以形成为可以插入口腔中的笔,以显示需要诊断的口腔的内部位置的精确图像。 为了治疗需要适当量的放射治疗的口腔癌,可以进行近距离放射治疗,而不用担心正常组织暴露于辐射,因为辐射可以直接照射到患病部位。 X射线发射模块可以使用切片纳米结构材料,例如碳纳米管。
    • 10. 发明申请
    • X-Ray System for Dental Diagnosis and Oral Cancer Therapy Based on Nano-Material and Method Thereof
    • 基于纳米材料及其方法的牙科诊断和口腔癌治疗X射线系统
    • US20090310742A1
    • 2009-12-17
    • US12181791
    • 2008-07-29
    • Jong Uk KimHae Young Choi
    • Jong Uk KimHae Young Choi
    • A61B6/14H01J35/00H01J35/20
    • H01J35/065A61B6/14A61B6/145A61N5/1014H01J1/3048H01J35/32
    • The present invention relates to applying an existing carbon nanotube X-ray tube for a dental X-ray imaging system that can replace a carbon nanotube electron emission source installed in a cathode portion. An X-ray tube system formed in a pen according to the present invention can be inserted in the oral cavity due to its thin thickness, thereby displaying an accurate image of an inner location of the oral cavity needing a diagnosis. For therapy of oral cancer requiring an appropriate amount of radiation therapy, since radiation can be directly irradiated to a diseased part, brachytherapy is enabled without concern of exposure dose of normal tissues. Therefore, when the system is commercialized, a great amount of distribution effect may be expected. The X-ray tube system that can be used for medical services such as a dental service includes an X-ray emission module emitting X-rays using a chipped nano-structured material, for example, carbon nanotube. The X-ray emission module is separable from a body in order to replace a cathode portion that is included in the X-ray emission module and is based on the nano-structured material.
    • 本发明涉及应用现有的用于牙科X射线成像系统的碳纳米管X射线管,其可以替代安装在阴极部分中的碳纳米管电子发射源。 根据本发明的用笔形成的X射线管系统由于其厚度薄而能够插入口腔,从而显示需要诊断的口腔内部位置的精确图像。 对于需要适量辐射治疗的口腔癌的治疗,由于辐射可以直接照射到患病部位,所以可以进行近距离放射治疗而不考虑正常组织的暴露剂量。 因此,当系统商业化时,可以预期大量的分配效应。 可用于医疗服务如牙科服务的X射线管系统包括使用切片纳米结构材料(例如碳纳米管)发射X射线的X射线发射模块。 为了更换X射线发射模块中包含的阴极部分并且基于纳米结构材料,X射线发射模块可与主体分离。