-
公开(公告)号:WO2014115924A1
公开(公告)日:2014-07-31
申请号:PCT/KR2013/001451
申请日:2013-02-22
Applicant: 조선대학교산학협력단
Abstract: 본 발명의 광생물 배양 시스템은 내부에 광생물유기체가 주입되어 배양될 수 있도록 상호 결합되어 배양공간이 마련되며, 외측표면에 일일정간격으로 지지리브가 구비된 배양패널본체들과, 상기 배양패널본체들에 의해 형성된 상기 배양공간을 횡방향으로 관통되게 설치되어 유입된 기체를 토출하는 기체공급관과, 상기 배양패널본체들의 내측 벽에 횡방향으로 연장되며 상기 기체공급관을 통해 공급된 기체의 상승기류에 대해 와류를 일으킬 수 있도록 호형으로 형성된 적어도 하나 이상의 와류형성격벽을 포함하는 평판형 광생물배양용기와; 상기 평판형 광생물배양용기의 적어도 일측에 설치되어 광생물유기체의 배양을 위한 광을 조사하는 면광원유닛을 구비한 평판형 광생물반응기 모듈을 포함한다.
Abstract translation: 本发明的光生物培养系统包括:平板型光生物培养容器,其包含彼此耦合的培养板本体,以提供其中可以注射光生物体以培养并具有支撑肋的培养空间 其外表面以预定间隔设置,气体供给管设置成沿水平方向穿过由培养面板体形成的培养空间并排出流入气体,以及至少一个从内部延伸的涡流形成分隔壁 所述培养面板体在水平方向上形成为圆弧状,以便相对于通过所述气体供给管供给的气体的上升电流产生涡流; 以及平面型光生物反应器模块,其设置有设置在所述平板型光生物培养容器的至少一侧上的面光源单元,以照射用于培养所述光生物体的光。
-
公开(公告)号:KR101519113B1
公开(公告)日:2015-05-12
申请号:KR1020130030465
申请日:2013-03-21
Applicant: 조선대학교산학협력단
Abstract: 본 발명의 도광판과 이를 이용한 광생물 반응기는 내부에 배양공간을 가지며 미세조류가 배양될 수 있도록 하는 것으로 소정의 간격으로 설치되는 반응용기들과 상기 각 반응용기들의 배양공간에 설치되어 외부광원으로부터 조사되는 광을 배양공간에 조사하기 위한 도광판을 구비하며, 상기 도광판은 투명한 합성수지재로 이루어진 도광판부재와, 상기 도광판부재의 내부에 레이저빔을 이용하여 광학적변형을 유도함으로써 형성된 복수개의 산란체를 구비한다.
-
公开(公告)号:KR101381951B1
公开(公告)日:2014-04-07
申请号:KR1020130008908
申请日:2013-01-25
Applicant: 조선대학교산학협력단
Abstract: A photobiological culturing system of the present invention comprises: culturing panel main bodies interconnected to each other for forming a culturing space, injecting photobiological organisms, and culturing the photobiological organisms, and including supporting ribs with predetermined intervals on the outer surface; a gas supplying pipe horizontally penetrating the culturing space formed by the culturing panel main bodies, and discharging flowed gas; a flat plate type photobiological culturing container including one or more whirlpool formation barriers extended from an inner walls of the culturing panel main bodies to the horizontal direction; a flat plate type photobioreactor module including a surface light source unit emitting light for culturing the photobiological organisms; a microalgae supplying tank connected to a microalgae injection pipe and storing microalgae; a photobiological storage tank for storing the cultured photobiological organisms; a pH measuring sensor for measuring a pH value of microalgae culture liquid; a dissolved amount measuring sensor for measuring the dissolved amount of oxygen and carbon dioxide; an illuminance measuring sensor for measuring the illuminance of the light emitted to the flat plate type photobioreactor module from the surface light source unit; and a control unit controlling the continuous production of the photobiological organisms based on signals detected from a pump, the illuminance measuring sensor, the pH measuring sensor, and the dissolved amount measuring sensor.
Abstract translation: 本发明的光生物培养体系包括:相互相互连接的培养板主体,形成培养空间,注射光生物,培养光生物,并在外表面包含预定间隔的支撑肋; 水平地穿过培养面板主体形成的培养空间的气体供给管,排出气体; 平板型光生物培养容器,其包括从培养板主体的内壁延伸到水平方向的一个或多个漩涡形成屏障; 平板型光生物反应器模块,其包括发射用于培养所述光生物体的光的表面光源单元; 微藻供应罐连接到微藻注入管并储存微藻; 用于储存培养的光生物体的光生物储存罐; 用于测量微藻培养液的pH值的pH测量传感器; 用于测量氧和二氧化碳的溶解量的溶解量测量传感器; 照度测量传感器,用于测量从所述面光源单元发射到所述平板型光生物反应器模块的光的照度; 以及控制单元,其基于从泵,照度测量传感器,pH测量传感器和溶解量测量传感器检测到的信号来控制光生物体的连续生产。
-
公开(公告)号:KR101241393B1
公开(公告)日:2013-03-11
申请号:KR1020120078051
申请日:2012-07-18
Applicant: 조선대학교산학협력단
Abstract: PURPOSE: An automatic medium supply system for culturing microalgae in a bioreactor is provided to automatically culture the microalgae and to uniformly maintain measurement accuracy. CONSTITUTION: An automatic medium supply system for culturing microalgae comprises: a photobioreactor(110), a medium supply unit(130), a dilution unit(150), a concentration detection unit(170), and a control unit(190). The photobioreactor has a culture panel main body(112) and a gas supply pipe(118). The medium supply unit supplies a medium into the inside of the culture panel main body. The dilution unit receives a culture medium from the culture panel main body and dilutes the culture medium with a dilution solution. [Reference numerals] (121) Gas supply device; (150) Dilution unit; (170) Concentration detection unit; (191) Input unit; (193) Display unit; (195) Memory unit; (197) Control unit
Abstract translation: 目的:提供一种用于在生物反应器中培养微藻的自动培养基供应系统,以自动培养微藻并均匀维持测量精度。 构成:用于培养微藻的自动介质供应系统包括:光生物反应器(110),介质供应单元(130),稀释单元(150),浓度检测单元(170)和控制单元(190)。 光生物反应器具有培养面板主体(112)和气体供给管(118)。 介质供给单元向培养面板主体的内部供给介质。 稀释单元从培养板主体接受培养基,并用稀释溶液稀释培养基。 (附图标记)(121)供气装置; (150)稀释装置; (170)浓度检测单位; (191)输入单元; (193)显示单元; (195)存储单元; (197)控制单元
-
公开(公告)号:KR101050482B1
公开(公告)日:2011-07-20
申请号:KR1020090014301
申请日:2009-02-20
Applicant: 조선대학교산학협력단
Abstract: 본 발명은 임플란트 시술 보조 시스템에 관한 것으로, 보다 구체적으로는 임플란트 시술과정에서 시술자의 손떨림을 보완하고 임플란트의 식립 깊이, 위치, 각도를 손쉽게 조절할 수 있으며, 시술하는 동안 환자의 치아 좌표와 임플란트를 위한 핸드피스의 좌표를 시각화하여 시술 과정을 모니터링할 수 있는 임플란트 시술 보조 시스템에 관한 것이다.
임플란트, 핸드피스, 6축 힘/토크센서, 원격운동중심, 수술 네비게이션-
公开(公告)号:KR1020100095162A
公开(公告)日:2010-08-30
申请号:KR1020090014301
申请日:2009-02-20
Applicant: 조선대학교산학협력단
CPC classification number: A61C8/0089 , A61B34/20 , A61B34/35 , A61B34/75 , A61B90/37 , A61B2034/2055 , A61B2034/2065 , A61B2034/305 , A61B2090/373 , A61B2090/3983 , A61C1/084
Abstract: PURPOSE: An implant operation auxiliary system is provided to perform accurate implant surgery regardless of motion and hand vibration of a patient. CONSTITUTION: An implant operation auxiliary system(100) comprises: a driving arm(200); manipulator(400) which is connected with the driving arm; and hand piece(300) which is mounted at the manipulator. The manipulator comprises: an angle adjusting unit which moves the hand piece to a surgery area, and a depth adjusting unit for controlling the drilling depth by the hand piece. The driving arm comprises a plurality of links.
Abstract translation: 目的:提供一种植入手术辅助系统来执行精确的植入手术,而不管患者的运动和手动振动。 构成:植入操作辅助系统(100)包括:驱动臂(200); 操纵器(400),其与所述驱动臂连接; 以及安装在操纵器上的手持件(300)。 所述机械手包括:将所述手持件移动到手术区域的角度调整单元,以及用于通过所述手持件来控制所述钻孔深度的深度调节单元。 驱动臂包括多个连杆。
-
公开(公告)号:KR101404223B1
公开(公告)日:2014-06-05
申请号:KR1020130166106
申请日:2013-12-27
Applicant: 조선대학교산학협력단
Abstract: The present invention relates to a photobiological culturing system comprising; a culture panel main body which has a culture space so that microalgae is injected to the inside and is cultured; a photobiological reactor which is installed on the lower side of the culture panel main body to pass through the culture space in a transverse direction and has a gas supply pipe which discharges the injected gas into the culture space; a medium supply unit which supplies a medium into the culture panel main body of the photobiological reactor; and a gas supply unit which supplies gas through the gas supply pipe. The culture panel main body is installed on a structure such as a building installed outside, a noise prevention wall, a park formative structure, a wall, a power plant, and a steel mill. According to the photobiological culturing system, the structure installed outside is used. Therefore, the restriction regarding production site retention can be relieved and the availability of the structure can be increased.
Abstract translation: 本发明涉及一种光生物培养系统,包括: 培养皿主体,其具有将微藻注射到内部并进行培养的培养空间; 光生物反应器,其安装在培养皿主体的下侧,横向通过培养空间,并具有将注入的气体排放到培养空间内的气体供给管; 介质供应单元,其将介质供应到所述光生物反应器的培养皿主体中; 以及通过气体供给管供给气体的气体供给单元。 培养面板主体安装在安装在外部的建筑物,防噪墙,园区结构,墙壁,发电厂和钢厂等结构上。 根据光生物培养系统,使用外部安装的结构。 因此,可以减轻对生产现场保留的限制,并且可以提高结构的可用性。
-
公开(公告)号:KR1020140116289A
公开(公告)日:2014-10-02
申请号:KR1020130030465
申请日:2013-03-21
Applicant: 조선대학교산학협력단
Abstract: A light guide plate and a photobioreactor utilizing the same of the present invention have a cultivating room inside, and enable the cultivation of microalgae. The light guide plate is equipped for radiating light emitted from the outside light source to the cultivating room, by being installed in reaction containers installed at certain intervals and a cultivating room of each reaction container. The light guide plate is equipped with a light guide plate member composed of transparent synthetic resin material and a plurality of light-scattering layer bodies formed by inducing optical transformation using a laser beam inside the light guide plate member.
Abstract translation: 使用本发明的导光板和光生物反应器在内部具有培养室,能够培养微藻。 该导光板配置为通过安装在以一定间隔安装的反应容器和每个反应容器的培养室中,将从外部光源发射的光照射到培养室。 导光板配备有由透明合成树脂材料构成的导光板构件和通过使用激光束在导光板构件内部进行光学变换而形成的多个光散射层体。
-
公开(公告)号:KR100636298B1
公开(公告)日:2006-10-19
申请号:KR1020050070319
申请日:2005-08-01
Applicant: 조선대학교산학협력단
IPC: H01L21/027 , H01L21/68
-
公开(公告)号:KR1020150115093A
公开(公告)日:2015-10-14
申请号:KR1020140039472
申请日:2014-04-02
Applicant: 조선대학교산학협력단
Abstract: 본발명은고강도집속초음파를이용한하지심부정맥혈전증치료장치에관한것으로서, 액상의매질이충진된용기본체와, 용기본체에장착되어인가된구동신호에따라초음파를매질을통해출사하는초음파트랜스듀서와, 초음파트랜스듀서의구동을제어하는구동유니트를구비한다. 이러한고강도집속초음파를이용한하지심부정맥혈전증치료장치에의하면, 증류수와같은액상의매질을통해초음파를집속시켜하지심부정맥혈전부위로인가할수 있어초음파의에너지감쇠를억제시켜혈전용해효율을향상시킬수 있는장점을제공한다.
Abstract translation: 本发明涉及使用高强度聚焦超声波的下肢深静脉血栓形成治疗装置。 治疗装置包括:充满液体介质的容器主体; 安装在所述容器主体中的超声波换能器,并根据所施加的驱动信号通过所述介质发射超声波; 以及用于控制超声波换能器的操作的驱动单元。 根据治疗装置,超声波通过蒸馏水等液体介质聚焦,并施加到下肢深静脉血栓区域以抑制超声波的能量减少,从而提高溶栓效率。
-
-
-
-
-
-
-
-
-