当前查询到48条专利与查询词 "Chen Chunying"相关,搜索用时0.3750082秒!排序方式:
发明专利:26实用新型: 20外观设计: 2
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申请号:201911232234.8 公开号:CN110968604A 主分类号:G06F16/2455
摘要:【中文】本发明公开了一种自动检索互联网经营企业违规经营的方法,整体步骤如下:结合监管内容进行业务建模,按照业务建模在互联网中进行数据采集,数据采集后进行结构化存储,结构化储存的数据通过规则处理的规则匹配和处理后将清洗后的数据输入到分析判别中,分析判断最终将互联网经营企业中违规经营的公司名称、网站域名、行政区划、违法事实、法律依据及证据内容进行输出,等待动作处理。本发明通过自动检索判定互联网经营企业的违规行为,不仅检索效率高,而且发现违规行为快、判定违规行为简单,可广泛应用于检察机关或行政执法单位对互联网经营企业的监管领域。 【EN】The invention discloses a method for automatically retrieving illegal operation of an internet operation enterprise, which comprises the following steps of: and performing business modeling by combining supervision content, performing data acquisition in the Internet according to the business modeling, performing structured storage after the data acquisition, inputting the cleaned data into analysis and judgment after the structured storage data is matched and processed by rules of rule processing, analyzing and judging, and finally outputting company names, website domain names, administrative divisions, illegal facts, legal bases and evidence contents of illegal operation in the Internet operation enterprises to wait for action processing. The method and the device determine the illegal action of the internet operating enterprise through automatic retrieval, not only have high retrieval efficiency, but also find the illegal action quickly and determine the illegal action simply, and can be widely applied to the supervision field of a detection authority or a administrative law enforcement unit on the internet operating enterprise.
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申请号:201911355148.6 公开号:CN110960671A 主分类号:A61K38/17
摘要:【中文】本发明公开了Elabela多肽在制备预防和/或治疗与慢性肾损伤相关的疾病的药物或功能性食品中的用途及药物,所述与慢性肾损伤相关的疾病包括:(ⅰ)高血压引起的慢性肾功能不全;或者(ⅱ)慢性肾功能不全合并高血压。本发明涉及的Elabela多肽降压平稳,同时可有效缓解脱氧皮质酮诱导的SD大鼠的肾小球病理损伤、降低尿微量白蛋白的排出、缓解肾脏纤维化的发展及降低肾脏组织中炎症因子的表达,用于治疗慢性肾损伤具有显著的作用;同时Elabela多肽为人体自身合成的内源性激素,在肾脏组织中表达,相比现有治疗慢性肾损伤的药物毒副作用更小。 【EN】The invention discloses an application of Elabela polypeptide in preparing a medicament or functional food for preventing and/or treating diseases related to chronic kidney injury, and a medicament, wherein the diseases related to chronic kidney injury comprise: chronic renal insufficiency due to hypertension; or (ii) chronic renal insufficiency with hypertension. The Elabela polypeptide has stable blood pressure reduction, can effectively relieve the glomerular pathological injury of SD rats induced by deoxycorticosterone, reduce the discharge of microalbuminuria, relieve the development of kidney fibrosis and reduce the expression of inflammatory factors in kidney tissues, and has obvious effect on treating chronic kidney injury; meanwhile, the Elabela polypeptide is an endogenous hormone synthesized by a human body, is expressed in kidney tissues, and has smaller toxic and side effects compared with the existing medicament for treating chronic kidney injury.
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申请号:201911103907.X 公开号:CN110839574A 主分类号:A01K61/59
摘要:【中文】本发明公开了一种用于南美白对虾养殖的低盐度循环水营养盐平衡方法,该营养盐平衡方法是通过调配主要离子浓度实现的。该水体的的主要离子浓度为:钙离子0.2‑0.4g/L,镁离子0.6‑1.5g/L,钾离子0.07‑0.15g/L,钠离子3‑5g/L,氯离子2‑5g/L,硫酸根离子0.5‑1g/L,碳酸根离子0.02‑0.04g/L,碳酸氢根离子0.2‑0.5g/L,溴离子0.02‑0.04g/L,硼酸根离子0.05‑0.1g/L,钙离子与镁离子比值为1:3‑5。本发明的低盐度循环水营养盐平衡方法,用于养殖南美白对虾养殖,对虾产量达到6‑7kg/m3,对虾成活率高,生长快,有效拓宽了南美白对虾的养殖范围,对于南美白对虾养殖业的发展起到较大促进作用。 【EN】The invention discloses a low-salinity circulating water nutrient salt balancing method for penaeus vannamei boone cultivation, which is realized by adjusting the concentration of main ions. The main ion concentrations of the water body are as follows: 0.2-0.4g/L of calcium ions, 0.6-1.5g/L of magnesium ions, 0.07-0.15g/L of potassium ions, 3-5g/L of sodium ions, 2-5g/L of chloride ions, 0.5-1g/L of sulfate ions, 0.02-0.04g/L of carbonate ions, 0.2-0.5g/L of bicarbonate ions, 0.02-0.04g/L of bromide ions, 0.05-0.1g/L of borate ions, the ratio of calcium ions to magnesium ions is 1: 3-5. The low-salinity circulating water nutrient salt balancing method is used for culturing the penaeus vannamei boone, and the yield of the penaeus vannamei boone reaches 6-7kg/m3The method has the advantages of high survival rate of the penaeus vannamei boone, quick growth, effective widening of the breeding range of the penaeus vannamei boone and great promotion effect on the development of the breeding industry of the penaeus vannamei boone.
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申请号:201911412043.X 公开号:CN111160792A 主分类号:G06Q10/06
申请人:【中文】山东理工职业学院【EN】SHANDONG POLYTECHNIC College 申请日:2019.12.31 公开日:2020.05.15
摘要:【中文】本发明公开了一种以企业为核心构建经济管理类专业综合实验系统,属于实验系统技术领域,该系统包括财务管理模块、生产计划ERP模块和人力资源管理模块,所述财务管理模块包括总账管理、工资核算、固定资产核算、存货核算、销售核算和成本核算,所述生产计划ERP模块包括基础建模模块、计划管理模块和库存管理模块。该以企业为核心构建经济管理类专业综合实验系统,本专利采用财务管理模块、生产计划ERP模块和人力资源管理模块,该专利能很好地模拟企业产品全生命周期的管理过程,帮助学生了解企业管理决策的全貌,有助于培养学生的综合管理素质,提高学生分析、解决问题的能力。 【EN】The invention discloses a professional comprehensive experiment system for constructing economic management by taking an enterprise as a core, belonging to the technical field of experiment systems. This use enterprise to establish economic management class specialty comprehensive experiment system as the core, financial management module, production plan ERP module and manpower resource management module are adopted to this patent, and this patent can simulate enterprise product life cycle's management process well, helps the student to know the overall appearance of enterprise management decision-making, helps training student's comprehensive management quality, improves the ability that student analyzed, solved the problem.
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申请号:201911325842.3 公开号:CN110876770A 主分类号:A61K36/752
申请人:【中文】河南省正骨研究院【EN】Henan Province Institute of Bonesetting 申请日:2019.12.20 公开日:2020.03.13
摘要:【中文】本发明公开了一种治疗膏药过敏的中药喷剂及制备方法。喷剂由下列按重量百分比的原料组成:新鲜山楂50%~70%、青梅20%~30%、陈皮10%~20%;辅料成分及用量,按其占所制药液总体积百分比为:甘油5%~10%、水溶性氮酮0.5%~1.5%。其制备方法为:称取处理好的新鲜山楂、青梅、陈皮,用30%~40%乙醇溶液浸泡数小时,分取浸提液并减压浓缩至无醇味;浓缩液加注于大孔树脂柱,水洗脱除杂,收集10%乙醇洗脱液,浓缩至一定体积,过滤后加入甘油、水溶性氮酮,搅拌均匀。药效学试验证明,该发明药物具有显著的抗炎、抗迟发性过敏作用,对膏药过敏有确切的治疗作用。 【EN】The invention discloses a traditional Chinese medicine spray for treating plaster allergy and a preparation method thereof. The spray agent is composed of the following raw materials by weight percent: 50-70% of fresh hawthorn, 20-30% of green plum and 10-20% of dried orange peel; the auxiliary materials comprise the following components in percentage by volume: 5 to 10 percent of glycerin and 0.5 to 1.5 percent of water-soluble azone. The preparation method comprises the following steps: weighing the treated fresh hawthorn, green plum and dried orange peel, soaking the fresh hawthorn, green plum and dried orange peel in 30-40% ethanol solution for several hours, and collecting the leaching liquor and concentrating the leaching liquor under reduced pressure until no alcohol smell exists; injecting the concentrated solution into a macroporous resin column, eluting with water to remove impurities, collecting 10% ethanol eluate, concentrating to a certain volume, filtering, adding glycerol and water-soluble azone, and stirring. Pharmacodynamic tests prove that the medicament has obvious anti-inflammatory and anti-delayed allergy effects and has exact treatment effect on plaster allergy.
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申请号:201911324186.5 公开号:CN111008610A 主分类号:G06K9/00
申请人:【中文】哈尔滨工业大学【EN】HARBIN INSTITUTE OF TECHNOLOGY 申请日:2019.12.16 公开日:2020.04.14
摘要:【中文】本发明公开了一种信息相关脑电位诱发实验方法,包括:步骤1,使用含有信息的刺激作为偏差,使用听觉材料和视觉材料分别进行了听觉Informational‑Oddball实验和视觉Informational‑Oddball实验。步骤2,将EEG信号分离成相互独立的信号,去除眼电、肌电等伪迹信号后,将留下的信号还原得到干净的EEG成分。步骤3,对EEG数据进行处理后,得到两种类型的诱发电位,使用配对T检验来检验两种诱发电位的差异,若差异显著,则说明,在有信息加工阶段,相关脑区确实发生了电位变化,从而证明IRP的存在。步骤4,用目标刺激的诱发电位减去偏差刺激的诱发电位,提取出IRP。本发明的有点在于:提出了信息相关脑电位和诱发实验范式,验证了实验的准确性,扩展了传统ERP。 【EN】The invention discloses an information-related brain potential induction experimental method, which comprises the following steps: step 1, using information-containing stimuli as deviations, auditory information-odd ball experiments and visual information-odd ball experiments were performed using auditory material and visual material, respectively. And 2, separating the EEG signal into mutually independent signals, removing artifact signals such as electrooculogram signals, myoelectricity signals and the like, and restoring the left signals to obtain a clean EEG component. And 3, processing the EEG data to obtain two types of evoked potentials, and using a paired T test to test the difference of the two types of evoked potentials, wherein if the difference is obvious, the potential change of the related brain area is proved in the information processing stage, so that the existence of IRP is proved. And 4, subtracting the evoked potential of the deviation stimulation from the evoked potential of the target stimulation to extract the IRP. The invention has the advantages that: the brain potential and induction experiment paradigm related to the information is provided, the accuracy of the experiment is verified, and the traditional ERP is expanded.
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申请号:201911134519.8 公开号:CN111053168A 主分类号:A23L2/04
摘要:【中文】本发明公开了一种联产青梅原汁和无盐梅坯的青梅加工方法,包括以下步骤:(1)采集青梅,分级后进行冷冻处理至青梅果内水分完全结冰;(2)将完全结冰的青梅进行逐级解冻至微冻状态,然后清洗;(3)将清洗后的青梅进行风干并使其完全解冻;(4)在完全解冻的青梅表面刺孔,并收集刺孔过程中漏出的汁液;(5)将刺孔后的青梅进行榨汁,收集压榨出的汁液,然后合并步骤(4)中的汁液,经离心、灭菌和灌装得到青梅原汁;(6)将榨汁后的梅果进行干燥处理,得无盐梅坯。该方法能充分利用青梅资源,能同时获得青梅原汁和无盐梅坯,而且不需要添加食盐或蔗糖腌制青梅,环境友好,并能显著缩短梅坯生产周期。 【EN】The invention discloses a green plum processing method for co-producing green plum raw juice and salt-free plum blank, which comprises the following steps: (1) collecting green plums, grading, and freezing until the water in the green plum fruits is completely frozen; (2) unfreezing the completely frozen green plums step by step to a slightly frozen state, and then cleaning; (3) drying the cleaned green plums by air and completely thawing the green plums; (4) pricking holes on the surface of the completely unfrozen green plums, and collecting juice leaked in the pricking hole process; (5) squeezing the punctured green plums, collecting squeezed juice, then combining the juices in the step (4), centrifuging, sterilizing and filling to obtain green plum raw juice; (6) drying the squeezed plum to obtain salt-free plum blank. The method can fully utilize green plum resources, can obtain green plum juice and salt-free green plum blank at the same time, does not need to add salt or sucrose to pickle the green plum, is environment-friendly, and can obviously shorten the production period of the green plum blank.
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申请号:201911284579.8 公开号:CN110965475A 主分类号:E01D21/00
摘要:【中文】本发明涉及桥梁架设工程领域,具体公开了一种跨中带主横梁的钢框架梁节段安装方法及一种钢框架梁,包括:将钢框架梁划分为前主横梁、后主横梁、带小纵梁的跨中主横梁;将跨中主横梁分段制造并与该节段对应小纵梁相连,形成多个单元件;吊装前、后横梁至安装现场立柱柱顶;吊装单元件至安装位置;将单元件上小纵梁与前、后主横梁连接;将各单元件之间连接成一整体。本发明安装时,先安装前后两根主横梁于立柱上,利用吊装设备对单元件分块吊装,从而消除跨中临时支撑结构,简化了跨中带主横梁钢框架梁的安装工序,降低了安装成本及安装难度,减轻了劳动强度,提高了施工效率。 【EN】The invention relates to the field of bridge erection engineering, and particularly discloses a method for installing a steel frame beam segment with a main cross beam in a span and a steel frame beam, which comprise the following steps: dividing a steel frame beam into a front main cross beam, a rear main cross beam and a midspan main cross beam with small longitudinal beams; manufacturing a midspan main cross beam in a segmented manner and connecting the midspan main cross beam with the corresponding small longitudinal beam of the segment to form a plurality of unit pieces; hoisting the front and rear cross beams to the top of the upright post on the installation site; hoisting the unit piece to a mounting position; connecting the upper small longitudinal beam of the single element with the front main cross beam and the rear main cross beam; the units are connected into a whole. When the invention is installed, the front main beam and the rear main beam are installed on the upright column, and the hoisting equipment is used for hoisting the unit element in blocks, thereby eliminating a midspan temporary support structure, simplifying the installation procedure of a midspan main beam steel frame beam, reducing the installation cost and the installation difficulty, lightening the labor intensity and improving the construction efficiency.
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申请号:201911300816.5 公开号:CN110920806A 主分类号:B63B21/00
摘要:【中文】本发明涉及船舶定位技术领域,具体公开了一种深水大落差V形河谷条件下的船舶定位系统包括:定位船系统、运输船岸边锚固系统;定位船系统包括:定位船、定位船岸边卷扬系统、定位船绞锚系统;运输船岸边锚固系统包括:设置于运输船船头的运输船卷扬机、设置于岸边的岸锚。本发明还公开采用该系统对运输船进行定位的具体方法,通过本发明提供的技术方案能够解决现有技术中运输船船舶在深水河谷条件下采用常规定位方法抛锚起锚时间长、工作量大的难题,能够满足运输船在不同位置定位的要求,并且在非工作期间,定位船可以移动至航道外侧,从而降低对航道的干扰。 【EN】The invention relates to the technical field of ship positioning, and particularly discloses a ship positioning system under the condition of a deep water large-fall V-shaped valley, which comprises the following components: a positioning ship system and a transport ship shore side anchoring system; the positioning boat system includes: the system comprises a positioning ship, a positioning ship shore hoisting system and a positioning ship hoisting anchor system; the carrier shore anchoring system comprises: the device comprises a transport ship winch arranged at the bow of the transport ship and a shore anchor arranged at the shore. The invention also discloses a specific method for positioning the transport ship by adopting the system, and the technical scheme provided by the invention can solve the problems of long anchoring time and large workload of the transport ship in the prior art when the transport ship adopts a conventional positioning method under the condition of a deep water valley, can meet the requirements of positioning the transport ship at different positions, and can reduce the interference on the channel because the positioning ship can move to the outer side of the channel during the non-working period.
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申请号:201911235889.0 公开号:CN111192357A 主分类号:G06T17/00
摘要:【中文】本说明书提供一种微尺度颗粒物中元素三维成像的方法和系统,方法包括:在各个照射角度,采用第一波长的X射线照射微尺度颗粒物而形成第一特征图像,以及采用第二波长的X射线照射微尺度颗粒物而形成第二特征图像;比较同一照射角度获取的第一特征图像和第二特征图像,获得灰度差异图像;基于各个照射角度对应的灰度差异图像,采用三维重构技术获得目标元素的三维图像;其中:第一波长的X射线的能量大于或等于目标元素的吸收边处能量,所述第二波长的X射线的能量为所述目标元素的吸收边前能量;所述第一波长的X射线和所述第二波长的X射线为软X射线、中能X射线或者硬X射线。 【EN】The present specification provides a method and system for three-dimensional imaging of elements in micro-scale particulate matter, the method comprising: at each irradiation angle, irradiating the micro-scale particles with X-rays with a first wavelength to form a first characteristic image, and irradiating the micro-scale particles with X-rays with a second wavelength to form a second characteristic image; comparing the first characteristic image and the second characteristic image acquired at the same illumination angle to acquire a gray difference image; based on the gray difference image corresponding to each irradiation angle, a three-dimensional image of the target element is obtained by adopting a three-dimensional reconstruction technology; wherein: the energy of the X-ray of the first wavelength is larger than or equal to the energy at the absorption edge of the target element, and the energy of the X-ray of the second wavelength is the energy before the absorption edge of the target element; the first wavelength X-rays and the second wavelength X-rays are soft X-rays, intermediate energy X-rays or hard X-rays.
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