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血液檢測風疹/麻疹病毒診斷試劑

血液檢測風疹/麻疹病毒診斷試劑

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血液檢測風疹/麻疹病毒診斷試劑:風疹(rubella)是由風疹病毒(RV)引起的急性呼吸道傳染病,包括先天性感染和后天獲得性感染。廣州健侖生物科技有限公司提供各種試劑盒。

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血液檢測風疹/麻疹病毒診斷試劑

廣州健侖生物科技有限公司

 

廣州健侖長期供應各種ELISA試劑盒,主要代理進口和國產品牌的流行病毒ELISA檢測試劑盒。例如:甲乙型流感病毒酶聯免疫法檢測試劑盒、黃熱病毒酶聯免疫法檢測試劑盒、諾如病毒酶聯免疫法檢測試劑盒、登革病毒酶聯免疫法檢測試劑盒、基孔肯雅病毒酶聯免疫法檢測試劑盒、結核桿菌酶聯免疫法病毒檢測試劑盒、孢疹病酶聯免疫法檢測試劑盒、西尼羅河病毒酶聯免疫法檢測試劑盒、呼吸道合胞病毒酶聯免疫法檢測試劑盒、冠狀病毒酶聯免疫法檢測試劑盒等等。蟲媒體染病系列、呼吸道病原體系列、發熱伴出疹系列、消化道及食源感染系列。

檢驗原理

血液檢測風疹/麻疹病毒診斷試劑

用抗原包被微量板孔,制成固相載體。加患者血清到板孔中,其所含的抗體特異性地與固相載體中現存抗原結合,形成免疫復合物。除去多余物質后,加入結合了堿性磷酸酶的IgGIgAIgM抗體,使之與上述免疫復合物反應。洗板,除去多余的結合物,加入底物(對硝基苯磷酸鹽)。其與酶結合的免疫復合物反應,產生有顏色產物,顏色強度與特異性抗體含量成正比。

產品規格:96T/盒

存儲條件:4-8

我司同時還提供美國FOCUS、西班牙DIA美國trinity試劑盒:

麻疹風疹甲流 乙流單皰疹1型單皰疹2型、百日咳百日咳毒素、腮腺炎、帶狀皰疹、單純皰疹、HSV1型特異性巨細胞-特異風疹-特異弓形蟲-特異、棘球屬、嗜肺軍團菌、破傷風、蜱傳腦炎、幽門螺旋桿菌、白色念珠菌、博氏疏螺旋體、細小病毒、鉤端螺旋體、腺病毒、Q熱柯克斯體、煙曲霉菌、埃可病毒、EB病毒、衣原體、耶爾森菌、空腸彎曲桿菌、炭疽桿菌、白喉、腸道病毒、柯薩奇病毒、肺炎衣原體、沙眼衣原體、土拉弗朗西斯菌、漢坦病毒、類風濕因子、呼吸道合胞病毒、單純皰疹病毒質控品、巨細胞質控品、弓形蟲質控品、風疹麻疹質控品、等試劑盒以

我司還提供其它進口或國產試劑盒:登革熱、瘧疾、流感、A鏈球菌、合胞病毒、腮病毒、乙腦、寨卡、黃熱病、基孔肯雅熱、克錐蟲病、違禁品濫用、肺炎球菌、軍團菌、化妝品檢測、食品安全檢測等試劑盒以及日本生研細菌分型診斷血清、德國SiFin診斷血清、丹麥SSI診斷血清等產品。

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【公司名稱】 廣州健侖生物科技有限公司
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【公司地址】 廣州清華科技園創新基地番禺石樓鎮創啟路63號二期2幢101-103

 

在小腦的分葉中,為了簡化命名,拉塞爾提出羅馬字的命名 系統,他將小腦蚓部從前到后按Ⅰ~Ⅹ次序分成10個小葉;對小葉的 半球部分,則在代表各小葉的羅馬字前冠以細菌,例如細菌Ⅵ即表示 小腦第Ⅵ小葉的半球部分。從發生學的觀點來看,絨球小結葉出現zui早,是小腦zui古老的部分, 被稱為古小腦,它主要接受來自前庭核和前庭神經的傳入纖維,調節 軀干肌肉的活動,在維持肌緊張、身體平衡和姿勢等方面起重要作用 ;前、后葉的蚓部及后葉蚓部的后外側部出現得稍晚,稱為舊小腦, 其主要功能與頭部和身體的本體感受和外感受的傳入信息有關,有調 節肌緊張的作用;小腦半球的大部分和部分蚓部發展得zui晚,稱為新 小腦,它在人類zui為發達,主要接受經腦橋接轉的來自大腦皮質的纖 維,參與由大腦皮層發起的隨意運動的調節。在位相性的活動和肌肉 的協調運動過程中起重要作用。小腦的表面被覆著一層灰質,叫做小腦皮層;皮層的下方是小腦髓質 ,由出入小腦的神經纖維和4對小腦深部核團組成。小腦皮層分為3層 ,從表及里分別為分子層、浦肯野氏細胞層和顆粒細胞層,皮層里含 有星狀細胞、籃狀細胞、浦肯野氏細胞、細菌爾基氏細胞和顆粒細胞 等5種神經元。在這些細胞中只有浦肯野氏細胞發出軸突離開小腦皮層 ,成為小腦皮層中*的傳出神經元;其他4種均為中間神經元,它們 的神經末梢都分布在小腦皮層之內。所有小腦葉片都有同樣的神經組 織結構(圖2)。在分子層內,星狀細胞和籃狀細胞(亦稱內星狀細胞 )的軸突走向均與小腦葉片的長軸相垂直。每個星狀細胞都有抑制性 的軸樹突觸與數個浦肯野氏細胞的樹突相接觸,每個籃狀細胞都有抑 制性的軸體突觸通過它的筐籃狀神經末梢與數個浦肯野氏細胞的胞體 相接觸;在顆粒層內,每個顆粒細胞有一個胞體和4~6支短的樹突。 顆粒細胞的軸突向上伸至分子層,在那里呈T字形分成兩支,以相反的 方向沿著葉片的長軸走行,被稱為平行纖維,其長度可達5~7毫米。 平行纖維與浦肯野氏細胞、星狀細胞、籃狀細胞和細菌爾基氏細胞的 樹突形成興奮性的軸樹突觸。
In the lobes of the cerebellum, in order to simplify the nomenclature, Russell proposed the Roman naming system. He divided the cerebellar vermis into 10 leaflets from Ⅰ to Ⅹ in order from anterior to posterior; on the hemispherical part of the leaflets, The Roman words preceded by bacteria, such as bacteria VI, indicate the hemispherical portion of the VI leaflets of the cerebellum. From the generative point of view, the pompano leaves appear the earliest, is the oldest part of the cerebellum, known as the ancient cerebellum, it mainly receives from the vestibular nucleus and vestibular nerve afferent fibers, regulating the activities of the trunk muscles, maintaining Muscle tension, body balance and posture plays an important role; anterior and posterior lobes vermis and posterolateral vermis appeared later in the lateral part, called the old cerebellum, its main function and the head and body ontology And outside the feelings of the incoming information on the regulation of muscle tension; most of the cerebellar hemispheres and part of the most developed earthworms, called the new cerebellum, which is the most developed in humans, mainly to accept the pylorus transfer from the brain Cortical fibers, involved in the regulation of voluntary motor movement initiated by the cerebral cortex. Plays an important role in the phase of the activities and the coordinated movement of muscles. The surface of the cerebellum is covered with a layer of gray matter, called the cerebellar cortex; below the cortex is the cerebellar medulla, which consists of nerve fibers exiting the cerebellum and 4 deep nuclei of the cerebellum. The cerebellar cortex is divided into three layers, from the table and in the molecular layer, Purkinje cell layer and granular cell layer, the cortex contains slate cells, basal cells, Purkinje cells, bacteria Erqi's cells and particles Cells and other 5 kinds of neurons. In these cells, only Purkinje cells emitted axons out of the cerebellar cortex and became the only efferent neurons in the cerebellar cortex. The other four were all interneurons whose nerve endings were distributed within the cerebellar cortex. All cerebellar lobes have the same neural structure (Figure 2). Within the molecular layer, the axons of slate cells and basal cells, also known as inner slate cells, are perpendicular to the long axis of the cerebellar lamina. Each slate cell has an inhibitory axonal dendrites in contact with the dendrites of several Purkinje cells, each with inhibitory axonal synapses passing through its basket nerve endings In contact with the cell bodies of several Purkinje cells; within the granular layer, each granulosa cell has a cell body and 4 to 6 short dendrites. The axons of granulosa cells extend up to the molecular layer, where they divide into two T-shaped branches, running in the opposite direction along the long axis of the blade, called parallel fibers, with lengths up to 5 to 7 mm. Parallel fibers form excitatory axonal synapses with Purkinje cells, astrocytes, basal cells and dendrites of bacterial Erkex cells.

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