产品详情
  • 产品名称:新版进口小鼠转棒仪

  • 产品型号:47650
  • 产品厂商:UGO
  • 产品价格:0
  • 折扣价格:0
  • 产品文档:
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简单介绍:
新版进口小鼠转棒仪是运动协调方面**筛选的重要方法。根据 N.W Dunham 和 T.S Miya 1957年的论文。新版进口小鼠转棒仪在1960年,Ugo Basile设计了**个RotaRod转棒仪。
详情介绍:

特征

优点

转速可调5-80RPM,每次1RPM

予以小鼠舒适的活动环境

匀速,加速,多次加速模式(新)

可用于研究运动学习机运动功能

可使用USB闪存盘

无需连接电脑即可储存数据

新版软件

新款触摸屏能够设置实验参数、管理实验数据。


数据读取:  液晶显示  数据采集:  52050-07 软件
 转棒开始:  START (蓝色  电源:  universal input 85-264 VAC, 50-60Hz, *大40 W
 转棒停止:  RESET/STOP(红色  工作温度:  10° - 40° C
 设置速度:  功能键  声级:  < 60 dB
 速度重置:  RESET/STOP (红色  打印: 7145微型热敏打印机(需购置)
 转子:  直径3cm转鼓    

物理尺寸

 

净重:

11.0 Kg

尺寸:

46 (w) x 28 (d) x 33 (h) cm

毛重:

Kg 16.0 (approx.)

包装尺寸:

转子

走道宽度

下落高度


66 x 50 x 63 cm

直径3cm

5.7cm

16cm


47650 小鼠转棒仪,包括:
47650 - 320 不锈钢感应槽
47650 - 302 说明书(在USB闪存盘内)
47650 - 010 专用软件包(在USB闪存盘内)
USB电源和电源线

可选:
如果您需要大、小鼠两种模型,您可以选择以下组合装:
47850组合装,包含一台小鼠转棒仪和一台大鼠转棒仪。

方法文献

§        N.W. Dunham & T.S. Miya: “A Note on a Sinple Apparatus for Detecting Neurological Deficit in Rats & Mice“ J. Am. Pharmaceut. Assoc., Scientific Edit., XLVI: No. 3, 1957
 
§       B.J. Jones & D.J. Roberts: “The Quantitative Measurement of Motor Inco-ordination in Naive Mice Using an Accelerating Rotarod“ J. Pharm. Pharmac.: 20: 302-304, 1968
 
使用转棒仪技术的相关文献:
 

§        B.J. Turner et alia: “Overexpression of Survival Motor Neuron Improves Neuromuscular Function and Motor Neuron Survival in Mutant SOD1 Mice” Neurobiol. Of Aging 35 (4): 906-915,2014

§        M. Milanese et alia: “Knocking Down Metabotropic Glutamate Receptor 1 Improves Survival And Disease Progression in the SOD1G93A Mouse Model of Amyotrophic Lateral Sclerosis” Neurobiology of Disease 64: 48-59, 2014

§        J.E. Lorenz: “Oxidant-Induced Activation of cGMP-Dependent Protein Kinase Iα Mediates Neuropathic Pain After Peripheral Nerve Injury” Antioxidants & Redox Signaling Jan. 2014

§        J.N. Justice et alia: “Battery of Behavioral Tests in Mice that Models Age-Associated Changes in Human Motor Function” Age Oct 2013

§        A.S. Hamlin et alia: “Lesions of the Basal Forebrain Cholinergic System in Mice Disrupt Idiothetic Navigation” PLoS ONE 8(1): e53472, 2013

§        T. Rantamäki et alia: “The Impact of Bdnf Gene Deficiency to the Memory Impairment and Brain Pathology of APPswe/PS1dE9 Mouse Model of Alzheimer’s Disease” PLoS ONE 8(7): e68722, 2013

§        T. Murakami et alia: “Vascular Endothelial Growth Factor Electro-Gene Therapy Improves Functional Outcome in a Mouse Model of ALS” Immunology, Endocrine & Metabolic Agents: 13 (2): 107-111, 2013

§        R. Günther et alia: “Clinical Testing and Spinal Cord Removal in a Mouse Model for Amyotrophic Lateral Sclerosis (ALS)” JoVE J. Vis. Exp. (61), e3936, doi:10.3791/3936, 2012http://www.jove.com/video/3936/clinical-testing-spinal-cord-removal-mouse-model-for-amyotrophic
 
§        A.J. Grottick et alia: “Studies to investigate the role of 5-HT 2C Receptors on Cocaine- and Food-Maintained Behavior”: J. Pharmacol. Exper. Therap., 2000
 
§       L.T. Huang et alia: “Pentylenetetrazol-Induced Recurrent Seizures in Rat Pups: Time Course on Spatial Learning and Long…”: Epilepsia2002
 
§       E. Candelario-Jalil et alia: “Wide Therapeutic Time Window for Nimesulide Neuroprotection in a Model of Transient Focal Cerebral Ischemia in the Rat”: Brain Research: 177: 98-108, 2004
 
§       C.D. Heldermon et alia: “CliTherapeutic Efficacy of Bone Marrow Transplant, Intracranial AAV-mediated Gene Therapy, or Both in the Mouse Model of MPS IIIB” Molecular Therapy 15(5): 873-880, 2010  (rocking)

§       C.D. Heldermon et alia: “Development of Sensory, Motor and Behavioral Deficits in the Murine Model of Sanfilippo Syndrome Type B”: PLoS ONE: 8 (e772): 2007 (rocking)



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