Ugo Basile抓力计设计用于测量大、小鼠前肢抓力,评估药物、毒素、肌肉松弛剂、疾病、衰老及神经损伤等对肌肉力量的影响。
分辨率:0.1g
测力范围:1500g以内
净重: 4.8Kg
毛重: 6.5Kg
包装:46x38x27cm特征 | 优点 |
力率控制工具(软件及LCD屏显示) | 每次测试作用力一致 |
自动峰值识别 | 自动记录每次测试力数据 |
包含抓杆,抓网为选配附件 | 可满足大、小鼠各种抓力实验设计 |
每次测试前,设备自动凋零 | 无需校准,且保证精度 |
PAPERS MENTIONING UB GRIP STRENGTH METER - MOUSE
§G.J. Huang et alia: “Ectopic Cerebellar Cell Migration Causes Maldevelopment of Purkinje Cells and Abnormal Motor Behaviour inCxcr4Null Mice”. PLoS ONE 9 (2): e86471,2014(Mouse)
§R.Barone et alia: “Endurance Exercise and Conjugated Linoleic Acid (CLA) Supplementation Up-Regulate CYP17A1 and Stimulate Testostero-ne Biosynthesis”PLoS ONE8 (11): e79686,2013(Mouse)
§N. Lange et alia: “Behavioural and Pharmacological Examinations in a Transgenic Mouse Model of 2 early-onset torsion dystonia”Pharmacology, Biochemistry and Behavior97 (4): 647–655,2011(Mouse)
§T.J. Kornecook et alia: “Isoform-Specific Effects of Apolipoprotein E on Cognitive Performance in Targeted-Replacement Mice Overexpressing Human APP”Genes, Brain and Behavior9: 182-192,2010(Mouse)
§D. Carbajal et alia: “D-004, a Lipid Extract From Royal Palm Fruit, Exhibits Antidepressant Effects in the Forced Swim Test and the Tail Suspension Test in Mice”Pharmacology, Biochemistry and Behavior92: 465-468,2009(Mouse)
§D. Carbajal et alia: “D-004, a Lipid Extract From Royal Palm Fruit, Exhibits Antidepressant Effects in the Forced Swim Test and the Tail Suspension Test in Mice”Pharmacology, Biochemistry and Behavior92: 465-468,2009(Mouse)
§D. Lafont et alia: “A Novel Role for Receptor Like Protein Tyrosine Phosphatase Zeta in Modulation of Sensorimotor Responses to Noxious Stimuli: Evidences from Knockout Mice Studies”Behav. Brain Res. 201: 29-40,2009(Mouse)
PAPERS MENTIONING UB GRIP STRENGTH METER - RAT
§M. Savic et alia:“Behavioural Characterization of Four EndemicStachysTaxa”Phytother. Res.,2010(Rat)
§A. Coluccia et alia: “Developmental Omega-3 Supplementation Improves Motor Skills in Juvenile-Adult Rats”Int. J. Devl Neuroscience27: 599-605, 2009(Rat)
§A. Coluccia et alia: “Late Embryonic Exposure to All-Trans Retinoic Acid Induces a Pattern of Motor”NeuroToxicology30: 1120–1126,2009(Rat)
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