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小鼠代謝籠

  • 更新時(shí)間:2024-10-11
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簡(jiǎn)要描述:Y-3101型小鼠代謝籠主要用于對(duì)小鼠、新生大鼠進(jìn)行尿液收集實(shí)驗(yàn)

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玉研儀器深耕動(dòng)物實(shí)驗(yàn)領(lǐng)域14年,深入研究大小鼠代謝籠,精細(xì)加工,專(zhuān)為精確監(jiān)測(cè)與評(píng)估實(shí)驗(yàn)動(dòng)物(如小鼠、大鼠)的代謝活動(dòng)而設(shè)計(jì)。精巧設(shè)計(jì),確保尿液與糞便順利分離,尿液糞便不掛壁,易于清理實(shí)驗(yàn)無(wú)憂,助力揭示疾病機(jī)制,評(píng)估藥物對(duì)代謝的影響,已廣泛應(yīng)用于國(guó)內(nèi)各大科研院校機(jī)構(gòu)。

Y-3101型小鼠代謝籠主要用于對(duì)小鼠、新生大鼠進(jìn)行尿液收集實(shí)驗(yàn)。


 

· 加密型篩網(wǎng),尿糞分離效果好;

· 半封閉設(shè)計(jì),尿液揮發(fā)少;

· 如需高溫高壓消毒,可以選擇:耐高溫的PSU材質(zhì)小鼠代謝籠;

· 如需提高尿液收集質(zhì)量,可選配:冷卻收集器;


主要特點(diǎn):  

· 的體型設(shè)計(jì)保證了糞便和尿液的分離收集,結(jié)果可靠;

· 食槽可以很容易的抽出,填裝食物過(guò)程中不會(huì)驚擾動(dòng)物;

· 籠盒組裝簡(jiǎn)單,所有部件易清洗;

· 籠盒由PC材料組成,非常耐用;

· 代謝籠的支撐:21*21*18cm,外形尺寸:21*21*40cm;

· 如果需要超過(guò)120°C的高溫高壓消毒,建議選擇選配PSU材質(zhì)的Y-3104型代謝籠;


 

小鼠代謝籠  


型號(hào):Y-3101


主要部件  

· 代謝籠支架

· 代謝籠籠體17*22cm

· 尿液收集杯

· 小鼠食槽

· 飲水瓶


 


 

冷卻收集器  

小鼠代謝籠  


圖片為進(jìn)口型:需預(yù)先擱放進(jìn)冰箱進(jìn)行冰凍型;


 

可根據(jù)需求選擇Y-89型尿液收集器:

配合小鼠代謝籠使用;

制冷溫度為8-9°C,可長(zhǎng)時(shí)間工作;
尺寸小巧,擺放靈活,尺寸為14*9*12cm;



41700-033小鼠型,單只小鼠的籠子,老鼠活動(dòng)面積為200cm2,內(nèi)部高度為13cm;

小鼠代謝籠


如需多套小鼠代謝籠,可隔放在飼養(yǎng)籠架子上使用:

大小鼠飼養(yǎng)籠架(隔層為304不銹鋼板)



型號(hào)及規(guī)格:


  RM5220-1,100*35*155cm,四層
 RM5220-2,100*45*180cm,四層
 RM5221-1,120*30*180cm,四層

RM5221-2,120*40*180cm,四層

RM5221-3,120*50*180cm,四層
 RM5222-1,150*40*180cm,四層
 RM5222-2,150*50*180cm,四層
 RM5223-1,180*40*180cm,四層

RM5223-2,180*50*180cm,四層

 

每層間距靈活可調(diào);
 也可根據(jù)客戶需求定做尺寸;



 



 

根據(jù)實(shí)際需求進(jìn)行擺放:  


 

小鼠代謝籠
 


 

Y-3101型小鼠代謝籠的安裝現(xiàn)場(chǎng)
 


 


 

大鼠實(shí)驗(yàn),需選用Y-3102型號(hào)的大鼠代謝籠

PC透明材質(zhì),半封閉設(shè)計(jì),適合用于單只大鼠的尿液收集


 

小鼠代謝籠  



大鼠、小鼠代謝籠相關(guān)文獻(xiàn):
1.Ayd?n T H, Can ? D, Demir ?zkay ü, et al. Effect of subacute agomelatine treatment on painful diabetic neuropathy: involvement of catecholaminergic mechanisms[J]. Fundamental & Clinical Pharmacology, 2016, 30(6): 549-567.
2.Atwa A, Hegazy R, Shaffie N, et al. Protective effects of vasodilatory βeta-blockers carvedilol and nebivolol against glycerol model of rhabdomyolysis-induced acute renal failure in rats[J]. Open access Macedonian journal of medical sciences, 2016, 4(3): 329.
3.Zheleva-Dimitrova D, Simeonova R, Gevrenova R, et al. In vivo toxicity assessment of Clinopodium vulgare L. water extract characterized by UHPLC-HRMS[J]. Food and Chemical Toxicology, 2019, 134: 110841.
4.Veiga A C, Milanez M I O, Ferreira G R, et al. Selective afferent renal denervation mitigates renal and splanchnic sympathetic nerve overactivity and renal function in chronic kidney disease-induced hypertension[J]. Journal of Hypertension, 2020, 38(4): 765-773.
5.Brilli E, Tarantino G. Genotoxicity and subchronic toxicity studies of Lipocet®, a novel mixture of cetylated fatty acids[J]. Journal of Applied Toxicology, 2021, 41(7): 1148-1162.
6.Atwa A, Hegazy R, Shaffie N, et al. Protective effects of vasodilatory βeta-blockers carvedilol and nebivolol against glycerol model of rhabdomyolysis-induced acute renal failure in rats[J]. Open access Macedonian journal of medical sciences, 2016, 4(3): 329.
7.Bier A, Braun T, Khasbab R, et al. A high salt diet modulates the gut microbiota and short chain fatty acids production in a salt-sensitive hypertension rat model[J]. Nutrients, 2018, 10(9): 1154.
8.Feng X Y, Yan J T, Zhang X, et al. Gastrointestinal Non-motor Dysfunction in Parkinson? s Disease Rats with 6-hydroxydopamine 2[J].
9.Dimitrova B, Vitcheva V, Zheleva-Dimitrova D, et al. Antioxidant and neuroprotective effects of caffeoylquinic acids from Geigeria alata[J]. Bulgarian Chem Commun, 2019, 51: 83-89.
10.Garcia M L, Milanez M I O, Nishi E E, et al. Retroperitoneal adipose tissue denervation improves cardiometabolic and autonomic dysfunction in a high fat diet model[J]. Life Sciences, 2021, 283: 119841.
11.Minh T D, Ha T N T, Duy T N, et al. Linh Phu Khang Tue Tinh inhibited prostate proliferation in rats induced benign prostatic hyperplasia by testosterone propionate[J]. Journal of Ethnopharmacology, 2021, 279: 114388.






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