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腫瘤測量儀

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上海玉研科學儀器有限公司是一家專業為生物、醫學、藥物研發等科研領域提供科學儀器和技術服務的公司。我們著力引進和開發應用成熟、性能先進的實驗設備和實驗方法,為科學研究和實驗室建設提供有效、合理的解決方案。

玉研儀器專注于生理、藥理、毒理等動物實驗和研究的相關領域,為客戶提供動物麻醉與輔助呼吸、生理信號檢測與記錄、動物給藥與暴露染毒、呼吸功能測量與肺功能研究、代謝與缺血缺氧研究、疼痛與炎癥研究、小動物行為學研究、神經科學研究、小動物活體成像、生化檢驗、動物手術與輔助設備、動物手術器械等多方面的科學儀器產品和定制化服務

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氣體麻醉劑,監護儀,血壓儀,生理信號采集系統,給藥系統

動物腫瘤測量儀,非常適合對大鼠小鼠等動物的皮下腫瘤進行快速測量、分析,精確測量動物腫瘤并對腫瘤信息存檔與跟蹤。


主要技術參數: 

· 測量范圍:0-25mm腫瘤尺寸:20*20*20mm
· 3D測量精確度:<0.3mm
· 圖像捕捉時間:0.1s
· 接口:USB 2.0
· 相機:1600*1200 像素(2MP)
· 工作距離:50mm


動物腫瘤測量分析儀的主要特點: 
· 手持式成像裝置,實現立體成像;
· 適合測量不同尺寸的腫瘤;
· 方便使用:觸屏式電腦,操作方便;
· 內置軟件,自動計算腫瘤尺寸,跟蹤整個實驗進展。 
  

· 快速,高效,保證了高通量和可靠測量;
· 全自動測量跟蹤系統;
· 實時數據分析與處理。 


     
  
 


部分用戶: 

Hunter College, CUNY

Vanderbilt University Medical Center

Hainan Medical University

Howard Hughes Medical Institute

Memorial Sloan Kettering Cancer Center

Cancer Center Amsterdam

GlaxoSmithKline

Imec

K.U.Leuven

Neuro-Electronics Research Flanders

Pepric

PharmaVize

reMYND

University Ghent

SEPS Pharma

Vlaams Instituut voor Biotechnologie

University Antwerp

ThromboGenics

Janssen Pharmaceutica

City University of Hong Kong


參考文獻:

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3.Santich BH, Park JA, Tran H, et al. Interdomain spacing and spatial configuration drive the potency of IgG-[L]-scFv T cell bispecific antibodies. Sci Transl Med. 2020;12(534):eaax1315. doi:10.1126/scitranslmed.aax1315.
4.Park JA, Xu H, Cheung, I, et al. Abstract B38: Tetravalent bispecific antibodies specific for HER2 and disialoganglioside GD2 to engage polyclonal T cells for osteosarcoma therapy. Cancer Res. 2018;78(19),B38.doi:10.1158/1538-7445.PEDCA17-B38.
5.Wu CF, Wu CY, Lin CF, et al. The anticancer effects of cyanidin 3-O-glucoside combined with 5-fluorouracil on lung large-cell carcinoma in nude mice. Biomed Pharmacother. 2022;151:113128. doi:10.1016/j.biopha.2022.113128.
6.Wang L, Hoseini SS, Xu H, et al. Silencing Fc Domains in T cell-Engaging Bispecific Antibodies Improves T-cell Trafficking and Antitumor Potency. Cancer Immunol Res. 2019;7(12):2013-2024. doi:10.1158/2326-6066.CIR-19-0121.
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9.Beguin E, Gray MD, Logan KA, et al. Magnetic microbubble mediated chemo-sonodynamic therapy using a combined magnetic-acoustic device. J Control Release. 2020;317:23-33. doi:10.1016/j.jconrel.2019.11.013.
10.Mao N, Gao D, Hu W, et al. Aberrant Expression of ERG Promotes Resistance to Combined PI3K and AR Pathway Inhibition through Maintenance of AR Target Genes. Mol Cancer Ther. 2019;18(9):1577-1586. doi:10.1158/1535-7163.MCT-18-1386.
11.Wu Z, Guo HF, Xu H, et al. Development of a Tetravalent Anti-GPA33/Anti-CD3 Bispecific Antibody for Colorectal Cancers. Mol Cancer Ther. 2018;17(10):2164-2175. doi:10.1158/1535-7163.MCT-18-0026.
12.Poty S, Mandleywala K, O'Neill E, et al. 89Zr-PET imaging of DNA double-strand breaks for the early monitoring of response following α- and β-particle radioimmunotherapy in a mouse model of pancreatic ductal adenocarcinoma. Theranostics. 2020;10(13):5802-5814. doi:10.7150/thno.44772.
13.Hoseini SS, Guo H, Wu Z, et al. A potent tetravalent T-cell-engaging bispecific antibody against CD33 in acute myeloid leukemia. Blood Adv. 2018;2(11):1250-1258. doi:10.1182/bloodadvances.2017014373.
14.Zhang Z, Karthaus WR, Lee YS, et al. Tumor Microenvironment-Derived NRG1 Promotes Antiandrogen Resistance in Prostate Cancer. Cancer Cell. 2020;38(2):279-296.e9. doi:10.1016/j.ccell.2020.06.005.
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