VISQUE InVivo Elite小动物活体实时成像系统
产品名称: VISQUE InVivo Elite小动物活体实时成像系统
英文名称: VISQUE InVivo Elite
产品编号: VISQUE InVivo Elite
产品价格: 0
产品产地: 韩国
品牌商标: VISQUE
更新时间: null
使用范围: null
VISQUE InVivo Elite小动物活体实时成像系统
VISQUE InVivo Elite小动物活体实时成像系统是以Vieworks的高性能工业相机和最尖端的医用图像解决方案为基础开发的临床前In Vivo光学图像设备。包含了能将自身温度降至低于周围20度的数字冷却相机和最大发散设备内部热量的散热器,从而使发热导致的图像噪声降至最低,Vieworks独有的该降温技术确保在没有超低温冷却系统的情况下,也能获取高品质的图像。可以通过软件方便操控电机控制的Full HD变焦镜头的焦距、光圈和焦点,获得最小33㎛的像素的高分辨率图像。
VISQUE InVivo Elite小动物活体实时成像系统既适用于可视光线下的拍摄,也适用于近红外线区域的荧光和发光拍摄,成像范围为500nm-870nm。采用了适合实时荧光拍摄的专利设计和高速相机,能够获得最大速度为24fps的定时拍摄。
VISQUE InVivo Elite小动物活体实时成像系统通过浏览器软件CleVue™可以查看已拍摄的荧光图像,并能根据视频影像进行动力学分析。通过与专业人员的长期合作而开发出的各种分析功能可帮助用户轻松的获取论文用图片和统计资料。
VISQUE InVivo Elite小动物活体实时成像系统既可用于癌症、血管生成、肝功能、神经学、炎症、干细胞研究等,也可用于动物动力学,心血管系统和淋巴系统等生物功能的分析,同时成像无需关门的独特优势配备大的成像台,使我们可以更便捷的实现大动物成像。
以下是VISQUE InVivo Elite小动物活体实时成像系统在一些实验过程中的图片,供您参考:
1. 脑灌注实时成像对比图:
2. 小鼠脑部动脉结构和血流变化图:
3. 生物发光图像
4. 荧光成像,小鼠脑部血流灌注模型实时成像图:
另外,以下是市场上同类型产品,活体成像的质量的对比图:
部分引用文献:
一、2020年:
1. Multifunctional Dendrimer-Entrapped Gold Nanoparticles for Labeling and Tracking T Cells Via Dual-Modal Computed Tomography and Fluorescence Imaging,Biomacromolecules,2020;
2. Surface-Initiated Atom Transfer Polymerized Anionic Corona on Gold Nanoparticles for Anti-Cancer Therapy,Pharmaceutics,2020;
3. Selenium and dopamine-crosslinked hyaluronic acid hydrogel for chemophotothermal cancer therapy,Journal of Controlled Release,2020;
4. Penta-fluorophenol: A Smiles rearrangement-inspired cysteine-selective fluorescent probe for imaging of human glioblastoma,Chemical Science,2020;
5. Heme Oxygenase 1‐Targeted Hybrid Nanoparticle for Chemo‐ and Immuno‐Combination Therapy in Acute Myelogenous Leukemia,Advanced Science,2020;
6. Detecting Cysteine in Bioimaging with a Near‐Infrared Probe Based on a Novel Fluorescence Quenching Mechanism,ChemBioChem,2020;
7. Discovery of a Monoiodo Aza-BODIPY Near-Infrared Photosensitizer: in vitro and in vivo Evaluation for Photodynamic Therapy,Journal of Medicinal Chemistry,2020;
8. In Vivo Imaging of Senescent Vascular Cells in Atherosclerotic Mice Using a β-Galactosidase-Activatable Nanoprobe,Analytical Chemistry,2020;
9. Neuronal mitochondria-targeted micelles relieving oxidative stress for delayed progression of Alzheimer’s disease,Biomaterials,2020;
10. Precisely Traceable Drug Delivery of Azoreductase-Responsive Prodrug for Colon Targeting via Multimodal Imaging,Analytical Chemistry,2020;
11. Interrogation of Folic Acid-Functionalized Nanomedicines The Regulatory Roles of Plasma Proteins Reexamined,ACS Nano,2020;
12. Near-infrared probe based on novel fluorescence quenching mechanism for detection of cysteine in bioimaging,ChemBioChem,2020;
二、2019年:
1. A nanoscale photothermal agent based on a metal-organic coordination polymer as a drug-loading framework for effective combination therapy,Acta Biomaterialia,2019;
2. Conjugation of prostate cancer-specific aptamers to polyethylene glycol-grafted polyethylenimine for enhanced gene delivery to prostate cancer cells,Journal of Industrial and Engineering Chemistry,2019;
3. Targeted delivery of CRISPR interference system against Fabp4 to white adipocytes ameliorates obesity, inflammation, hepatic steatosis, and insulin resistance,Genome Research,2019;
4. Osteogenesis and angiogenesis are simultaneously enhanced in BMP2-/VEGF-transfected adipose stem cells through activation of the YAP/TAZ signaling pathway.,Biomaterials Science,2019;
5. Biodegradable Mesoporous Silica Achieved via Carbon Nanodots-Incorporated Framework Swelling for Debris-Mediated Photothermal Synergistic Immunotherapy,Nano Letters,2019;
6. CXCR4-Receptor Targeted Liposomes for the Treatment of Peritoneal Fibrosis,Molecular Pharmaceutics,2019;
7. pH-Switchable Coordinative Micelles for Enhancing Cellular Transfection of Biocompatible Polycations,ACS Applied Materials & Interfaces,2019;
8. Silicene: Wet-Chemical Exfoliation Synthesis and Biodegradable Tumor Nanomedicine,Advanced Materials,2019;
9. Self-Propelled Gemini-like LMWH-Scaffold Nanodrugs for Overall Tumor Microenvironment Manipulation via Macrophage Reprogramming and Vessel Normalization,Nano Letters,2019;
三、2018年:
1. Blood flow characteristics of diabetic patients with complications detected by optical measurements,BioMedical Engineering OnLine,2019;
2. 薄荷脑鼻用原位凝胶流变与凝胶特性研究,海军医学杂志,2019;
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