VISQUE InVivo Elite小動物活體實時成像系統
產品名稱: VISQUE InVivo Elite小動物活體實時成像系統
英文名稱: VISQUE InVivo Elite
產品編號: VISQUE InVivo Elite
產品價格: 0
產品產地: 韓國
品牌商標: VISQUE
更新時間: null
使用范圍: null
VISQUE InVivo Elite小動物活體實時成像系統
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? ? VISQUE InVivo Elite小動物活體實時成像系統是以Vieworks的高性能工業相機和最尖端的醫用圖像解決方案為基礎開發的臨床前In Vivo光學圖像設備。包含了能將自身溫度降至低于周圍20度的數字冷卻相機和最大發散設備內部熱量的散熱器,從而使發熱導致的圖像噪聲降至最低,Vieworks獨有的該降溫技術確保在沒有超低溫冷卻系統的情況下,也能獲取高品質的圖像??梢酝ㄟ^軟件方便操控電機控制的Full HD變焦鏡頭的焦距、光圈和焦點,獲得最小33?的像素的高分辨率圖像。
? ? VISQUE InVivo Elite小動物活體實時成像系統既適用于可視光線下的拍攝,也適用于近紅外線區域的熒光和發光拍攝,成像范圍為500nm-870nm。采用了適合實時熒光拍攝的專利設計和高速相機,能夠獲得最大速度為24fps的定時拍攝。
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VISQUE InVivo Elite小動物活體實時成像系統通過瀏覽器軟件CleVue?可以查看已拍攝的熒光圖像,并能根據視頻影像進行動力學分析。通過與專業人員的長期合作而開發出的各種分析功能可幫助用戶輕松的獲取論文用圖片和統計資料。
VISQUE InVivo Elite小動物活體實時成像系統既可用于癌癥、血管生成、肝功能、神經學、炎癥、干細胞研究等,也可用于動物動力學,心血管系統和淋巴系統等生物功能的分析,同時成像無需關門的獨特優勢配備大的成像臺,使我們可以更便捷的實現大動物成像。

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以下是VISQUE InVivo Elite小動物活體實時成像系統在一些實驗過程中的圖片,供您參考:
? 1. 腦灌注實時成像對比圖:

2. 小鼠腦部動脈結構和血流變化圖:

3.?生物發光圖像

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4. 熒光成像,小鼠腦部血流灌注模型實時成像圖:

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另外,以下是市場上同類型產品,活體成像的質量的對比圖:

部分引用文獻:
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;
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2.? ?薄荷腦鼻用原位凝膠流變與凝膠特性研究,海軍醫學雜志,2019;
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