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    我們專注於提供全方位的分析和企業服務解決方案,包括領先的OneSource實驗室服務,加速您的科學研究進程

IVIS® Lumina X5 Imaging System | 爱游戏平台注册登录
爱游戏平台注册登录
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IVIS Lumina X5成像係統

爱游戏平台注册登录 全新一代小動物活體成像係統IVIS Lumina X5整合了最佳的高通量生物發光、熒光及高分辨率二維X光成像模塊。擴展為五隻小鼠的光學及X光大成像視野、獨特的實驗設置和樣品標記輔助配件讓研究人員能更便捷、更快速地獲取疾病進展中解剖學和功能學各方麵的穩定數據和答案。

貨號 CLS148590
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詳細信息

IVIS Lumina X5除包含IVIS Lumina S5成像係統的所有功能外,還整合了高分辨率的X光成像功能,高分辨率X光圖像與高質量光學圖像數據的整合能力使其成為業界最頂級的二維多模式活體成像係統。另外,IVIS Lumina X5包含最先進的光譜包含最先進的光譜分離功能,可通過高靈敏度多光譜成像來監測同一動物體內的多個生物學事件。

不折不扣的高通量光學及X光活體成像係統

IVIS Lumina X5在經典Lumina平台上整合了一英寸的CCD相機,可以提供20 x 20厘米高通量的成像視野,足以同時對五隻小鼠進行生物發光和熒光成像。另外,新款閃爍屏能為成像視野內任意光學圖像提供對應的X光結構學圖像數據。此外,自動成像且可獨立調節高度的閃爍屏設計讓研究人員能便捷地對500-600克大鼠進行光學/X光精準融合成像。

與其他IVIS Lumina成像係統一樣,X5係統配備了26塊濾光片,適用於從綠色到近紅外熒光信號的成像。新的激發技術將熒光成像範圍有效提升至900 nm。另外,IVIS Lumina X5係統整合了爱游戏平台注册登录 公司專利的計算純光譜(CPS)算法及光譜數據庫生成軟件工具,使其能實現精準去除自發熒光背景、多信號拆分以及熒光信號定量功能。

IVIS係統的定量功能是業界的金標準,係統的絕對校正功能使得在不同放大倍數、不同濾光片選擇或不同拍照參數設置的條件下能獲得一致且可重複的數據結果,另外,無論數據是源於同一台儀器或是源於其他研究機構的儀器,隻要都是IVIS平台,數據之間就可以直接相互比較。

業界領先的X光成像分辨率

IVIS Lumina X5配置了微焦點X射線光源,這使得X光成像分辨率極大提升。借助極高的X光成像分辨率,研究者不僅能夠清晰了解疾病發展過程中器官的解剖學改變,而且能夠獲知光學觀測對象的精準定位,從而更全麵地解讀疾病。

豐富的選配件 — 簡化實驗操作流程

IVIS Lumina X5不僅通過升級大尺寸CCD相機擴展成像通量,而且新進配備了多種用於成像前對實驗動物進行預操作的成像配件(單獨選配),幫助使用者更為便捷地開展實驗。

在成像開始前,使用者可預先將實驗動物放置於實驗動物托盤後,再整體載入成像暗箱中,而無需如先前在實驗暗箱中進行上述操作。同時,成像軟件可依據內置於托盤中的基準標簽,自動識別記錄處於相應位置的實驗動物,並進行ROI圈選定量。

新的動物托盤采用了模塊化設計,各模塊可輕鬆拆卸,便於清理。托盤中的動物麻醉接口也采用了無鼻錐設計,方便清理。另外,結合新一代氣體麻醉機RAS-4的強力真空循環裝置,使得麻醉氣體外漏程度降至最低,提升使用的安全性。

最新的Living Image®成像及分析軟件還內置了動物ID識別功能,通過結合使用來自於第三方的動物ID芯片識別技術,使用者可便捷地識別、記錄及輸出來自於不同實驗動物個體的影像及定量數據。

主要特點:

  • 高通量光學及X光成像(同時成像5隻小鼠)
  • 高分辨率、低輻射X光成像
  • 支持小鼠及大鼠成像
  • 高靈敏度生物發光成像
  • 高靈敏度生物發光成像
  • 高靈敏度生物發光成像
  • 生物發光、熒光及X光多模式成像
  • 豐富的成像及數據分析配件

規格

高度 116.84 cm
顯像模式 Optical Imaging
產品品牌名稱 IVIS
寬度 48.26 cm
資源
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Ebook

了解更多請點擊下載小動物活體成像解決方案

Researchers trust our in vivo imaging solutions to give them reliable, calibrated data that reveals pathway characterization and therapeutic efficacies for a broad range of indications. Our reagents, instruments, and applications support have helped hundreds of research projects over the years. And ...

PDF 4 MB

Publication Review

Clinically translatable cytokine delivery platform for eradication of intraperitoneal tumors

Proinflammatory cytokine interleukin-2 (IL-2) is of particular interest for cancer immunotherapy as it plays a critical role in the regulation of immune cells such as T cells. Although proinflammatory cytokines have been used to treat various cancers including metastatic melanoma and renal carcin ...

PDF 258 KB
Applications of In Vivo Bioluminescence Imaging for SARS-CoV-2

Scientists continue to explore several options to treat SARS-CoV-2 infection with hundreds of therapeutics at various phases of development. At the start of the pandemic, several factors hampered the rapid identification of potential SARS-CoV-2 therapeutics, including a limited understanding of t ...

PDF 918 KB
In Vivo Imaging of Influenza Virus Infection in Immunized Mice

Influenza is a highly infectious airborne disease with an important societal burden. Annual epidemics have occurred throughout history causing tens of millions of deaths. Even a run-of-the-mill influenza infection can be debilitating to otherwise healthy people, and lethal to those who are elderl ...

PDF 436 KB
Evaluating a Novel Nanoparticle Platform for Controlled Liraglutide Release in a Type II Diabetes Mouse Model Via Optical Imaging

A large percentage of Type 2 diabetes mortality is related to cardiovascular complications. Consequently, there is a critical need for creating novel therapeutics that not only manage blood glucose levels, but also reduce the risk of developing cardiovascular diseases.

Liraglutide (Lira) is ...

PDF 538 KB

Video Article

產品手冊

In Vivo Imaging Reagents

Our comprehensive range of bioluminescent and fluorescent imaging reagents provide researchers with the necessary tools to better understand early disease-related biological changes, track disease progression, help guide the drug discovery process, and evaluate efficacy and safety of drug candida ...

PDF 1 MB

單頁

Best Practices for Designing An Effective In Vivo Fluorescence Imaging Study

Fluorescence molecular imaging is the visualization of cellular and biological function in vivo to gain deeper insights into disease processes and treatment effects. Designing an effective study from the beginning can help save time and resources.

Learn about several important best p ...

PDF 507 KB

合規認證證書

應用文獻

Quantitative Analysis of Bone Erosion Using High-Resolution X-Ray Imaging

Bone erosion is a pathological condition characterized by breaks in the cortical bone surface and loss of the adjacent trabecular bone. Several pathological processes can lead to bone erosion, including malignant tumors, abnormal metabolic processes such as hyperparathyroidism, and chronic inflammat ...

PDF 3 MB
Imaging Oncolytic Virus Infection in Cancer Cells

Aside from the traditional small-molecule chemotherapeutics or targeted therapy agents that have been widely used in the clinic for decades, a new type of cancer therapeutics based on oncolytic viruses has recently gained attention in the field of research. Oncolytic viruses are genetically modif ...

PDF 2 MB

指南

IVISense™ Fluorescent Probe Selector Guide for Oncology Research

The goal of in vivo fluorescence molecular imaging is to enable non-invasive visualization and quantification of cellular and biological functioning to better understand and characterize disease processes and treatment effects earlier within the context of a biological system.

This s ...

PDF 4 MB

操作手冊

IVIS Lumina X5 User Manual

This IVIS® Lumina X5 user manual provides the technical requirements and specifications of the IVIS Lumina X5, and provides you with the tools to seamlessly setup and maintain your system.

The IVIS Lumina X5 combines best in class high-throughput in vivo bioluminescenc ...

PDF 1 MB

案例分析

A Novel Mouse Model Using Optical Imaging to Detect On-Target, Off-Tumor CAR-T Cell Toxicity

CAR T therapy has achieved tremendous success in treating blood malignancies, however treating solid tumors with this therapy has proven to be challenging due to several factors such as on-tumor, off-tumor toxicity.

Read this case study where researchers from University of Pennsylvania crea ...

PDF 1 MB
A Novel Non-Invasive In Vivo Diagnostic Tool for the Assessment of NASH

Non-alcoholic fatty liver disease (NAFLD) describes a progressive pathology that affects the liver. Fat accumulation causes fatty liver (NAFL) or steatosis to develop, which leads to lipotoxicity and in turn induces liver inflammation and apoptosis, resulting in non-alcoholic steatohepatitis (NAS ...

PDF 963 KB
Tracking Neuroinflammation Using Transgenic Mouse Models and Optical Imaging

Amyotrophic lateral sclerosis (ALS) is a devastating neurological disease for which there is no cure. Another lethal brain disease is stroke, which occurs when blood supply to the brain is disrupted by a blood vessel that bursts or becomes blocked. Neuroinflammation plays a key role in both of th ...

PDF 1 MB

白皮書

Non-Invasive Optical Imaging for Viral Research and Novel Therapeutic and Vaccine Development

Viral diseases have emerged and re-emerged throughout history, and as the human population continues to increase globally, so will the frequency of viral pandemics. Not only have Ebola and COVID-19 demonstrated most recently mankind’s vulnerability to contagious diseases, but also the challenges ...

PDF 2 MB
The Role of In Vivo Imaging in Drug Discovery and Development

The primary goal of preclinical imaging is to improve the odds of clinical success and reduce drug discovery and development time and costs. Advances in non-invasive in vivo imaging techniques have raised the use of animal models in drug discovery and development to a new level by enabling quick ...

PDF 547 KB
Bioluminescence Resonance Energy Transfer (BRET) to Monitor Protein-Protein Interactions

The ability to image protein-protein interactions (PPIs) in vivo has important implications for a wide variety of biological research endeavors, including drug discovery and molecular medicine. The visual representation, characterization, quantification, and timing of these biological proc ...

PDF 1 MB
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