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Quantum GX2 microCT成像係統

應用領域涉及骨、腫瘤、心血管和肺部等疾病研究。Quantum GX2 micro CT成像係統模式靈活,兼容離體樣本、小鼠、大鼠及兔子等多種物種;具備快速、低劑量的掃描模式,適合對活體動物進行長時程研究;具備高分辨率成像特點,能夠對離體樣本進行高分辨掃描。 Quantum GX2 microCT卓越的性能讓您不僅得到圖像,而是更深入的理解疾病模型。

貨號 CLS149276
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詳細信息

Quantum GX2 microCT是真正的多物種臨床前成像係統, 同時滿足長時程活體動物成像和高分辨率離體樣本成像。成像倉直徑達到 163mm, 可以放置整隻兔子並進行活體成像,而18mm 視野成像可以進行離體樣本高分辨率成像。並且 Quantum GX2 能夠與爱游戏平台注册登录 三維光學成像係統聯用,形成多模式成像。自動骨分析軟件(AccuCT), Quantum GX2 microCT 成像係統提供最大的靈活度 ,不管您的研究是腫瘤、血管疾病、骨科或者肺部疾病, Quantum GX2 都能滿足您的需求。

主要特點

  • 高分辨率 (2.3μm)
  • 快速成像 (3.9 sec)
  • 低輻射劑量,適合活體長時程成像
  • 四個可選視野 (FOVs) – 18, 36, 72, 和86 mm
  • 多物種成像 (斑馬魚/小鼠/大鼠/豚鼠/兔)
  • 兩相呼吸門控和心跳門控
  • 與功能模塊光學信號 (IVIS ®和 FMT®)無縫對接

Quantum GX2 microCT 成像 與爱游戏平台注册登录 其他活體成像模式 (光學 和 PET)結合,更深刻的在活體水平理解疾病進展和治療效果 。

規格

高度 1450.0 mm
顯像模式 microCT Imaging
產品品牌名稱 Quantum
寬度 980.0 mm
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

Video Article

產品手冊

Complete Solutions for NASH Research

When Non-alcoholic fatty liver disease (NAFLD) progresses to nonalcoholic steatohepatitis (NASH), with inflammation and damage to liver cells it can cause fibrosis, cirrhosis and liver failure or cancer. Despite the prevalence of NAFLD and NASH rising, their remains no approved treatments. But st ...

PDF 1 MB
Complete Neuroscience Solutions for Research and Discovery

Like the brain, neuroscience has a multitude of layers. Our broad solutions, innovative technologies, and proven expertise help researchers like you understand neurological diseases so that patients can benefit from better treatments and therapies.

PDF 2 MB
3D Multimodality Imaging: See disease in all its dimensions

It’s simple: More information means more understanding,For today’s researchers in oncology, infectious diseases, inflammation, neuroscience, stem cells,and other disciplines, there’s an increasing need for in vivo imaging that enables you to visualize,multiple events simultaneously and to extract th ...

PDF 2 MB

產品說明

合規認證證書

應用文獻

Assessment of Arterial Function Using MicroCT Imaging

Blood vessel mechanics and function are important aspects of cardiovascular research. Arterial changes have been associated with several pathophysiological conditions, disease states and treatment. Structural components of the arterial vessel wall, smooth vasculature tone, and transmural distendi ...

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Contrast-enhanced Imaging of Vasculature and Soft Tissues Using the Quantum GX MicroCT System

X-ray CT imaging is commonly used for skeletal imaging as bones are densely mineralized tissues with excellent x-ray attenuation properties. In contrast, soft, less dense tissues often prove to be challenging to image due to their lack of sufficient tissue density. Soft tissues such as muscle, blood ...

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MicroCT Investigation of Bone Erosion and Deformation in an Osteoarthritic Rat Model

Osteoarthritis (OA) is the most common form of arthritis and affects a considerable portion of the elderly population. In the U.S., it is estimated that more than 630 million people worldwide have this chronic condition, generally in the knees. OA occurs when the cartilage that cushions the ends of ...

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The Utility of Adeno-Associated Viruses (AAVs) in Therapeutic Approaches for Monogenic Neurological Diseases

Gene therapy is a very powerful tool that is currently being explored to combat disorders with underlying genetic causes. Within the field of neurological diseases, there is great interest looking at rare diseases of monogenic origin with the hope of developing disease-modifying gene therapies, a ...

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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 ...

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文章

Editorial: MicroCT in Experimental Pulmonary Arterial Hypertension

Pulmonary Arterial Hypertension (PAH) is a life-threatening disease that affects the arteries in the lungs and the right side of the heart. Small animal models are often used in experimental PAH research due to their similarities to human cardiovascular physiology. MRI and microPET are established t ...

PDF 52 KB

案例分析

Assessment of MYC-Driven Progression of Small Cell Lung Cancer

Lung cancer is the leading cause of cancer death worldwide with Small Cell Lung Cancer (SCLC), an aggressive form with a typical survival rate of 10-12 months, accounting for roughly 14% of all lung cancers. The primary chemotherapy treatment regimen for SCLC is etoposide plus a platinum-based dr ...

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

海報

Quantitative Assessment of Compliance and Resistance in Emphysema Mouse Model Using MicroCT

Emphysema is a form of chronic obstructive pulmonary disease (COPD) most often association with smoking. It is a leading cause of death worldwide and is characterized by irreversible and severe destruction of the alveolar lung sacs. Small animal models are critical to understanding lung disease, ...

PDF 1 MB

白皮書

Assessing Nanomedicine Delivery Across the Blood-Brain Barrier Using Pre-Clinical In Vivo Imaging

We recently spoke to researchers based at the Centre for Advanced Imaging at the University of Queensland in Australia who have been utilizing various pre-clinical in vivo imaging techniques to explore the uptake of custom-designed nanomedicines at different stages of brain cancer.

In this ...

PDF 741 KB
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
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