Multisizer 4e 库尔特颗粒计数及粒度分析仪
Multisizer 4e 库尔特颗粒计数及粒度分析仪是一款多功能可检测 0.2μm - 1600μm 的颗粒计数和表征系统。
它基于库尔特原理,通过电感区检测待测颗粒,无论该颗粒的性质或光学特性如何。因此,Multisizer 4e 库尔特颗粒计数及粒度分析仪是检测和计数各种颗粒的理想工具,如:
- 哺乳动物细胞
- 细菌
- 酵母
- 研磨料
- 色粉颗粒
- 细胞
- 细胞集合体
- 球状体
- 大蛋白集合体
除计数颗粒密度外,Multisizer 4e 库尔特颗粒计数及粒度分析仪还可确定颗粒体积和形状。例如,细胞体积的变化是很多生物进程中的一个重要因素,如细胞生长、细胞周期、细胞凋亡、渗透应激补偿、发病机理和吞噬作用。
* 本产品仅用于工业及科研,不用于临床诊断
功能特点
多功能性
- 孔径大小从 10μm 到 2000μm,致力于满足实验室需求
- 多孔径选项和数据覆盖功能,用于分析宽粒径分布的复杂样品
样品检测
- 分析水性或非水电解质溶液中的物质
- 适用于生物或非生物样品
- 无论材料类型或光学特性如何,都可以进行粒子检测
快速粒子计数
- 典型采样率高达每秒 10,000 次
- 检测并计数直径为 0.2μm - 1600μm 的粒子
- 样品体积小至 5 mL
数据管理强大
- 数字脉冲数据可以按需存储和重新分析
- 符合CFR 21 Part 11 审计控制和安全要求
- 各种校准珠和 V-check 认证控制
选择 Multisizer 4e 型号
技术文件
Multisizer 4e Particle Analyzer
What is the difference between a Coulter counter and flow cytometry for cell counting?
A Coulter counter counts and sizes cells using the Coulter principle (Electrical Sensing Zone) by measuring changes in electrical impedance as each cell passes through a small aperture. This provides accurate, label-free total cell counts and true cell volume measurements, independent of cell color, shape, or optical properties.
Flow cytometry, by contrast, counts cells using light scatter and fluorescence as cells pass through a laser. It enables multiparametric biological analysis (e.g., surface markers, viability, phenotype) but typically requires fluorescent labeling and is more sensitive to optical and staining variability.
What is the Coulter principle for particle analysis?
The Coulter principle is a widely used method for particle size and count analysis based on electrical resistance. It works by suspending particles in a conductive liquid and passing them one by one through a small aperture with an electrical current applied.
When a particle passes through the aperture, it displaces its own volume of electrolyte, causing a momentary change in electrical impedance. This change is directly proportional to the particle’s volume, allowing precise measurement of particle size and concentration.
The Coulter principle is commonly used in particle characterization, cell counting (e.g., blood cells), pharmaceuticals, biotechnology, and industrial quality control because it provides accurate, reproducible, and number-based particle measurements.
What's a good way to measure particle size distribution?
A reliable way to measure particle size distribution is Electrical Sensing Zone (ESZ) analysis, also known as the Coulter principle. This method measures particles individually as they pass through a small aperture, delivering high-resolution, number-based particle size distributions across a wide size range.
Instruments like the Multisizer 4e Particle Analyzer apply this technique to provide accurate, reproducible particle sizing and counting for applications in pharmaceuticals, biotechnology, industrial materials, and research. The Multisizer 4e Particle Analyzer is especially effective when precise control, traceability, and true particle-by-particle measurement are required—making it a gold standard for particle characterization.
How to count particles regardless of their shape or color?
The most effective way to count particles regardless of shape, color, or optical properties is by using Electrical Sensing Zone (ESZ) technology, also known as the Coulter principle. This method counts particles individually by measuring changes in electrical impedance as each particle passes through a small aperture filled with a conductive liquid.
Because the signal is based on particle volume, not light scattering or imaging, ESZ analysis delivers accurate, label-free particle counting that is independent of particle shape, transparency, refractive index, or color. This makes it ideal for heterogeneous samples in biotechnology, pharmaceuticals, industrial materials, and quality control.
Instruments such as the Multisizer 4e Particle Analyzer apply this technology to provide precise, reproducible particle counts and size distributions across a wide size range.