Questions You Should Know about Aps Nesswell Manual Rotary Microtome

04 Aug.,2025

 

Aps Nesswell Tissue Cryostat Microtome Freezing Microtome

A tissue cryostat microtome is an essential device in rapid pathology testing.
The Aps Nesswell is a pathology freezing microtome manufacturer.
Our cryostat microtome is an advanced laboratory instrument that combines the functions of a slicer and a cryostat, and is designed for precise cutting of frozen biological tissues.

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The tissue cryostat microtome is able to quickly freeze pathology specimens and perform precise slicing operations in a frozen state. This helps to maintain the integrity and tissue structure of the specimen, thereby ensuring the accuracy of pathology testing.

Our cryostat microtome allows researchers and pathologists to obtain thin, high-quality tissue sections at low temperatures. The cryostat microtome keeps the specimen in a frozen state, minimizes artifacts and preserves tissue structure for precise analysis under a microscope. When equipped with a cryostat microtome, it can perform controlled slicing of frozen tissues to produce thin sections for various applications such as histology and molecular biology.

The device has a precise temperature control system that can adjust and maintain a temperature environment suitable for slicing to avoid temperature fluctuations affecting the quality of slicing.
The humanized design of the device and the intuitive and easy-to-understand operation interface enable operators to easily get started and quickly complete slicing tasks.
In addition, our products focus on safety during the design and manufacturing process, and adopt safety measures such as safety shields and emergency stop buttons to ensure the safety of operators and tissue samples.

Tissue Microtome

Tissue microtomes are precision instruments used for cutting thin slices of biological tissue samples. They play a crucial role in histology, pathology, and other biomedical research fields, enabling scientists to observe and analyze tissue structures and cellular details.

The primary function of a tissue microtome is to produce thin, uniform slices of tissue samples. These slices, known as histological sections, are typically only a few micrometers thick, allowing researchers to visualize cellular and subcellular features with high resolution. The microtome achieves this by using a sharp blade to precisely cut the tissue while it is mounted on a specimen holder.

There are several types of tissue microtomes available, including manual, semi-automatic, and fully automatic models. Manual microtomes require the operator to manually adjust the blade position and advance the tissue sample, while semi-automatic and fully automatic models offer greater convenience and reproducibility through motorized mechanisms that control the cutting process.

In addition to cutting tissue samples, some microtomes also have the capability to embed the tissue in a supporting medium, such as paraffin, to provide stability and rigidity during the cutting process. This embedding step is essential for maintaining the structural integrity of the tissue and preventing damage during handling and slicing.

The use of tissue microtomes in biomedical research is widespread. They are used to study the morphology and pathology of various tissues and organs, including the brain, liver, kidney, and skin. By examining histological sections, researchers can identify changes in tissue structure and cellular composition that may indicate disease or abnormal physiological conditions.

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In summary, tissue microtomes are essential tools for producing thin, uniform slices of biological tissue samples for histological analysis. Their precision and reproducibility make them invaluable in biomedical research, enabling scientists to gain insights into tissue structure and function at the cellular and subcellular levels.

Tissue microtomes are precision instruments used for cutting thin slices of biological tissue samples. They play a crucial role in histology, pathology, and other biomedical research fields, enabling scientists to observe and analyze tissue structures and cellular details.

The primary function of a tissue microtome is to produce thin, uniform slices of tissue samples. These slices, known as histological sections, are typically only a few micrometers thick, allowing researchers to visualize cellular and subcellular features with high resolution. The microtome achieves this by using a sharp blade to precisely cut the tissue while it is mounted on a specimen holder.

There are several types of tissue microtomes available, including manual, semi-automatic, and fully automatic models. Manual microtomes require the operator to manually adjust the blade position and advance the tissue sample, while semi-automatic and fully automatic models offer greater convenience and reproducibility through motorized mechanisms that control the cutting process.

In addition to cutting tissue samples, some microtomes also have the capability to embed the tissue in a supporting medium, such as paraffin, to provide stability and rigidity during the cutting process. This embedding step is essential for maintaining the structural integrity of the tissue and preventing damage during handling and slicing.

The use of tissue microtomes in biomedical research is widespread. They are used to study the morphology and pathology of various tissues and organs, including the brain, liver, kidney, and skin. By examining histological sections, researchers can identify changes in tissue structure and cellular composition that may indicate disease or abnormal physiological conditions.

In summary, tissue microtomes are essential tools for producing thin, uniform slices of biological tissue samples for histological analysis. Their precision and reproducibility make them invaluable in biomedical research, enabling scientists to gain insights into tissue structure and function at the cellular and subcellular levels.

We usually follow the tenet of customer-oriented, details-focused for full line histology and pathology equipment & consumable.
Products including but not limited,tissue embedding center,tissue microtome,tissue processor,tissue slide stainer,microscope slide printer,embedding cassette printer ect.

We aim at continuous system innovation, management innovation, elite innovation, and market innovation, give full play to the overall advantages, and continuously improve service quality. The product will supply to all over the world.Honest to every customers are our requested!Friends both at home and abroad are warmly welcome to establish everlasting business relations with us. We have rich experience in export. We aim to respond to all inquiries within 24 hours.
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