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What You Need To Know Concerning Live Cell Microscopy

By Paul Cooper


The human cells are microscopic structural and functional units of the human body and other living organisms. They are the basic composition for the body and carry out their specified functions. Due to their microscopic nature, they cannot be observed by the human eye and therefore they are mostly viewed under a microscope. Therefore, for detailed results of the functioning of these structural units to be observed, live cell microscopy is implemented in experiments.

This imaging method has been accessible for many years now and has been extended to many different fields. It involves viewing of these structural units under a time-lapse microscope in order to study their cellular structure. Since its pioneering, several methods of such imaging have been developed which allows these units to be studied in great detail. This enhances the knowledge on functions of cellular structures and tissues.

When you are undertaking the study, it is important to have good maintenance of the specimen. This means that if you expose them to certain environments that may stress-inducing, they will not give the appropriate imagery and give wrong information. Stressful conditions or environments are believed to cause an alteration in the biological and physiological processes of these structures.

In order to obtain live-cell fluorescent imaging, biologists need to obtain as much fluorescent light in a bid to reduce the incident light that may cause phototoxic effects. Since many cells and tissues are exposed to light in their life cycle, it is important for imaging applications to reduce exposure to light. To ensure this, microscopes should be able to collect as much light as possible.

So as to have a clear live-cell imagery, you have to make sure the light you are using is a fluorescent one and minimize any cases of incident light which may contain phototoxic characteristics. Actually, most structures have been functioning in light exposure it is therefore important to reduce this light when making imageries applications. The microscope should be the object to collect light but not exposing the specimen to the light.

Biologists should strive to ensure that such experiments do not completely damage the cellular structures under observation. This is however difficult because most elements used in the imaging system are damaging to the cells. This damage may affect the results. It is important to ensure the good condition of the cells before undertaking the study.

It is often good to consider the type of microscopes used for the studies in order to obtain effective results. The features and configuration of the microscope should be advanced. The detector should be sensitive and the microscope cameras have high acquisition speed. The microscopes should be able to collect as much light as possible. The specimen being observed should also maintain viability.

However, you are supposed to make high-quality considerations before selecting the imaging system. You should consider how sensitive the detector is, if the specimen is viable as well as imaging speed. The device should also be able to maximize available light for better observations and images. It should have different color codes for different proteins and components for the internal compounds.




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