In the cell culture lab, microscopes are not just used to see a clear picture, but more often to help the experimenter quickly judge the cell state. For example, whether cells are well walled, integrated or not, whether there is significant contamination in the cultured cylindrical, and whether the generational period needs to be advanced, is a matter of daily observation. Nikon TS2 microscopes are more suitable for these conventional cellular observation scenarios, especially for active cell screening under transparent containers such as incubator bottles, tectonics, and perforated plates. Unlike the positive microscope, the observation direction of the reverse microscope is more suitable for cell culture containers. The tester does not have to take the samples out for reprogramming, nor does he need to move the cultured cells more frequently, and can observe the morphology of the walled cells at the bottom by placing them on the stage. This is about the cell room, the medicine.
In the cell culture lab, microscopes are not just used to see a clear picture, but more often to help the experimenter quickly judge the cell state.
For example, whether cells are well walled, integrated or not, whether there is significant contamination in the cultured cylindrical, and whether the generational period needs to be advanced, is a matter of daily observation.
Nikon TS2 microscopes are more suitable for these conventional cellular observation scenarios, especially for active cell screening under transparent containers such as incubator bottles, tectonics, and perforated plates.
Unlike the positive microscope, the observation direction of the reverse microscope is more suitable for cell culture containers.
The tester does not have to take the samples out for reprogramming, nor does he need to move the cultured cells more frequently, and can observe the morphology of the walled cells at the bottom by placing them on the stage.
This is more relevant for cell wards, drug-sifting experiments, teaching laboratories and, in general, biological experimental platforms.
For users who observe multiple samples on a daily basis, it is often more important for equipment to operate smoothly, for the light to be stable and for the focus to be comfortable than simply pursuing complex functions.
In terms of basic configuration, a routinely used Nikon TS2 microscope is usually configured around the mainframe, a perforation light, an observation lens, a carrying table and a common multiplication lens.
Common observations can be used in microscopes, which are low to medium, for rapid viewing of cell distribution, walling and overall density.
If, in experiments, it is often necessary to look at more nuanced cell forms, such as cell margins, sudden changes or local contamination, a more appropriate multiplier mirror may be added depending on the sample type.
It is not recommended here to look only at multipliers, but whether the work distance, the field-of-view level and the bottom thickness of the container match can also affect the actual observation experience.
In terms of scalable configurations, there can be a gradual increase in experimental demand. (b) General cell culture observations, with open field configurations already meeting many of the day-to-day tasks; if it is necessary to raise the symmetrical sense of non-chromosomal cells, it is possible to consider a lined or similar way of enhancing the comparison;
If the experiment involves fluorescent tags, conversion efficiency judgements or simple fluorescent screening, fluorescent observation configuration needs to be considered.
Digital cameras and imaging software can also be added to the scenes that require the retention of pictures, the preparation of experimental records or the presentation of results to clients.
In the case of the carrier table, the operation will also be more stable if a multi-pore plate or different specifications are regularly observed, such as a mechanical platform, a sample package, etc.
The type is selected by extrapolating the configuration from the sample container.
It is generally sufficient to see mainly incubators and petrizers, with the basic carrier table and the usual microscopes; if the porosity plate is used at a high frequency, attention is paid to the ease of moving and locating the platform; if subsequent fluorescent experiments are possible, it is recommended that the fluorescent upgrade space be taken into account at the outset to avoid later modification constraints.
Laboratory space also takes into account the fact that cell rooms, near ultra-purification stations, are not usually suitable for large, complex equipment, and a compact and stable airframe will be more economical.
In general, Nikon TS2 microscopes are more suitable for applications such as day-to-day cellular observation, teaching experiments, routine laboratory records and basic fluorescent extension.
It is not a substitute for a platform for high-end active cell imaging, but rather a solution to the real problem of “during the day, with stability, and with little difficulty of operation”.
Users do not have to go up and down when they are configured, first to think clearly about the observation approach, the sample container, whether they take photographs, whether they need fluorescent or not, and then to choose a combination of the mainframe, lighting, the carrier table and the microscope, which would make it easier to produce a formula suitable for their own experimental processes.
