Methods for SEM inspection of fluid containing samples
A method of visualizing a sample in a wet environment including introducing a sample into a specimen enclosure in a wet environment and scanning the sample in the specimen enclosure in a scanning electron microscope, thereby visualizing the sample.
1. A sample container system comprising:
a plurality of sample containers comprising:
an electron beam permeable, fluid impermeable membrane; and
a peripheral enclosure sealed to said membrane and defining with said membrane at least one of said plurality of sample containers; and
a sample container closure for engagement with said at least one of said sample containers; and
a support for supporting said at least one of said sample containers wherein said membrane defines a surface of a sample receiving volume.
2. A sample container system according to claim 1 and wherein said support comprises a light transparent portion underlying said membrane, whereby light microscopy may be carried out on samples in said at least one of said sample containers while they are supported in said support.
3. A sample container system according to claim 1 and wherein said support comprises at least one liquid reservoir for holding liquid useful in maintaining humidity of a sample in said at least one of said sample containers while supported in said support.
4. A sample container system according to claim 1 and wherein said at least one of said sample containers is provided with a suction device and pipettes.
5. A sample container system according to claim 4 and wherein said pipettes are provided with collar elements to prevent inadvertent engagement of said pipettes with said membrane.
6. A sample container system according to claim 1 and comprising a SEM and at least one automatic manipulator for automatically positioning said at least one of said sample containers in at least one desired position with respect to said SEM.
7. A sample container system comprising:
an enclosure defining a multiplicity of apertures arranged in an array for electron or light communication therethrough;
at least one electron beam or light permeable, fluid impermeable membrane disposed over said multiplicity of apertures,
said enclosure and said at least one membrane defining a multiplicity of sample dishes, each including at least a portion of said at least one membrane, and
said multiplicity of apertures being arranged with respect to said at least one membrane for electron or light communication through said at least one membrane with interiors of said sample dishes.
8. A sample container system comprising:
a SEM including an electron gun having an electron output aperture;
a sample dish assembly defining a dish aperture for electron communication therethrough, said sample dish assembly including an electron beam permeable, fluid impermeable membrane which at least partially defines a sample enclosure, said sample dish assembly being sealed to said electron gun at said electron output aperture.
9. A sample container system according to claim 8 and wherein said electron gun directs electrons through said electron output aperture in a generally vertically upward direction and said sample dish assembly with said membrane and said dish aperture is facing generally vertically downward.