Abstract:
A method for detecting a metabolic malady in a subject, including introducing a blood sample containing a leukocyte into an examination system, the blood sample being derived from the subject, and analyzing a quantitative feature of a lipid body in the leukocyte, wherein if a value of the quantitative feature of the lipid body in the leukocyte of the blood sample derived from the subject is significantly different than a threshold, the subject is detected as having a metabolic malady.
Abstract:
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.
Abstract:
A method for detecting a metabolic malady in a subject, including introducing a blood sample containing a leukocyte into an examination system, the blood sample being derived from the subject, and analyzing a quantitative feature of a lipid body in the leukocyte, wherein if a value of the quantitative feature of the lipid body in the leukocyte of the blood sample derived from the subject is significantly different than a threshold, the subject is detected as having a metabolic malady.
Abstract:
A B S T R A C T 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.
Abstract translation:A B S T R A C T在潮湿环境中可视化样品的方法,包括将样品引入湿环境中的样品外壳中,并在扫描电子显微镜中扫描样品外壳中的样品,从而使样品可视化。
Abstract:
A sample container assembly (100, 102) for use in a microscope including a sample enclosure, an electron permeable, fluid impermeable, membrane (110) sealing the sample enclosure from a volume outside the sample enclosure (108) and a pressure controller assembly (130) communicating between the sample enclosure and a volume outside the sample enclosure.
Abstract:
An SEM compatible sample holder having a sample enclosure element (100) with a beam permeable /fluid impermeable membrane (108) over an aperture (106) to secure a fluid sample for observation with an electron beam.
Abstract:
A SEM sample container having a sample enclosure (100, 102) including an electron beam permeable, fluid permeable membrane (132), and a peripheral enclosure sealed to the membrane, and a sample enclosure closure including a quick-connect attachment (152) for sealing engagement with the sample enclosure.
Abstract:
A sample container assembly for use in a microscope including a sample enclosure, an electron beam permeable, fluid impermeable, membrane sealing the sample enclosure from a volume outside the sample enclosure and a pressure controller assembly communicating between the sample enclosure and a volume outside the sample enclosure.
Abstract:
A SEM sample container having a sample enclosure (100, 102) including an electron beam permeable, fluid permeable membrane (132), and a peripheral enclosure sealed to the membrane, and a sample enclosure closure including a quick-connect attachment (152) for sealing engagement with the sample enclosure.
Abstract:
A SEM compatible sample container including a sample enclosure including an electron beam permeable, fluid impermeable membrane, and a peripheral enclosure sealed to the membrane and defining with the membrane the sample enclosure, and a sample enclosure closure including quick-connect attachment functionality for sealing engagement with the sample enclosure.