Plasma source mass spectrometry : applications and emerging technologies /
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| Other Authors: | , |
| Format: | Conference Proceeding eBook |
| Language: | English |
| Published: |
Cambridge :
RS. C,
[2003]
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| Series: | Special publication.
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| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- Simultaneous quantitation of specific proteins using immunoassay ICP-MS
- New challenges for ICP-MS instrumentation and data acquisition : solving problems of real life biology
- Some applications of ICP-MS in the pharmaceutical industry
- Quantitation of phosphorus in biologically active materials by ICP-MS detection of P and S with chemical resolution
- Application of sector-field ICP-MS and ICP-MS with collision cell for determination of phosphorus and iron in proteins
- Combination of ICP-MS and ion exchange chromatography permits analyses of specific cisplatin DNA modifications formed in cancer cells
- Conventional and chromatographic ICPMS analysis of cisplatin and carboplatin in plasma and plasma ultrafiltrate
- Determination, by ICP-MS, of background and BBR 3464 induced levels of platinum bound to DNA isolated from blood cells : a comparison of the sensitivity of the Perkin Elmer SCIEX ELAN 6000 and the Thermofinigan Neptune instruments
- Application of ICP-MS in environmental science
- Development of "All-ium" analytical method for water samples at Lake Biwa
- Iron and arsenic speciation in groundwaters from West Bengal, India by coupled HPLC-ICP-MS utilising a hexapole collision cell
- Coupled HPLC-ICP-MS analysis indicates highly hazardous concentrations of dissolved arsenic species in Cambodian groundwaters
- An old problem of lead contamination
- The use of different enriched isotope mixtures for the determination of butyltin compounds in environmental samples using isotope dilution GC-ICP-MS
- Determination of cerium, lead and uranium in bivalve shells using an iminodiacetate based preconcentration system and ICP-MS
- New applications for GC-ICP-MS, beyond sensitive, selective analysis of organometallic species.
- The use of a high accuracy isotope dilution mass spectrometry (IDMS) method for the analysis of sulfur in fuel to support analytical technologies used in industry
- Anglo-Saxon residential mobility at West Heslerton, North Yorkshire, UK from Combined O- and SR-isotope analysis
- The use of ICP-MS in provenancing igneous stone artefacts : examples from the southern Levant
- A routine method for the dissolution of geological samples for the analysis of REE and trace elements via ICP-MS
- Calculation methods for the determination of isotope ratios of transient signals of volatile organometallic compounds
- The uncertainty in REE determination in urine by ETV-ICP-MS : a new approach to data evaluation
- Trapped ablation mode in laser ablation ICPMS experiments for the enhancement of the signal-to-noise ratio
- Overcoming spectral overlaps : quadrupole ICP-MS with reaction cell and sector based ICP-MS
- Determination of selenium in biological samples by isotope dilution analysis octapole reaction system ICP-MS
- The York University ion-molecule reaction database : a biennial report
- Determination of Fe, Ni, Co, Cu and Zn in high-Ca samples using methane as a reaction cell gas
- Long-term performance characteristics of a plasma ionisation multi-collector mass spectrometer (PIMMS) : the Thermofinnigan Neptune
- Chemical pre-concentration procedures for high-precision analysis of HF-Nd-Sr isotopes in geological materials by plasma techniques ionisation multi-collector mass spectrometry (PIMMS)
- High precision MC-ICPMS measurement of silver isotopic compositions
- Precise and accurate determination of iron isotopes by multi-collector inductively coupled plasma mass spectrometry
- Measurement of OS isotopes using plasma ionisation multicollector mass spectrometry and a suggested scheme for the accurate determination of interfering element ratios
- High precision rhenium and platinum isotope dilution analyses by plasma ionisation multicollector mass spectrometry
- Uranium and thorium isotope ratio measurements using multiple collector inductively coupled plasma mass spectrometry with multi-ion-counting detectors.