Insights into the chemical composition of Equisetum hyemale by high resolution Raman imaging.

scientific article published on 5 December 2007

Insights into the chemical composition of Equisetum hyemale by high resolution Raman imaging. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1007/S00425-007-0671-3
P932PMC publication ID2756348
P698PubMed publication ID18057960
P5875ResearchGate publication ID5790184

P50authorNotburga GierlingerQ21264471
Lanny SapeiQ80143520
P2093author name stringOskar Paris
P2860cites workThe anomaly of silicon in plant biologyQ28362203
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Fourier transform infrared microspectroscopy is a new way to look at plant cell wallsQ33241743
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Biosilicification: the role of the organic matrix in structure control.Q34086274
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Got silicon? The non-essential beneficial plant nutrientQ35130146
A new attempt to study biomineralised silica bodies in Dactylis glomerata L.Q40625430
Identification of secondary metabolites in medicinal and spice plants by NIR-FT-Raman microspectroscopic mapping.Q45085236
Biomineral-silica-induced zeolitization of Equisetum arvenseQ46286972
Spatial tissue distribution of polyacetylenes in carrot rootQ46506118
Tissue-specific accumulation of carotenoids in carrot roots.Q50734628
Approaches to understanding the functional architecture of the plant cell wall.Q52133466
SAFETY FACTORS IN VERTICAL STEMS: EVIDENCE FROM EQUISETUM HYEMALE.Q52243925
Evidence for intramineral macromolecules containing protein from plant silicas.Q52320238
Chemical imaging of poplar wood cell walls by confocal Raman microscopyQ61702991
Silicification of developing internodes in the perennial scouring rush (Equisetum hyemale var. affine)Q68681805
Structure of silica in Equisetum arvenseQ73357046
FT Raman microscopy of untreated natural plant fibresQ74227661
Fourier-Transform Raman and Fourier-Transform Infrared Spectroscopy (An Investigation of Five Higher Plant Cell Walls and Their Components)Q74790375
Silicon alleviates the deleterious salt effect on tomato plant growth by improving plant water statusQ79732877
Biomechanics and functional anatomy of hollow-stemmed sphenopsids. I. Equisetum giganteum (Equisetaceae)Q84470098
P433issue5
P921main subjectEquisetum hyemaleQ263881
P304page(s)969-980
P577publication date2007-12-05
P1433published inPlantaQ15762724
P1476titleInsights into the chemical composition of Equisetum hyemale by high resolution Raman imaging
P478volume227

Reverse relations

cites work (P2860)
Q392410123D confocal Raman imaging of endothelial cells and vascular wall: perspectives in analytical spectroscopy of biomedical research.
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