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Biomedical subjects

H Newesely

Publications and source records attributed to H Newesely.

At least 19 recordsLinked to original sources

[The importance of the choice of materials and their design for the efficacy of orthodontic appliances].

The aim of this study is to stress the importance of correct selection of materials for orthodontic appliances, and thereby emphasize the functional relationship between choice and use of material. The outlined state of the art is the result of carefully-conducted research, the development of which has been briefly mentioned; however, the type of problem resulted from critical observations by orthodontic practitioners who apply the research results for the benefit of their patients.

Dental Alloys

[Inhibition of hard dental plaques by reactive components of dentifrices].

Active components of toothpastes which are intended to inhibit plaque mineralization are discussed with their physiological and chemical implications on the formation and calcification of dental plaque. The decisive factors are defined as part of the biocrystallographic reactivity in the oral milieu.

Dental Calculus

[Enamel abrasion and enamel tears by porcelain brackets].

Orthodontic brackets manufactured of poly- or monocrystalline alumina ceramics are aesthetically appealing, but unfortunately show disadvantages for clinical application primarily causing (1) Abrasions of the enamel of antagonistic teeth, and (2) Tear-outs of the underlying enamel through debonding. To determine whether hardness and/or textural and structural qualities of the ceramics (as characterized by SEM investigations) are responsible for the deleterious clinical effects of abrasion, the amount of decrease of the height of human enamel-molar-cusps was measured. Enamel loss was shown to be significantly more than 100 microns at 10 min. operating time in an abrasive testing device. Also debonding of the ceramic brackets proved to be problematic. Whereas metals and polymeric brackets allow some deflection of the material in addition to the tensile stress, separating the bracket from the enamel at the bracket-to-adhesive interface, or within the adhesive composite, the lacking workability in the ceramic brackets may induce a shift of the break-line during debonding to the adhesive-enamel interface or even into the dental enamel. Development and clinical application of ceramic brackets should improve safety for the enamel. Regardless of ceramic brand the abrasiveness endangers enamel through ceramic/enamel interferences. To avoid tear-out defects, brackets should debond at the ceramic-adhesive interface.

Dental Bonding

[Crystal chemical and micromorphologic evaluation of ancient bone discoveries (Arabia Petraea, Jordan) from the 10th millennium B.C].

As specialisations of osteoarchaeometry become increasingly developed, so the need of new analytical techniques and tests of a skillful applicability becomes more necessary. The crystal-chemical and micromorphological evaluations of preserved bone discoveries implicate reliable methods as X-ray diffraction, electron microscopy, and spectroscopy with the skeletal materials and the soil environment in which bones are found. The reactivity of soils varies widely as geological and sedimentological conditions offer typical but different environments: gravels, chalk soil, clay, salt soils, sands, cave earths are examples of this wide variety, including atmospheric and biogenetic implications. The last mentioned features are strongly effective also in aride regions, with the well known fluctations of high parching and dewiness. However, despite the diversity in deposition and burial modes only few parameters govern the gradual decomposition of bone material: 1. pH value of the surrounding medium; 2. humidity of the surrounding medium, may be governed directly by autolysis; 3. transport of matter, related to grain size, pore volume, solubility behaviour; 4. physical pressure; 5. destruction by microorganisms; as well as the surrounding medium will be altered by the uptake and the transformation of the products of bone decomposition. The materials of investigation were skeletal fragments buried of ea. 10,000 a within the soft dune sediment of the western border mountains of Wadi el Araba (Arabia Petraea, Jordan). The discovered bones are, as a common feature of this locality Basta, strongly sintered--indication on the afore mentioned reactivity of the aride soil as well. Bone fragments were partially burnt at Sabra locality and discolored, and sintered also at these circumstances. The reactivity of the bone fragments is shown in terms of exchange reactions within the crystal structure of the bone mineral, apatite Ca5(PO4)3OH at the calcium sites, hydroxyl sites, and phosphate sites. These reaction schemes are interpreted in the details. This decomposition by substitution will often preserve the external appearance of buried bones. Fig. 1 and 2 show the extent of the actual ion exchange with the surrounding soil strata resp. transformed areas (sinter sheets); in the case of Basta material as a nearly total rearrangement of the anion lattice (phosphate, silicate vs. carbonate) as well as verified by Scanning-electron microscopy (Fig. 3, 4) and phase analyses by X-ray diffraction (Fig. 5-7): calcite and quartz are the principal components of the sinters, additional diffuse apatite lines appear in bone samples.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

[Review of implantation materials].

The use of nonmetalic, ceramic materials has led to encouraging developments. Some metal implants have proved to be more reliable in general practice in respect to the mechanics and statics; part of the developmental goal however should include compound materials. Metal implants, tolerated by the organism under favorable conditions, were not accepted as well as the ceramic material. Recently, the long-term prognosis therefore has been viewed with reservation. Even though the tensile values were favorable, the mechanical properties were good, and the corrosion rate in terms of adequate tissue tolerance was generally satisfactorily low for metal, the organism still responded to metal as a foreign body.

Biocompatible Materials

[Natural fluorides. The distinction between technically produced and naturally occurring fluorides in caries prophylaxis].

In the controversial discussion of the bio-availability of fluoride in caries prophylaxis by fluoridation, fluorides coming from the geochemical circulation to the biochemical circulation are sometimes differentiated from synthetic fluorides introduced into fluoride medication. The question as to whether such a differentiation is essential can be answered from the physical-chemical point of view. This requires a wide field of scientific research starting with geochemistry and the knowledge of fluoride deposits, sedimentology, hydrology, technology of inorganic and organic fluorine compounds, thermodynamics of dissolved fluorides, up to biocrystallography and biochemistry of fluorine.

Biological Availability