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At least 37 records · Page 2Linked to original sources

Microwave surgical treatment of the prostate: clinical application of microwave surgery as a tool for improved prostatic electroresection.

Microwave surgery as a tool for improved prostatic electroresection is introduced. Prior to electroresection the prostate was coagulated with 2,450 MHz of microwave which was emitted from the bipolar electrode of a specially designed probe. We conducted a comparative study of 35 patients with bladder neck obstruction. There was a microwave coagulation group treated with subsequent transurethral resection (TUR) and a conventional TUR group. Both groups were analyzed for the amount of blood loss, irrigant absorption and the frequency of complications. Both during and following surgery, the former group had a significant reduction in blood loss and had no complications. We conclude that the combination procedure of microwave coagulation and TUR can minimize the disadvantage of formal TUR and may be of value in the treatment of patients with both prostatic obstruction and of hemorrhagic diathesis as well as in high risk patients.

Adenocarcinoma↗

Microwave applications in classical staining methods in formalin-fixed human brain tissue: a comparison between heating with microwave and conventional ovens.

The quality of microwave adaptations of three classical neuroanatomical staining methods (the Nissl, Klüver-Barrera and Häggqvist stains) was tested on frozen serial sections from human brain specimens which has been stored for up to 10 years in 10% formalin. The conclusion was that the use of microwave irradiation reduces processing time and/or concentrations of the chemicals used, whereas the light microscopical quality of the stains considered is equal or improved as compared to their original counterparts. Next, a comparison was made between microwave adapted stains and classical procedures, which, except for the use of a conventional oven as heat source together with pre-heated solutions, were entirely identical. It appeared, that at light microscopical level no difference can be appreciated between the effect of internally (using microwave irradiation) and externally (using a conventional oven) supplied heat on the staining result.

Brain↗

[Germ reduction by microwaves--microwave specific effects].

A commercial 2450-MHz microwave oven has been used to inactivate microorganisms in pharmaceutical solutions and auxiliary materials. The present investigation is concerned with the possible existence of a specific microwave effect, potentiating the thermal effect of microwave irradiation. Bacillus subtilis suspensions in polyethylenglycol 300, distilled water and peanut oil were used. It is shown that microwave heating is significantly more lethal to Bacillus subtilis microorganisms than equivalent conventional heating.

Bacillus subtilis↗

Microwaves and the cell membrane. II. Temperature, plasma, and oxygen mediate microwave-induced membrane permeability in the erythrocyte.

Microwaves (2450 MHz) are shown to increase 22Na permeability of rabbit erythrocytes for exposures only within the narrow temperature range of 17.7 to 19.5 degrees C (Tc) which coincides with a nonlinearity in the Arrhenius plot reflecting an apparent membrane phase transition. Significantly, this response is not observed for cholesterol-loaded erythrocyte membranes which exhibit a linear Arrhenius plot and no apparent phase transition at Tc. The permeability increase at Tc is a nonlinear function of absorbed power but is a linear function of the internal electric field strength of the sample and saturates at approximately 400 mW/g and 600 V/m, respectively. The permeability increase was found to be reversible and transient in that immediately following termination of exposure sodium influx is significantly reduced but returns to normal within 60 min. Extracellular factors exert a significant influence on the microwave effect. The presence of plasma markedly potentiates the increase in 22Na permeability at Tc. Oxygen also modulates the microwave effect with relative hypoxia (5 mm Hg) and hyperoxia (760 mm Hg) enhancing the permeability increase. In contrast, the presence of two antioxidants, ascorbic acid or mercaptoethanol, inhibits the effect. These findings raise important questions about the physical and chemical nature of microwave interactions with cell membranes and also shed light on earlier studies reporting either positive or negative effects on membrane permeability.

Animals↗

Fast and versatile microwave-assisted intramolecular Heck reaction in peptide macrocyclization using microwave energy.

We have revisited the intramolecular Heck reaction and investigated the microwave-assisted macrocyclization on preformed peptides using a model series of ring-varying peptides acryloyl-Gly-[Gly](n)-Phe(4-I)NHR; n = 0-4. The method was applied to both solution and solid supported cyclizations. We demonstrate that the intramolecular Heck reaction can be performed in peptides both in solution and solid support using a modified domestic microwave within 1 to 30 minutes in DMF under reflux with moderate yields ranging from 15 to 25% for a scale between 2-45 mg of linear precursors. The approach was applied to the synthesis of a constrained biologically relevant peptidomimetic bearing an Arg-Gly-Asp (RGD) sequence. These results make the microwave-assisted Heck reaction an attractive renovated approach for peptidomimetics.

Amino Acid Sequence↗

The microwave absorption of emulsions containing aqueous micro- and nanodroplets: a means to optimize microwave heating.

The microwave absorption at frequencies between 10 MHz and 4 GHz is measured for aqueous brine droplets dispersed in a dielectric medium (epsilon(')=2.0). By varying the size of the droplets, ion type and ion concentration, it is found that the microwave absorption goes through a maximum which depends on the type of ions and their concentration. The absorption process is attributed to the polarization of the microdroplets through surface charges. Means to optimize microwave heating in emulsions is discussed.

Electric Capacitance↗

Microwave parallel library generation: comparison of a conventional- and microwave-generated substituted 4(5)-sulfanyl-1H-imidazole library.

A methodology for the microwave parallel synthesis of libraries is described. The procedure involves the use of an array of expandable reaction vessels, which can accommodate pressure buildup within the vessel due to heating without loss of volatile solvents or reagents. A demonstration 24-membered library of substituted 4(5)-sulfanyl-1H-imidazoles was generated by both conventional and microwave procedures, achieving a reduction from 12 h to 16 min in library generation time for the microwave approach.

Combinatorial Chemistry Techniques↗

Generation of microwave-induced plasmas in automotive exhaust gas mixtures using pulsed microwave energy.

Microwave energy at 2.45 GHz was applied to a mixture of exhaust gases from a petrol engine at atmospheric pressure. It was found that by pulsing the microwave energy with a 50% duty cycle, the average power required to sustain a microwave-induced plasma discharge was decreased by about 40%. The ratio of absorbed to incident power was unaffected. These findings were confirmed for pulse frequencies from 10 to 300 Hz.

Air Pollutants↗

Effects of moisture content, hybrid variety, kernel size, and microwave wattage on the expansion volume of microwave popcorn.

This study investigated several independent variables affecting the expansion volume of microwave popcorn; (a) different hybrids were used, (b) hybrids were popped at different moisture contents, (c) microwave ovens with various wattages were employed, and (d) kernels were separated by size. The greatest expansion volume was achieved with Hunt-Wesson 214 at 11% moisture. Overall, the large-capacity bag and the 1000-watt microwave oven produced the greatest expansion volume. Medium-sized kernels produced the greatest expansion volume.

Cooking↗

Electro-magnetic fields in the home environment (color TV, computer monitor, microwave oven, cellular phone, etc) as potential contributing factors for the induction of oncogen C-fos Ab1, oncogen C-fos Ab2, integrin alpha 5 beta 1 and development of cancer, as well as effects of microwave on amino acid composition of food and living human brain.

The effects, on normal human subjects, of 3 minutes exposure to electro-magnetic fields (EMFs) emitted from: A) personal computers, B) color television sets, or C) microwave-ovens, or cellular phones were compared by placing the same large sheet of aluminum foil with a square hole or rectangular band-shaped hole at the chest level (or at the side of the head with the cellular phone), with or without grounding the aluminum foil, using the Bi-Digital O-Ring Test Dysfunction Localization and Molecular Identification Methods with cancer related substances (i.e., Oncogen C-fos Ab2 and mercury in the cell nucleus, Integrin alpha 5 beta 1 in the cell & nuclear membranes, and disappearance of Acetylcholine) as reference control substances. All the above sources of the EMFs not only induced the following various transitional abnormalities on the EMF entry area, but also induced similar abnormalities at the EMF exit area on the back (where the abnormality was found in the same shape as exposed EMF entry area, and the effect lasted for a shorter time than the entry point of the EMF): A) Exposure of the body at about 50 cm from the monitor of some of the typical personal computers resulted in: A1) decrease in Acetylcholine; A2) appearance of circulatory disturbance with the appearance of Thromboxane B2; A3) short-lasting appearance of Oncogen C-fos Ab2; A4) short-lasting appearance of Oncogen C-fos Ab1, though it lasted longer than C-fos Ab2; A5) no appearance of Integrin alpha 5 beta 1. B) part of the chest was exposed at a distance between 1 meter and up to 3 meters from a color television sized anywhere from 13'' to 21'', resulting in: B1) decrease in Acetylcholine; B2) appearance of circulatory disturbance with the appearance of Thromboxane B2; B3) short-lasting appearance of Oncogen C-fos Ab2; B4) short-lasting appearance of Oncogen C-fos Ab1, though it lasted longer than C-fos Ab2; B5) very short-lasting appearance of Integrin alpha 5 beta 1. C) When body was exposed, at a distance of 0.5m-2 meters, to microwaves emitted as leakage from a small microwave oven (about 2.45 GHz with 450 Watt output), the effects usually lasted about 2 to 3 times the exposure time at the exposed area and 1.6 to 2 times the exposure time at the back of the body at the EMF exit area.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetylcholine↗

Microwave-assisted frozen section diagnosis. A comparison between conventional cryostat technique and the combination of freezing and microwave-stimulated fixation.

The study evaluates the morphology of frozen tissue sections treated by microwave-stimulated fixation compared with unfixed cryostat sections. Furthermore, microwave fixation has been compared with fixation at room temperature. Improved preservation of nuclear structures (chromatin pattern and nucleoli) was found with the microwave combination, while other parameters were indistinguishable from the unfixed cryostat sections. Fixation at room temperature showed no difference compared with the unfixed cryostat sections. The combined method might be useful in rapid diagnosis of mesenchymal tumors, lymphoid proliferations and tumors of the CNS.

Cell Nucleus↗

Microwave-assisted ring-closing metathesis revisited. On the question of the nonthermal microwave effect.

The ring-closing metathesis reactions (RCM) of six standard diene substrates leading to five-, six-, or seven-membered carbo- or heterocycles were investigated under controlled microwave irradiation. RCM protocols were performed with standard Grubbs type II and a cationic ruthenium allenylidene catalyst in neat and ionic liquid-doped methylene chloride under sealed vessel conditions. Very rapid conversions (15 s) were achieved utilizing 0.5 mol % Grubbs II catalyst under microwave conditions. Careful comparison studies indicate that the observed rate enhancements are not the result of a nonthermal microwave effect.

Journal Article↗

Quantitative microwave imaging with a 2.45-GHz planar microwave camera.

This paper presents microwave tomographic reconstructions of the complex permittivity of lossy dielectric objects immersed in water from experimental multiview near-field data obtained with a 2.45-GHz planar active microwave camera. An iterative reconstruction algorithm based on the Levenberg-Marquardt method was used to solve the nonlinear matrix equation which results when applying a moment method to the electric field integral representation. The effects of uncertainties in experimental parameters such as the exterior medium complex permittivity, the imaging system geometry and the incident field at the object location are illustrated by means of reconstructions from synthetic data. It appears that the uncertainties in the incident field have the strongest impact on the reconstructions. A receiver calibration procedure has been implemented and some ways to access to the incident field at the object location have been assessed.

Algorithms↗