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Sökning: WFRF:(Sharma P) > Bokkapitel

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1.
  • Menon, Preeti K., et al. (författare)
  • Intravenous Administration of Functionalized Magnetic Iron Oxide Nanoparticles Does Not Induce CNS Injury in the Rat : Influence of Spinal Cord Trauma and Cerebrolysin Treatment
  • 2017
  • Ingår i: Nanomedicine In Central Nervous System Injury And Repair. - : Elsevier. - 9780128123812 ; , s. 47-63
  • Bokkapitel (refereegranskat)abstract
    • Influence of iron oxide magnetic nanoparticles (IOMNPs, 10nm in diameter, 0.25 or 0.50mg/mL in 100 mu L, i.v.) on the blood-brain barrier (BBB) permeability, edema formation, and neuronal or glial changes within 4-24h after administration was examined in normal rats and after a focal spinal cord injury (SCI). Furthermore, effect of cerebrolysin, a balanced composition of several neurotrophic factors, and active peptide fragments was also evaluated on IOMNP-induced changes in central nervous system (CNS) pathology. The SCI was inflicted in rats by making a longitudinal incision into the right dorsal horn of the T10-11 segments and allowed to survive 4 or 24h after trauma. Cerebrolysin (2.5 mL/kg, i.v.) was given either 30min before IOMNP injection in the 4-h SCI group or 4h after injury in the 24-h survival groups. Control group received cerebrolysin in identical situation following IOMNP administration. In all groups, leakage of serum albumin in the CNS as a marker of BBB breakdown and activation of astrocytes using glial fibrillary acidic protein was evaluated by immunohistochemistry. The neuronal injury was examined by Nissl staining. The IOMNPs alone in either low or high doses did not induce CNS pathology either following 4 or 24h after administration. However, administration of IOMNPs in SCI group slightly enhanced the pathological changes in the CNS after 24h but not 4h after trauma. Cerebrolysin treatment markedly attenuated IOMNP-induced aggravation of SCI-induced cord pathology and induced significant neuroprotection. These observations are the first to show that IOMNPs are safe for the CNS and cerebrolysin treatment prevented CNS pathology following a combination of trauma and IOMNP injection. This indicated that cerebrolysin might be used as adjunct therapy during IOMNP administration in disease conditions, not reported earlier.
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2.
  • Ravi Sharma, Dulal, 1987, et al. (författare)
  • Human Milk: Its Components and Their Immunobiologic Functions
  • 2015
  • Ingår i: Mucosal Immunology: Fourth Edition. Volume 2. - : Elsevier. - 9780124158474 ; , s. 2307-2341
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • Whereas a neonate is born is sterile, immediate exposure to its mother's mucosal surfaces allows it to acquire microflora, which plays an important role in defense against potential pathogens. This initial stimulus helps the immature immune system of the newborn to develop the capacity to respond with specific immunologic tolerance while avoiding the development of allergic and autoimmune disease. Breast-feeding provides nutritional and developmental, along with anti-infectious, advantages to the infant. The significant protection conferred by breast-feeding against varied infections such as acute and prolonged diarrhea, neonatal septicemia, respiratory tract infections, acute and recurrent otitis media, and urinary tract infections is observed worldwide. Human breast milk contains numerous components, including antibodies, cytokines, hormones, enzymes, and major proteins with multiple activities (microbicidal, tumoricidal, anti-inflammatory, autoimmune, etc.). Breast-feeding can strikingly reduce infant mortality, as well as the fertility of the breast-feeding mother. In this manner, breast-feeding provides significant benefits for lactating mothers and their offspring, in addition to society as a whole. © 2015 Elsevier Inc. All rights reserved.
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3.
  • Bryukhovetskiy, Andrey S., et al. (författare)
  • Human mind has microwave electromagnetic nature and can be recorded and processed
  • 2020
  • Ingår i: Neuropharmacology of Neuroprotection. - : ELSEVIER. - 9780128208137 ; , s. 439-463
  • Bokkapitel (refereegranskat)abstract
    • Introduction: In 2014 and 2015 Professor of neurology Andrey Bryukhovetskiy published a novel theory of the information-commutation organization of the human brain in Russia, China and the USA. The theory posits the hypothesis that the higher nervous activity (cognitive, intellectual, mnestic) of the humans and their mind are material and have microwave electromagnetic nature. The theory perceives the human mind as a result of dynamic extracortical information-commutation relations of the super-positions of the electromagnetic waves of ultra high frequency emitted by different areas of the human brain in the inter-membrane cerebrospinal fluid space of the human head at a certain period of time. The inter-membrane cerebrospinal fluid space of the human head (the space between the dura, arachnoid and pia mater filled with the cerebrospinal fluid) of about 10mm size, has all morphological attributes to realize the holography. It is a universal natural bioprocessor for processing, analysis and synthesis of the input data and their record or reproduction on the pia as on the biological holographic membrane. The theory suggested that the processes of the mind can be recorded and digitalized with the last generation contemporary microwave receptors of the UHF band. Goal: The goal is to experimentally test the theory of the information-commutation organization of the human brain, particularly, the postulate that the human mind has material, and, namely, electromagnetic nature represented by the microwave bioelectric activity; it must be detected, recorded and statistically processed, i.e. its existence must be confirmed. Methods: On their own initiative, the team of mathematicians, radioengineers and neurologists performed the non-invasive research of the electromagnetic radiation of human brain in the broad frequency range varying from 850MHz to 26.5GHz with the last generation specialized measuring equipment with high sensitivity and recording speed, specialized measuring antennas and low noise amplifying equipment in the anechoic chamber of the 1st class of protection according to the Russian system of certification GOST R 50414-92. Results: The previously unknown microwave electromagnetic radiation of the EHF/UHF range (from 1.5GHz to 4.5GHz) with signal strength of -130dBm .. -100dBm (1e(-15) .. 1e(-13) W) are discovered. The detected electromagnetic waves have zonal variations in the different areas of the human head and are absent in other areas of the human body. The method of recording of the microwave electromagnetic activity of the human brain is patented in the Russian Federation. The microwave electromagnetic activity of the brain is billion-fold different from the bioelectric activity recorded by the encephalography. Conclusion: Discovery of the phenomenon of the microwave radiation of the human brain provides evidence to the idea that thinking and mind are material. This phenomenon has the potential to become a new informational channel of the diagnostics of the functional and pathological state of the higher nervous activity of the human brain. It can provide the basis for the development of the equipment for real-time analysis of the microwave bioelectric activity of the brain in norm and pathology, for objective early diagnostics of the functional and emotional conditions as well as of the psychiatric disorders at the preclinical stage, for the biocontrol of the human brain and the artificial simulators of the human brain. It also can provide the foundation for new systems of the artificial intellect, brain-computer interface and systems of the closed-loop biomanagement of the damaged brain.
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4.
  • Rai, Radheshyam, et al. (författare)
  • Experimental Techniques: An Introductory Overview
  • 2012
  • Ingår i: Synthesis, Characterization and Application of Smart Materials. - USA : Nova Science Publishers, Inc.. - 9781614706427 ; , s. 15-30
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • Smart materials, one of the more focused points in materials research, deal primarily with the chemistry, physics and applications of materials in the real world because it induces conformational changes in complex structures and properties which are useful for the control of them. The thrust area of these types of materials are the combination of functional properties like thermal, electric, magnetic, superconducting and optical, which have led to the development of a wide range of new technological devices. These types of materials have been found to be very useful and interesting for various solid state devices. This book examines research developments of smart materials, including processing, properties and applications, which include device materials and environmentally friendly materials. (Imprint: Nova)
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10.
  • Sharma, P.K., et al. (författare)
  • Role of a heterotrophic paenibacillus polymyxa bacteria in the bioflotation of some sulfide minerals
  • 2001
  • Ingår i: Mineral biotechnology. - Littleton, Colo. : Society for Mining, Metalurgy and Exploration. - 0873352017 ; , s. 67-81
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • A pure strain of Paenibacillus polymyxa and mineral-adapted strains are used to bring about surface chemical changes on pyrite and chalcopyrite and, thus, their flotation. Paenibacillus polymyxa was adapted by repeated subculturing in the presence of pyrite and chalcopyrite. The surface chemical changes of bacteria due to adaptation and of minerals after their interaction with bacterial cultures are evaluated by electrokinetic and infrared spectroscopy and are discussed with reference to their flotation responses. Interaction of bacterial cells, bacterial metabolites and whole bacterial cultures affected the Hallimond flotation behavior of the sulfide minerals. The Xanthate flotation results show that pyrite, but not chalcopyrite, is depressed when the tests are carried out after interaction with chalcopyrite-adapted Paenibacillus polymyxa. This investigation demonstrated that the surface chemical properties of bacteria can be manipulated successfully to achieve the desired effects in the flotation process.
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