01372nam2-2200409---450-99000602690020331620150506123704.0000602690USA01000602690(ALEPH)000602690USA0100060269020150415d1905----km-y0itay50------baitaIT||||||||001yy<<Parte seconda:>> Stato generale sociologico e giuridico del furtoVincenzo ManziniTorinoUTET1905-volumi22 cmVol. 1: Il furto nella sociologia . - VI, 614 p.Vol. 2: Il furto nel diritto penale odierno . - XX, 624 p.200120010010006026812001Trattato del furtoFurtoBNCF364.162MANZINI,Vincenzo224785ITsalbcISBD990006026900203316XV.2.CA. 74 2.16496 F.C.XV.2.CA. 74 2/369349XV.2.CA. 74 2.26495 F.C.XV.2.CA. 74 2/369350XV.2.CA. 74 2.2a6906 F.C.XV.2.CA. 74 2/375389BKCUOMOGIGLIO9020150415USA011035FIORELLA9020150421USA011239GIGLIO9020150506USA011237Stato generale sociologico e giuridico del furto1077767UNISA06490nam 22007095 450 991013598370332120200629203843.0981-10-2155-410.1007/978-981-10-2155-8(CKB)3710000000909294(DE-He213)978-981-10-2155-8(MiAaPQ)EBC4722293(PPN)19632131X(EXLCZ)99371000000090929420161020d2017 u| 0engurnn|008mamaatxtrdacontentcrdamediacrrdacarrierTopics in Biomedical Gerontology /edited by Pramod C. Rath, Ramesh Sharma, S. Prasad1st ed. 2017.Singapore :Springer Singapore :Imprint: Springer,2017.1 online resource (XXI, 355 p. 77 illus.)981-10-2154-6 1. Identification of serum sirtuins as novel non-invasive protein markers for frailty -- 2.Age-related morphological changes in the human pancreas -- 3.Changing population of neurons and glia in the human cochlear nucleus during aging -- 4.Age-related changes in the expression level of insulin-like growth factor-1 and its related signaling pathway in mice -- 5.Differential expression of arginase I and its regulation by dexamethasone in the liver of mice as a function of age -- 6.Molecular and cellular basis of memory enhancing effects ofBacopa monnieri extract on diabetes mellitus induced memory impairment in mice -- 7.Brain aging and oxidative pathology -- 8.Antiepileptic potential of dehydroepiendrosterone (DHEA) -- 9.Curcumin attenuates memory impairment by modulating the expression of CamKIIα during aging -- 10.Dietary restriction, an intervention for healthy aging -- 11.Study of anti-ageing property of moringaoleifera leaves in fish brain -- 12.Alterations in the structure and function of the chromatin during aging -- 13.Postnatal exposure of PBDE-209 impairs spatial memory in young mice:Relation of glutamate and oxidant-antioxidant homeostasis in the frontal cortex and hippocampus -- 14.Differential expression of long intergenic noncoding RNA (lincRNA) in the rat brain during aging -- 15.Dietary restriction up-regulates expression and activity of cardiac and skeletal muscle inorganic pyrophosphatase in mice as a function of age -- 16.Age-related changes in rat kidney antioxidant enzymes and oxidative stress parameters with special reference to catalase promoter methylation pattern -- 17.Recovery of age-related memory loss: hopes and challenges -- 18.Electrophysiological ageing of the brain : Ageing-related impairments in neuronal and cognitive functions -- 19.Role of autophagy in life-extension using Dictyostelium discoideum as a model system -- 20.SIRT-1: An emerging target for age-related neurodegenerative diseases -- 21.Neuroinflammation and the aging brain -- 22.Expression and regulation of Pax6 in brain of aging mice -- 23.Basic tenets of Ayurvedic Gerontology -- 24.Potential use of Ashwagandha (Withania somnifera) for alleviation of old age-associated problems.This book presents a collection of articles on various aspects of current research on aging. These include model systems, cellular, biochemical and molecular aspects of experimental aging research, as well as selected intervention studies on age-related diseases. Aging is a global challenge to human society. Children are always in a hurry to become adults, while adults produce offspring and add to the gene pool. However, after adulthood or the attainment of reproductive maturity, all physiological parameters of the living organism start to undergo the aging process. Old age sets in slowly but surely, and usually continues for a prolonged period. If vigor and vitality are the main advantages of adulthood, old age offers the rewards of experience and maturity. Biologists ask questions such as: Why do we age? How do we become old? Is it possible to slow down, postpone or even prevent aging? In turn, medical experts ask: What are the diseases associated with old age? Are there medicines that can help affected elderly patients? In fact both groups are asking themselves how can we add more health to old age. Healthy aging is the dream of every individual. But to achieve this, it is fundamental that we first understand the cellular, biochemical and molecular basis of the aging process in mammalian cells, tissues and intact living organisms, which can serve as experimental model systems in Biomedical Gerontology. Once the biology of aging is understood at the genetic and molecular levels, interventional approaches to aging and its associated diseases may be easier to plan and implement at the preclinical level.GeriatricsRegenerative medicineTissue engineeringGeriatric nursingHuman geneticsMetabolismMolecular biologyGeriatrics/Gerontologyhttps://scigraph.springernature.com/ontologies/product-market-codes/H33150Regenerative Medicine/Tissue Engineeringhttps://scigraph.springernature.com/ontologies/product-market-codes/L16080Geriatric Carehttps://scigraph.springernature.com/ontologies/product-market-codes/H41020Human Geneticshttps://scigraph.springernature.com/ontologies/product-market-codes/B12008Metabolomicshttps://scigraph.springernature.com/ontologies/product-market-codes/L15030Molecular Medicinehttps://scigraph.springernature.com/ontologies/product-market-codes/B1700XGeriatrics.Regenerative medicine.Tissue engineering.Geriatric nursing.Human genetics.Metabolism.Molecular biology.Geriatrics/Gerontology.Regenerative Medicine/Tissue Engineering.Geriatric Care.Human Genetics.Metabolomics.Molecular Medicine.618.97612.67Rath Pramod Cedthttp://id.loc.gov/vocabulary/relators/edtSharma Rameshedthttp://id.loc.gov/vocabulary/relators/edtPrasad Sedthttp://id.loc.gov/vocabulary/relators/edtBOOK9910135983703321Topics in Biomedical Gerontology1759886UNINA04220nam 22005655 450 991033762860332120200704183335.03-030-04158-110.1007/978-3-030-04158-8(CKB)4100000007595565(MiAaPQ)EBC5651752(DE-He213)978-3-030-04158-8(PPN)23380207X(EXLCZ)99410000000759556520190128d2019 u| 0engurcnu||||||||txtrdacontentcrdamediacrrdacarrierHigh Velocity Microparticles in Space Influence Mechanisms and Mitigating Effects of Electromagnetic Irradiation /by Anatoly Belous, Vitali Saladukha, Siarhei Shvedau1st ed. 2019.Cham :Springer International Publishing :Imprint: Springer,2019.1 online resource (320 pages)3-030-04157-3 Chapter 1. Problems with Obtaining Materials for the Protection of Integrated Circuits From High-Velocity Streams of Microparticles and Possible Solutions -- Chapter 2. Methods and Equipment for Studying the Processes of Interaction of High-Velocity Streams of Microparticles with Materials -- Chapter 3. Effects of Exposure to High-Velocity Streams of Microparticles -- Chapter 4. Changes in the Structure and Properties of Single- and Multilayer Materials under the Influence of a High-Velocity Stream of Microparticles -- Chapter 5. Special Aspects of the Production Technology for Multilayer Protective Materials used in the Integrated Circuit Packaging -- Chapter 6. Method of Protection From Electromagnetic Radiation -- Chpater 7. Environmental Friendly Method of Production of Nanocomposites and Nanomembranes.This book describes for readers the protection of electronic hardware in space vehicles from the negative effects of space dust and electromagnetic irradiation. The authors explain the mechanisms of “space dust” (high velocity particles in space), the effects on the on-board electronic hardware of space vehicles, and development of protection methods from these influences on humans, equipment and microcircuits. Coverage includes hard-to-find technical information on the design of special boosters for accelerating microparticles to space velocities, techniques for conducting experiments on Earth, data processing, and practical examples. The authors also discuss fabrication technologies and composition of special, radio absorbent materials for protecting space vehicles from the electromagnetic irradiation. Provides a single-source reference on the effects on space vehicles of “space dust” and electromagnetic irradiation; Discusses the design of special boosters for acceleration of micro-particles to space velocities, for experimentation and testing on Earth; Includes information about fabrication technologies and composition of special, radio absorbent materials for protecting space vehicles from the electromagnetic irradiation.Electronic circuitsElectronicsMicroelectronicsNanotechnologyCircuits and Systemshttps://scigraph.springernature.com/ontologies/product-market-codes/T24068Electronics and Microelectronics, Instrumentationhttps://scigraph.springernature.com/ontologies/product-market-codes/T24027Nanotechnologyhttps://scigraph.springernature.com/ontologies/product-market-codes/Z14000Electronic circuits.Electronics.Microelectronics.Nanotechnology.Circuits and Systems.Electronics and Microelectronics, Instrumentation.Nanotechnology.604.7629.472Belous Anatolyauthttp://id.loc.gov/vocabulary/relators/aut904000Saladukha Vitaliauthttp://id.loc.gov/vocabulary/relators/autShvedau Siarheiauthttp://id.loc.gov/vocabulary/relators/autBOOK9910337628603321High Velocity Microparticles in Space2294600UNINA