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Search Results: 1 - 10 of 113633 matches for " John W. Hayman "
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Mediator Subunit 12 Is Required for Neutrophil Development in Zebrafish
Maria-Cristina Keightley, Judith E. Layton, John W. Hayman, Joan K. Heath, Graham J. Lieschke
PLOS ONE , 2011, DOI: 10.1371/journal.pone.0023845
Abstract: Hematopoiesis requires the spatiotemporal organization of regulatory factors to successfully orchestrate diverse lineage specificity from stem and progenitor cells. Med12 is a regulatory component of the large Mediator complex that enables contact between the general RNA polymerase II transcriptional machinery and enhancer bound regulatory factors. We have identified a new zebrafish med12 allele, syr, with a single missense mutation causing a valine to aspartic acid change at position 1046. Syr shows defects in hematopoiesis, which predominantly affect the myeloid lineage. Syr has identified a hematopoietic cell-specific requirement for Med12, suggesting a new role for this transcriptional regulator.
Buruli Ulcer (M. ulcerans Infection): New Insights, New Hope for Disease Control
Paul D. R Johnson ,Timothy Stinear,Pamela L. C Small,Gerd Pluschke,Richard W Merritt,Francoise Portaels,Kris Huygen,John A Hayman,Kingsley Asiedu
PLOS Medicine , 2005, DOI: 10.1371/journal.pmed.0020108
Abstract:
Correction: Buruli Ulcer (M. ulcerans Infection): New Insights, New Hope for Disease Control
Paul D. R Johnson,Timothy Stinear,Pamela L. C Small,Gerd Pluschke,Richard W Merritt,Francoise Portaels,Kris Huygen,John A Hayman,Kingsley Asiedu
PLOS Medicine , 2005, DOI: 10.1371/journal.pmed.0020173
Abstract:
角域内全纯函数的值分布
W.K.Hayman
科学通报 , 1980,
Abstract: 1.设函数f(z)在角域S=S(α,β)={z|α≤2rgz≤β,|z|>0}内全纯,并且对于某正数λ,f(z~λ)在z=0处是全纯的。又设S′=S(α′,β′) (α<α′<β′<β)。记n(r,a,S)为角域S(r)={z|z∈S,|z|
角域内全纯函数的值分布*
W.K.Hayman,杨乐
科学通报 , 1980,
Abstract:
Constructing Carmichael numbers through improved subset-product algorithms
W. R. Alford,Jon Grantham,Steven Hayman,Andrew Shallue
Mathematics , 2012,
Abstract: We have constructed a Carmichael number with 10,333,229,505 prime factors, and have also constructed Carmichael numbers with k prime factors for every k between 3 and 19,565,220. These computations are the product of implementations of two new algorithms for the subset product problem that exploit the non-uniform distribution of primes p with the property that p-1 divides a highly composite \Lambda.
A Very Solid Fuel: Ferrous Iron Oxide as a Geochemical Energy Source  [PDF]
John W. Halloran
Natural Resources (NR) , 2015, DOI: 10.4236/nr.2015.62010
Abstract: Ferrous iron oxides, present in abundant minerals such as olivines, can be oxidized to ferric iron oxide to produce more energy per unit oxygen than carbon and hydrogen. These “geofuels” are essentially inexhaustible. Energy might be extracted from geofuels by using the ferrous iron oxide to reduce fluids for use in a fuel cell. Water can be reduced by geofuels, producing hydrogen fuel. Ferrous iron oxide containing rocks are abundant, but diluted with inert oxides. Exploiting them requires new technologies to extract the energy and handle the oxidized mineral residues.
Improved Efficiency of Heat Exchange Using KELEA Activated Water  [PDF]
W. John Martin
Open Journal of Energy Efficiency (OJEE) , 2015, DOI: 10.4236/ojee.2015.42004
Abstract: An environmental force termed KELEA (kinetic energy limiting electrostatic attraction) is postulated to reduce the strength of intermolecular (hydrogen) bonding of water molecules, resulting in increased kinetic activity of the water. While regular water does not directly absorb KELEA from the environment, various dipolar compounds with separated electrical charges can seemingly act as a primary antenna for KELEA, with secondary transfer of energy into nearby water. Moreover, once sufficiently activated, the separated electrical charges in activated water can apparently function as a receiver for KELEA, leading to further activation of the water and also to the activation of added water. Prior publications have addressed the agricultural and potential clinical benefits of using KELEA activated water. This article is intended as the first in a series of papers describing useful industrial applications of KELEA activated water. The focus of the present paper is on the improved efficiency of industrial water heating and cooling systems by using KELEA activated water provided by pelleted, ground and heated volcanic rock as supplied by Kiko Technology.
KELEA: A Natural Energy That Seemingly Reduces Intermolecular Hydrogen Bonding in Water and Other Liquids  [PDF]
W. John Martin
Open Journal of Biophysics (OJBIPHY) , 2015, DOI: 10.4236/ojbiphy.2015.53006
Abstract: The alternative cellular energy (ACE) pathway was initially identified as a non-immunological defense mechanism against virus infections. It is particularly relevant to the suppression of stealth adapted viruses, which are not normally recognized by the cellular immune system. Many of the methods able to enhance the ACE pathway are consistent with the transfer of a natural energy to the body’s fluids. Additional support for this premise is provided in this paper. The vapor pressure and rate of evaporation of activated water, ethanol and gasoline increase to beyond atmospheric pressure over time. The term KELEA (kinetic energy limiting electrostatic attraction) is proposed for a natural energy that increases the volatility of fluids, seemingly through the loosening of intermolecular hydrogen bonding. KELEA activated fluids have many potential health, agricultural and industrial applications, as well as providing the opportunity for fundamental research.
Stealth Adapted Viruses: A Bridge between Molecular Virology and Clinical Psychiatry  [PDF]
W. John Martin
Open Journal of Psychiatry (OJPsych) , 2015, DOI: 10.4236/ojpsych.2015.54035
Abstract: Cytopathic “stealth-adapted” viruses bypass the cellular immune defense mechanisms because of molecular deletion or mutation of critical antigen coding genes. They, therefore, do not provoke the inflammatory reaction typical of infections with the conventional viruses from which stealth adapted viruses are derived. Stealth adapted viruses establish persistent, systemic virus infections, which commonly involve the brain. The brain damage can cause major mood and cognitive disorders, fatigue, seizures and various manifestations of an impaired autonomic nervous system. Symptoms can also result from: 1) induced autoimmunity, 2) antibody formation against virus antigens, 3) virus-induced cellular damage to non-brain tissues and 4) induced heightened overall immune reactivity, such that normally unrecognized components of the virus begin to become targeted by the cellular immune system. This last mechanism is relevant to the reported neurological and psychiatric adverse effects of vaccination in certain individuals. It is also appropriate to consider the infectious component of stealth adapted virus infections since family members and others may be at risk for becoming infected.
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