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Institution

Southern Illinois University Carbondale

EducationCarbondale, Illinois, United States
About: Southern Illinois University Carbondale is a education organization based out in Carbondale, Illinois, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 13570 authors who have published 24819 publications receiving 667385 citations. The organization is also known as: SIU Carbondale & SIUC.


Papers
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Journal ArticleDOI
TL;DR: A generalizable description of the micrometer-scale penetration mechanics and material properties of mouse brain tissue in vivo is presented and can be applied to the quantitative design of most future implantable devices.
Abstract: Substantial advancement in the understanding of the neuronal basis of behavior and the treatment of neurological disorders has been achieved via the implantation of various devices into the brain. To design and optimize the next generation of neuronal implants while striving to minimize tissue damage, it is necessary to understand the mechanics of probe insertion at relevant length scales. Unfortunately, a broad-based understanding of brain-implant interactions at the necessary micrometer scales is largely missing. This paper presents a generalizable description of the micrometer-scale penetration mechanics and material properties of mouse brain tissue in vivo. Cylindrical stainless steel probes were inserted into the cerebral cortex and olfactory bulb of mice. The effects of probe size, probe geometry, insertion rate, insertion location, animal age, and the presence of the dura and pia on the resulting forces were measured continuously throughout probe insertion and removal. Material properties (modulus, cutting force, and frictional force) were extracted using mechanical analysis. The use of rigid, incompressible, cylindrical probes allows for a general understanding of how probe design and insertion methods influence the penetration mechanics of brain tissue in vivo that can be applied to the quantitative design of most future implantable devices.

152 citations

Journal ArticleDOI
TL;DR: In this paper, the authors introduce many important soil concepts including development, classification, properties (physical, chemical, and biological), quality, and conservation, and a general understanding of soil concepts and these interwoven relationships is essential to making sound land management decisions.
Abstract: Soil is a non-renewable dynamic natural resource that is essential to life. Water movement, water quality, land use, and vegetation productivity all have relationships with soil. This article introduces many important soil concepts including development, classification, properties (physical, chemical, and biological), quality, and conservation. A general understanding of soil concepts and these interwoven relationships is essential to making sound land management decisions.

152 citations

Journal ArticleDOI
TL;DR: In this paper, an experimental study on the exchange bias properties of bulk polycrystalline Ni50Mn50−xSnx Heusler alloys has been performed.
Abstract: An experimental study on the exchange bias properties of bulk polycrystalline Ni50Mn50−xSnx Heusler alloys has been performed. Martensitic transformations have been observed in the alloys for some critical Sn concentrations. The alloys, while in their respective martensitic phases, are found to exhibit exchange bias effect. Shifts in hysteresis loops of up to 225Oe were observed in the 50kOe field cooled samples. The observed exchange bias behavior in Ni50Mn50−xSnx is attributed to the coexistence of antiferromagnetic and ferromagnetic exchange interactions in the system.

152 citations

Journal ArticleDOI
TL;DR: In this review, transformation using markers not based on antibiotic or herbicide resistance genes, as well as different systems of marker gene deletion, are discussed.
Abstract: Selectable marker genes (SMGs) have been extraordinarily useful in enabling plant transformation because of the low efficiency of transgene integration. The most used SMGs encode proteins resistant to antibiotics or herbicides and use negative selection, i.e., by killing nontransgenic tissue. However, there are perceived risks in wide-scale deployment of SMG-transgenic plants, and therefore research has recently been performed to develop marker-free systems. In this review, transformation using markers not based on antibiotic or herbicide resistance genes, as well as different systems of marker gene deletion, are discussed.

151 citations

Journal ArticleDOI
TL;DR: The topography of the ISW2–nucleosome was delineated by finding which of theISW2 subunits are proximal to specific sites within the linker and nucleosomal DNA regions by site‐directed DNA photoaffinity labeling.
Abstract: Linker DNA was found to be critical for the specific docking of ISW2 with nucleosomes as shown by mapping the physical contacts of ISW2 with nucleosomes at base-pair resolution. Hydroxyl radical footprinting revealed that ISW2 not only extensively interacts with the linker DNA, but also approaches the nucleosome from the side perpendicular to the axis of the DNA superhelix and contacts two disparate sites on the nucleosomal DNA from opposite sides of the superhelix. The topography of the ISW2–nucleosome was further delineated by finding which of the ISW2 subunits are proximal to specific sites within the linker and nucleosomal DNA regions by site-directed DNA photoaffinity labeling. Although ISW2 was shown to contact ∼63 bp of linker DNA, a minimum of 20 bp of linker DNA was required for stable binding of ISW2 to nucleosomes. The remaining ∼43 bp of flanking linker DNA promoted more efficient binding under competitive binding conditions and was functionally important for enhanced sliding of nucleosomes when ISW2 was significantly limiting.

151 citations


Authors

Showing all 13607 results

NameH-indexPapersCitations
Pulickel M. Ajayan1761223136241
Russel J. Reiter1691646121010
Derek R. Lovley16858295315
Martin B. Keller13154165069
Kurunthachalam Kannan12682059886
John P. Giesy114116262790
Michael L. Blute11252745296
Jianjun Liu112104071032
Janusz Pawliszyn10978852082
Wei Zhang104291164923
Horst Zincke10137530818
Janet R. Daling10035431957
Eric Lam9949234893
Sergei V. Kalinin9599937022
John C. Cheville9043332806
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202319
202279
2021718
2020691
2019732
2018806