Abstract:
PROBLEM TO BE SOLVED: To provide a musculoskeletal loading system for vibrationally stimulating bone and muscle tissue.SOLUTION: A system 10 comprises: a pair of supports that are spaced from each other and engage opposing ends of a limb; a tension member engaging at least one of the supports and moving the at least one of the supports in a direction of compression so as to reduce a distance between the supports; a joint restraint 26 that restricts movement of the limb in a direction perpendicular to the direction of compression; and a vibration unit 16 that transmits vibrations in a direction parallel to the direction of compression.
Abstract:
Solvents for macromolecules generally believed to be insoluble in their pristine form are identified by generation of a “solvent resonance” in the relationship between solvent quality (deduced by Rayleigh scattering) and an intrinsic property of solvents. A local extreme of the solvent resonance identifies the ideal intrinsic property of an ideal solvent which may then be used to select a particular solvent or solvent combination. A solvent for graphene is used in the production of transparent conductive electrodes.
Abstract:
Solvents for macromolecules generally believed to be insoluble in their pristine form are identified by generation of a "solvent resonance" in the relationship between solvent quality (deduced by Rayleigh scattering) and an intrinsic property of solvents. A local extreme of the solvent resonance identifies the ideal intrinsic property of an ideal solvent which may then be used to select a particular solvent or solvent combination. A solvent for graphene is used in the production of transparent conductive electrodes. {00341379.DOC /} 59 26b-, ,,26c 26a 26d 61'0 24 -- -_ - - 24c 2848 63 6 24d 24b - 2 2 20 12 4030L 342 16 46 3 44 2 .-- 3 61' 61-- -64 ( /I
Abstract:
Methods of using orally active benzodiazepine derivatives and their salts are disclosed. These compounds and their salts have anticonvulsant and anxiolytic activity with reduced sedative, hypnotic, muscle relaxant, or ataxic effects.
Abstract:
Solvents for macromolecules generally believed to be insoluble in their pristine form are identified by generation of a 'solvent resonance' in the relationship between solvent quality (deduced by Rayleigh scattering) and an intrinsic property of solvents. A local extreme of the solvent resonance identifies the ideal intrinsic property of an ideal solvent which may then be used to select a particular solvent or solvent combination. A solvent for graphene is used in the production of transparent conductive electrodes.
Abstract:
The present invention provides compositions and methods of using stereospecific benzodiazepine derivatives, their salts and prodrugs for the treatment of anxiolytic or convulsant disorders having the side effects of reduced alcohol craving in human alcoholics and a concomitant reduced sedative, hypnotic, muscle relaxant and ataxic side-effects. The invention further provides pharmaceutical compositions for treatment of anxiolytic and convulsant disorders in subjects in need thereof, comprising a compound, prodrug or a salt having a chemical structure represented by any one of Formula I-IV, VI-XI, XV-XVIII and XX-XXI and a pharmaceutically-acceptable carrier.
Abstract:
The present invention provides molecules and methods for the prevention and/or treatment of memory deficit related conditions and/or enhancement of cognizance. In a preferred embodiment, the invention includes compounds, salts and prodrugs thereof for the prevention and/or treatment of these conditions.
Abstract:
Methods for forming stable, suspended nanomembranes are provided. Also provided are stable, suspended nanomembranes made using the methods and electronic devices that incorporate the stable, suspended nanomembranes as electronically active layers. The methods utilize stiction-aided nanomembrane flattening combined with ultraviolet (UV) radiation-induced adhesion enhancement.
Abstract:
A pseudocapacitor (10) employs plates (12, 14) having an active material (20) of a nanoparticles sized ceramic mixed ionic-electronic conductor such as may have the nominal formula of ABO 3 , A 2 BO 4 , AB 2 O 4 , and AO 2 , where A and B are metals. The active material may be prepared to promote sublattice vacancies to provide for the storage of additional charge.
Abstract translation:假电容器(10)使用具有纳米颗粒尺寸的陶瓷混合离子电子导体的活性材料(20)的板(12,14),例如可以具有标称式ABO 3,A 2 BO 4,AB 2 O 4和A 2 O,其中A和B 是金属。 可以制备活性材料以促进亚晶格空位以提供额外电荷的储存。