in:(GONZALEZ GARCIA, Leticia)

ES201830172A
[TORNADIJO RODRIGUEZ Mª EUGENIA, COMBARROS FUERTES PATRICIA, FERNANDEZ GARCIA DOMINGO, FRESNO BARO JOSE MARIA, GONZALEZ GARCIA LETICIA, PRIETO GUTIERREZ BERNARDO, RENES BANUELOS ERICA, RIVERA GONZALEZ SILVIA] ES
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GLUTEN-FREE BREAD CONTAINING ALGAE FROM THE SPECIES HIMANTHALIA ELONGATA AND METHOD FOR PRODUCING SAID BREAD PCT/ES2019/070086
[TORNADIJO RODRIGUEZ, Mª Eugenia, COMBARROS FUERTES, Patricia, FERNANDEZ GARCIA, Domingo, GONZALEZ GARCIA, Leticia, PRIETO GUTIERREZ, Bernardo, RENES BAÑUELOS, Erica, RIVERA GONZALEZ, Silvia, FRESNO BARO, Jose Maria] Avenida de la Facultad, 2524071 LEÓN A gluten-free bread containing algae from the species Himanthalia elongata comprising flour from at least one gluten-free cereal, as basic ingredient, in addition to the following ingredients and/or additives: gluten-free sourdough, algae from the species Himanthalia elongata; water, salt, dehydrated yeast, corn starch, powdered milk, sugar, raising agent, eggs and vegetable oil, and a method for producing said gluten-free bread comprising, amongst others, the operations of prior preparation of a sourdough from a basic gluten-free ingredient, addition and mixing of ingredients to obtain a dough, a first fermentation, division of the dough and balling, moulding, final fermentation, baking, cooling and resting and packaging; and use of said bread as toasted bread. A gluten-free bread containing algae from the species Himanthalia elongata comprising flour from at least one gluten-free cereal, as basic ingredient, in addition to the following ingredients and/or additives: gluten-free sourdough, algae from the species Himanthalia elongata; water, salt, dehydrated yeast, corn starch, powdered milk, sugar, raising agent, eggs and vegetable oil, and a method for producing said gluten-free bread comprising, amongst others, the operations of prior preparation of a sourdough from a basic gluten-free ingredient, addition and mixing of ingredients to obtain a dough, a first fermentation, division of the dough and balling, moulding, final fermentation, baking, cooling and resting and packaging; and use of said bread as toasted bread.
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ES201830172A
[TORNADIJO RODRIGUEZ Mª EUGENIA, COMBARROS FUERTES PATRICIA, FERNANDEZ GARCIA DOMINGO, FRESNO BARO JOSE MARIA, GONZALEZ GARCIA LETICIA, PRIETO GUTIERREZ BERNARDO, RENES BANUELOS ERICA, RIVERA GONZALEZ SILVIA] ES
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ES201000058A
[TEJERO MONZON JUAN IGNACIO, DIEZ MONTERO RUBEN, ESTEBAN GARCIA ANA LORENA, LOBO GARCIA DE CORTAZAR AMAYA, TEMPRANO GONZALEZ JAVIER, RODRIGUEZ HERNANDEZ LETICIA] ES
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Anoxico-anaerobio biological reactor for the elimination of wastewater nutrients (Machine-translation by Google Translate, not legally binding) ES201000058A
[TEJERO MONZON JUAN IGNACIO, DIEZ MONTERO RUBEN, ESTEBAN GARCIA ANA LORENA, LOBO GARCIA DE CORTAZAR AMAYA, TEMPRANO GONZALEZ JAVIER, RODRIGUEZ HERNANDEZ LETICIA] ES Biological reactor (1) for elimination of nutrients from wastewater characterized by being vertically subdivided into three zones, anoxic (3), anaerobic (2) and clarification (4), which fulfill the functions of biological elimination of organic matter and phosphorus, denitrification and decantation. Increasing wastewater flow when the entrance (13) occurs in the lower anaerobic zone, and exit (14) in the upper clarification zone. It must be installed preceding another aerobic process for nitrification and refining of organic matter whose effluent is recirculated to produce the anoxic conditions. It has systems for mixing and agitation of anaerobic and anoxic zones, and recirculation of solids between both. The necessary facilities for wastewater treatment with elimination of nutrients are reduced and simplified. There is no consumption of reagents. It optimizes the use of organic matter from wastewater. An effluent with low pollutant load is obtained. (Machine-translation by Google Translate, not legally binding)
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APPLYING SURFACE OFFSET TO A THREE-DIMENSIONAL OBJECT PCT/US2020/044236
[GONZALEZ MARTIN, Sergio, FREIRE GARCIA, Manuel, RUBIO CASTILLO, Leticia] 10300 Energy DriveSpring, Texas 77389 A method is described in which model data describing a three-dimensional object is received. A first offset is applied to a surface of the object, the first offset being applied to the model data. The model data is converted to voxel data, and a second offset is applied to the surface of the object, the second offset being applied to the voxel data. A method is described in which model data describing a three-dimensional object is received. A first offset is applied to a surface of the object, the first offset being applied to the model data. The model data is converted to voxel data, and a second offset is applied to the surface of the object, the second offset being applied to the voxel data.
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Geometrical transformations in additive manufacturing US17417784
[Sergio Gonzalez Martin, Manuel Freire Garcia, Leticia Rubio Castillo] US TX Spring In an example, a method includes receiving, at least one processor, voxelised object model data describing at least part of an intended fabrication chamber content to be generated using additive manufacturing. The voxelised object model data may be derived from a first data set modelling a first object as 2D slices and a second data set modelling a second object as a 3D mesh. Data within the voxelised object model data which is derived from the first data set may be identified, and a geometrical transformation may be applied thereto.
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GEOMETRICAL TRANSFORMATIONS IN ADDITIVE MANUFACTURING US17417784
[Sergio Gonzalez Martin, Manuel Freire Garcia, Leticia Rubio Castillo] US TX Spring In an example, a method includes receiving, at least one processor, voxelised object model data describing at least part of an intended fabrication chamber content to be generated using additive manufacturing. The voxelised object model data may be derived from a first data set modelling a first object as 2D slices and a second data set modelling a second object as a 3D mesh. Data within the voxelised object model data which is derived from the first data set may be identified, and a geometrical transformation may be applied thereto.
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APPLYING SURFACE OFFSET TO A THREE-DIMENSIONAL OBJECT US18013820
[Sergio Gonzalez Martin, Manuel Freire Garcia, Leticia Rubio Castillo] US US,TX,Spring A method is described in which model data describing a three-dimensional object is received. A first offset is applied to a surface of the object, the first offset being applied to the model data. The model data is converted to voxel data, and a second offset is applied to the surface of the object, the second offset being applied to the voxel data.
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Procedure for obtaining glycosylate products involves biosynthesis of desoxy-sugars 1-olivosa, 1-oleandrosa and 1-ramosa (Machine-translation by Google Translate, not legally binding) ES9901435A
[AGIRREZABALAGA GONZALEZ IGNACI, OLANO ALVAREZ CARLOS, ALLENDE VEGA NEREA, RODRIGUEZ GARCIA LETICIA, FERNANDEZ BRANA ALFREDO, MENDEZ FERNANDEZ CARMEN] ES The procedure for obtaining glycosylate products involves the biosynthesis of desoxy-sugars 1-olivosa, 1-oleandrosa and l-ramosa, the plasmids being so constructed that they can direct the biosynthesis. Also a strain of streptomyces albus is constructed which contains in its chromosome the gene of resistance to erythromycin and a gene (oleG11) which codifies a glycosyl transferase which enables it to glycosylate macrocyclic lactone rings. (Machine-translation by Google Translate, not legally binding)
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