Mostrando postagens com marcador Musas Cientistas. Mostrar todas as postagens
Mostrando postagens com marcador Musas Cientistas. Mostrar todas as postagens

quinta-feira, 20 de novembro de 2008

Dr. Kiki Sanford

Eu tenho uma baita tara por mulheres cientistas, e fico muito feliz quando descubro mais uma celebridade da ciência de beleza estonteante. A última, comentada aqui no blog, havia sido a psicóloga, neurocientista e atriz Natalie Portman, graduada em Harvard, com pesquisas sobre ativação do lobo frontal e até um artigo sobre produção enzimática de hidrogênio a partir do açúcar.




Agora, a minha mais nova paixão é a Dra. Kirsten Sanford, ou simplesmente Kiki Sanford (para os íntimos, damn!). Ela é PhD em Fisiologia Celular e Molecular pela Universidade da Califórnia em Davis, na qual leciona, pesquisando nos temas de neurofisiologia da cognição e da memória. Ela é uma cietista super pop que aparece em vários programas, devidamente linkados na wikipedia, e administra um site com fotos e pesquisas suas chamado The Bird's Brain.

Eu nunca acredito quando as pessoas dizem qeu inteligência é afrodisíaco, mas devo confessar que é verdade. Nossa.

terça-feira, 12 de agosto de 2008

Artigos da Natalie Portman

Vocês sabiam que a Natalie Portman é psicóloga? E ainda por cima, cientista? Pois é, descobri isso no blog SEMCIÊNCIA, e consegui os dois artigos dela publicados, sob o nome de Natalie Harshleg. Particularmente, tenho uma queda por mulheres cientistas, e adoro saber fofocas bizarras sobre as celebridades, o que me motivou a postar isso tudo. O mais legal é que os artigos dela são interessantes, e são muito mais ciência do que o que é produzido no nosso Instituto de Psicologia.



Title: Frontal lobe activation during object permanence: Data from near-infrared spectroscopy



Author(s): Baird AA, Kagan J, Gaudette T, Walz KA, Hershlag N, Boas DA
Source: NEUROIMAGE 16 (4): 1120-1126 AUG 2002
Document Type: Article
Language: English
Cited References: 24 Times Cited: 23
Abstract: The ability to create and hold a mental schema of an object is one of the milestones in cognitive development. Developmental scientists have named the behavioral manifestation of this competence object permanence. Convergent evidence indicates that frontal lobe maturation plays a critical role in the display of object permanence, but methodological and ethical constrains have made it difficult to collect neurophysiological evidence from awake, behaving infants. Near-infrared spectroscopy provides a noninvasive assessment of changes in oxy- and deoxyhemoglobin and total hemoglobin concentration within a prescribed region. The evidence described in this report reveals that the emergence of object permanence is related to an increase in hemoglobin concentration in frontal cortex.


A Simple Method To Demonstrate the Enzymatic Production of Hydrogen from Sugar


Natalie Hershlag Syosset High School, Syosset, NY 11791
Ian Hurley Department of Obstetrics and Gynecology, North Shore University Hospital, Manhasset, NY 11030
Jonathan Woodward Chemical Technology Division, Oak Ridge National Laboratory, Oak Ridge, TN 37831-6194
October 1998 Vol. 75 No. 10p. 1270

Full Text (PDF)


Abstract
There is current interest in and concern for the development of environmentally friendly bioprocesses whereby biomass and the biodegradable content of municipal wastes can be converted to useful forms of energy. For example, cellulose, a glucose polymer that is the principal component of biomass and paper waste, can be enzymatically degraded to glucose, which can subsequently be converted by fermentation or further enzymatic reaction to fuels such as ethanol or hydrogen. These products represent alternative energy sources to fossil fuels such as oil. Demonstration of the relevant reactions in high-school and undergraduate college laboratories would have value not only in illustrating environmentally friendly biotechnology for the utilization of renewable energy sources, such as cellulosic wastes, but could also be used to teach the principles of enzyme-catalyzed reactions. In the experimental protocol described here, it has been demonstrated that the common sugar glucose can be used to produce hydrogen using two enzymes, glucose dehydrogenase and hydrogenase. No sophisticated or expensive hydrogen detection equipment is required-only a redox dye, benzyl viologen, which turns purple when it is reduced. The color can be detected by a simple colorimeter. Furthermore, it is shown that the renewable resource cellulose, in its soluble derivative from carboxymethylcellulose, as well as aspen-wood waste, is also a source of hydrogen if the enzyme cellulase is included in the reaction mixture.