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101.
102.
Intratumoral Thermal Reading During Photo‐Thermal Therapy by Multifunctional Fluorescent Nanoparticles 下载免费PDF全文
Elisa Carrasco Blanca del Rosal Francisco Sanz‐Rodríguez Ángeles Juarranz de la Fuente Patricia Haro Gonzalez Ueslen Rocha Kagola Upendra Kumar Carlos Jacinto José García Solé Daniel Jaque 《Advanced functional materials》2015,25(4):615-626
The tremendous development of nanotechnology is bringing us closer to the dream of clinical application of nanoparticles in photothermal therapies of tumors. This requires the use of specific nanoparticles that must be highly biocompatible, efficient light‐to‐heat converters and fluorescent markers. Temperature reading by the heating nanoparticles during therapy appears of paramount importance to keep at a minimum the collateral damage that could arise from undesirable excessive heating. In this work, this thermally controlled therapy is possible by using Nd3+ ion‐doped LaF3 nanocrystals. Because of the particular optical features of Nd3+ ions at high doping concentrations, these nanoparticles are capable of in vivo photothermal heating, fluorescent tumor localization and intratumoral thermal sensing. The successful photothermal therapy experiments here presented highlight the importance of controlling therapy parameters based on intratumoral temperature measurements instead of on the traditionally used skin temperature measurements. In fact, significant differences between intratumoral and skin temperatures do exist and could lead to the appearance of excessive collateral damage. These results open a new avenue for the real application of nanoparticle‐based photothermal therapy at clinical level. 相似文献
103.
PbS/CdS/ZnS Quantum Dots: A Multifunctional Platform for In Vivo Near‐Infrared Low‐Dose Fluorescence Imaging 下载免费PDF全文
Antonio Benayas Fuqiang Ren Elisa Carrasco Vicente Marzal Blanca del Rosal Belete A. Gonfa Ángeles Juarranz Francisco Sanz‐Rodríguez Daniel Jaque José García‐Solé Dongling Ma Fiorenzo Vetrone 《Advanced functional materials》2015,25(42):6650-6659
Over the past decade, near‐infrared (NIR)‐emitting nanoparticles have increasingly been investigated in biomedical research for use as fluorescent imaging probes. Here, high‐quality water‐dispersible core/shell/shell PbS/CdS/ZnS quantum dots (hereafter QDs) as NIR imaging probes fabricated through a rapid, cost‐effective microwave‐assisted cation exchange procedure are reported. These QDs have proven to be water dispersible, stable, and are expected to be nontoxic, resulting from the growth of an outer ZnS shell and the simultaneous surface functionalization with mercaptopropionic acid ligands. Care is taken to design the emission wavelength of the QDs probe lying within the second biological window (1000–1350 nm), which leads to higher penetration depths because of the low extinction coefficient of biological tissues in this spectral range. Furthermore, their intense fluorescence emission enables to follow the real‐time evolution of QD biodistribution among different organs of living mice, after low‐dose intravenous administration. In this paper, QD platform has proven to be capable (ex vivo and in vitro) of high‐resolution thermal sensing in the physiological temperature range. The investigation, together with the lack of noticeable toxicity from these PbS/CdS/ZnS QDs after preliminary studies, paves the way for their use as outstanding multifunctional probes both for in vitro and in vivo applications in biomedicine. 相似文献
104.
Yolanda HedbergOskar Karlsson Peter SzakalosInger Odnevall Wallinder 《Materials Letters》2011,65(14):2089-2092
Electron Backscatter Diffraction (EBSD) studies clearly revealed a different crystallographic structure of the smallest particle size fraction of gas-atomized AISI 316 L stainless steel powder (< 4 μm) compared with larger sized fractions of the same powder (< 45 μm). Despite similar chemical compositions, the predominating structure of the smallest particle size fraction was ferritic (i.e., has ferromagnetic properties) whereas the larger sized particle fractions and massive 316 L revealed an expected austenitic and non-magnetic structure. From these findings, it follows that direct magnetic separation can be applied to separate very fine sized particles. These structural differences explain previously observed dissimilarities from corrosion and metal release perspectives. 相似文献
105.
Puyol D Monsalvo VM Mohedano AF Sanz JL Rodriguez JJ 《Journal of hazardous materials》2011,185(2-3):1059-1065
Anaerobic treatment of pre-settled cosmetic wastewater in batch and continuous experiments has been investigated. Biodegradability tests showed high COD and solid removal efficiencies (about 70%), being the hydrolysis of solids the limiting step of the process. Continuous treatment was carried out in an upflow anaerobic sludge blanket reactor. High COD and TSS removal efficiencies (up to 95% and 85%, respectively) were achieved over a wide range of organic load rate (from 1.8 to 9.2g TCODL(-1)day(-1)). Methanogenesis inhibition was observed in batch assays, which can be predicted by means of a Haldane-based inhibition model. Both COD and solid removal were modelled by Monod and pseudo-first order models, respectively. 相似文献
106.
Ocón E Gutiérrez AR Garijo P Santamaría P López R Olarte C Sanz S 《Journal of food science》2011,76(3):M169-M174
This paper studies the presence of mold in the air of a vinification and ageing wine cellar. The influence of other factors such as the time of year, the sampling point, and the activity being carried out in the cellar has been analyzed. Neither the type of activity being carried out in the cellar nor the temperature or relative humidity fluctuations throughout the year are determining factors in the presence of mold in the air. For this group of microorganisms, the design of the cellar studied is the fundamental factor. Areas with little ventilation favor high levels of relative humidity and, hence, a higher presence of mold in the air. The mold population in these areas is not very diverse, which indicates that colonization by certain types of mold that have adapted to the conditions established therein is permanent. Areas with greater air flow, constant activity, and frequent cleaning show lower mold populations in the air and of a more varied composition. PRACTICAL APPLICATION: This work shows that given the growing importance of the presence of mold in wine cellars, the design thereof should take into account suitable ventilation of all the areas and control of the relative humidity. Hence, the presence of traditional underground areas for ageing wine, which is justifiable in seasons where temperature and humidity control lead to major technical problems, should be reconsidered in the design of new wine cellars. 相似文献
107.
Sheyla Rehecho Mikel García-Iñiguez de Cirano Iciar Astiasarán Rita Yolanda Cavero 《LWT》2011,44(4):875-882
Aqueous and hydroalcoholic extracts from Verbena officinalis L. were obtained and characterised. The analysis by HPLC-DAD and LC-MS allowed the detection and identification of three iridoids, fifteen flavonoids and four phenolic acid derivatives. Four flavonoids, scutellarein 7-diglucuronide (9), scutellarein 7-glucuronide (13), pedalitin 6-galactoside (15) and scutellarein 7-glucoside (19) are reported for the first time from this plant. In addition, three new flavonoids have been isolated: scutellarein 7-O-(2-O-feruloyl)-diglucuronide (5), pedalitin 6-O-diglucuronide (6) and pedalitin 6-O-(2-O-feruloyl)-diglucuronide (13). To our knowledge, these flavonoids have not been reported as natural products. Both extracts showed significant antioxidant activity using three in vitro model systems and the results have been correlated with total phenolic and total flavonoid contents. The results have allowed establishing an important relation structure-activity and significant correlations have also been found between the mineral content and the flavonoids present in both extracts. 相似文献
108.
Alain BissonierChristian Chauveau Jean-Louis DelfauChristian Vovelle Yolanda Diaz De Mera 《Combustion and Flame》2002,129(3):239-252
An experimental study of the combustion of technical 1,2,3,4-tetrachlorobenzene has been carried out in conditions closely similar to those in incinerators of industrial hazardous wastes. A non-premixed flame fed by a fuel spray was stabilized in a reactor heated electrically. Measurements of axial and radial temperatures and species concentration profiles in well-defined conditions have been systematically repeated to specify the influence exerted by key parameters on the efficiency of the thermal degradation process. The reactor’s wall temperature was varied from 1223 to 1363 K. Air injection was distributed between axial and peripheral injectors to change the swirl intensity. Two fuel injectors have been compared to assess the influence of atomization efficiency. A methane-air pilot flame helped to anchor the flame and to decrease the overall Cl/H ratio. The latter was also decreased by addition of water vapor. Results show that conditions leading to a complete consumption of the fuel can be associated with very limited carbon conversion into CO2 and chlorine conversion into HCl. 相似文献
109.
Structural Test Approach for Embedded Analog Circuits Based on a Built-in Current Sensor 总被引:1,自引:1,他引:0
Román Mozuelos Yolanda Lechuga Mar Martínez Salvador Bracho 《Journal of Electronic Testing》2011,27(2):177-192
This paper presents a test method based on the analysis of the dynamic power supply current, both quiescent and transient,
of the circuit under test. In an off-chip measurement, the global interconnect impedance associated with the chip package
and the test equipment and, also, the chip input/output cells will complicate the extraction of the information provided by
the current waveform of the circuit under test. Thus, the supply current is measured on-chip by a built-in current sensor
integrated in the die itself. To avoid the effective reduction of the voltage supply, the measurement is performed in parallel
by replicating the current that flows through selected branches of the analog circuit. With the aim of reducing the test equipment
requirements, the built-in current sensor output generates digital level pulses whose width is related to the amplitude and
duration of the circuit current transients. In this way the defective circuit is exposed by comparing the digital signature
of the circuit under test with the expected one for the fault-free circuit. A fault evaluation has been carried out to check
the efficiency of the proposed test method. It uses a fault model that considers catastrophic and parametric faults at transistor
level. Two benchmark circuits have been fabricated to experimentally verify the defect detection by the built-in current sensor.
One is an operational amplifier; the other is a structure of switched current cells that belongs to an analog-to-digital converter. 相似文献
110.
In this research, the polar decomposition (PD) method is applied to experimental Mueller matrices (MMs) measured on two-dimensional microstructured surfaces. Polarization information is expressed through a set of parameters of easier physical interpretation. It is shown that evaluating the first derivative of the retardation parameter, δ, a clear indication of the presence of defects either built on or dug in the scattering flat surface (a silicon wafer in our case) can be obtained. Although the rule of thumb thus obtained is established through PD, it can be easily implemented on conventional surface polarimetry. These results constitute an example of the capabilities of the PD approach to MM analysis, and show a direct application in surface characterization. 相似文献