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991.
目的 研究慢性"炎症性"肺动脉高压大鼠在肺动脉高压形成过程中肺动脉蛋白激酶C(PKC)亚型的表达.方法 建立野百合碱诱导的慢性"炎症性"肺动脉高压大鼠模型,应用Western blot技术检测肺动脉高压形成过程中大鼠肺动脉四种PKC亚型(PKCα、PKCβⅡ、PKCδ和PKCε)的表达变化.结果 PKCα、PKCβⅡ和PKCδ亚型在正常和肺动脉高压大鼠肺动脉中均有表达,而PKCε亚型未检测到.在肺动脉高压形成过程中,大鼠肺动脉胞浆和胞膜组分表达的PKCα均逐渐上升,到第14天达到高峰后略有下降,且胞膜表达量的升高远比胞浆明显.胞浆PKCβⅡ和PKCδ表达量均在第8天达最高,而胞膜中二者均表现出持续升高的趋势.结论 PKCα、PKCβⅡ和PKCδ亚型可能参与了慢性"炎症性"肺动脉高压的形成,其表达变化可能与其转位有关. 相似文献
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It has been possible, by employing a new color reaction for methylpentoses, to determine the fucose content of individual hog and human blood group A, B, and O substances. The data indicate an inverse correlation between fucose content of the hog A and O substances and ability to cross-react with Type XIV antipneumococcus serum. The human A, B, and O substances display no correlation between their fucose content and ability to cross-react with Type XIV antipneumococcus serum. 相似文献
996.
Performance measurement of the microPET focus 120 scanner. 总被引:6,自引:0,他引:6
Jin Su Kim Jae Sung Lee Ki Chun Im Su Jin Kim Seog-Young Kim Dong Soo Lee Dae Hyuk Moon 《Journal of nuclear medicine》2007,48(9):1527-1535
The microPET Focus 120 scanner is a third-generation animal PET scanner dedicated to rodent imaging. Here, we report the results of scanner performance testing. METHODS: A (68)Ge point source was used to measure energy resolution, which was determined for each crystal and averaged. Spatial resolution was measured using a (22)Na point source with a nominal size of 0.25 mm at the system center and various off-center positions. Absolute sensitivity without attenuation was determined by extrapolating the data measured using an (18)F line source and multiple layers of absorbers. Scatter fraction and counting rate performance were measured using 2 different cylindric phantoms simulating rat and mouse bodies. Sensitivity, scatter fraction, and noise equivalent counting rate (NECR) experiments were repeated under 4 different conditions (energy window, 250 approximately 750 keV or 350 approximately 650 keV; coincidence window, 6 or 10 ns). A performance phantom with hot-rod inserts of various sizes was scanned, and several animal studies were also performed. RESULTS: Energy resolution at a 511-keV photopeak was 18.3% on average. Radial, tangential, and axial resolution of images reconstructed with the Fourier rebinning (FORE) and filtered backprojection (FBP) algorithms were 1.18 (radial), 1.13 (tangential), and 1.45 mm full width at half maximum (FWHM) (axial) at center and 2.35 (radial), 1.66 (tangential), and 2.00 mm FWHM (axial) at a radial offset of 2 cm. Absolute sensitivities at transaxial and axial centers were 7.0% (250 approximately 750 keV, 10 ns), 6.7% (250 approximately 750 keV, 6 ns), 4.0% (350 approximately 650 keV, 10 ns), and 3.8% (350 approximately 650 keV, 6 ns). Scatter fractions were 15.9% (mouse phantom) and 35.0% (rat phantom) for 250 approximately 750 keV and 6 ns. Peak NECR was 869 kcps at 3,242 kBq/mL (mouse phantom) and 228 kcps at 290 kBq/mL (rat phantom) at 250 approximately 750 keV and 6 ns. Hot-rod inserts of 1.6-mm diameter were clearly identified, and animal studies illustrated the feasibility of this system for studies of whole rodents and mid-sized animal brains. CONCLUSION: The results of this independent field test showed the improved physical characteristics of the F120 scanner over the previous microPET series systems. This system will be useful for imaging studies on small rodents and brains of larger animals. 相似文献
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998.
Peder E Z Larson Steven M Conolly John M Pauly Dwight G Nishimura 《Magnetic resonance in medicine》2007,58(5):952-961
Ultrashort echo time (UTE) imaging is a technique that can visualize tissues with sub-millisecond T(2) values that have little or no signal in conventional MRI techniques. The short-T(2) tissues, which include tendons, menisci, calcifications, and cortical bone, are often obscured by long-T(2) tissues. This paper introduces a new method of long-T(2) component suppression based on adiabatic inversion pulses that significantly improves the contrast of short-T(2) tissues. Narrow bandwidth inversion pulses are used to selectively invert only long-T(2) components. These components are then suppressed by combining images prepared with and without inversion pulses. Fat suppression can be incorporated by combining images with the pulses applied on the fat and water resonances. Scaling factors must be used in the combination to compensate for relaxation during the preparation pulses. The suppression is insensitive to RF inhomogeneities because it uses adiabatic inversion pulses. Simulations and phantom experiments demonstrate the adiabatic pulse contrast and how the scaling factors are chosen. In vivo 2D UTE images in the ankle and lower leg show excellent, robust long-T(2) suppression for visualization of cortical bone and tendons. 相似文献
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1000.
改良犬原位背驮式肝移植的解剖学观察 总被引:1,自引:0,他引:1
目的观察犬肝脏解剖学特点,探索建立改良的犬同种异体原位背驮式肝移植模型。方法对15只杂交犬的肝脏进行活体和尸体标本的解剖观察。结果犬肝共分7叶,门静脉分左右支进入肝脏,门静脉左支供应约70%肝组织(Ⅰ、Ⅱ、Ⅲ、Ⅳ、Ⅴ叶),门静脉右支供应约30%肝组织(Ⅵ、Ⅶ叶),分别阻断门静脉左、右支后5 min左右门静脉压力达到峰值,并迅速回复至门静脉正常压力值上限范围内;肝动脉和胆管与门静脉分支伴行进入各肝叶;左肝静脉粗大,可以作为肝静脉重建的流出道,其余3~6支肝静脉可以分别结扎,肝后下腔静脉易于与肝脏分离。结论犬肝的解剖学特点适宜于建立改良的原位背驮式肝移植模型。 相似文献