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1.
解兰昌  章海军 《生理学报》1991,43(6):530-536
本文利用激光散斑屈光测试系统详细探讨了夜近视(night myopia)的产生机制。夜近视在环境亮度降低到产生暗视觉时出现,并随亮度继续降低而增大,平均值为1.35D。实验证明眼睛球差和色差不是造成夜近视的主要因素。夜近视数值在暗适应过程中呈增大的趋势。在暗视觉时,由于视野中缺少适宜的刺激,眼睛处于暗焦(dark focus)休止状态,这是造成夜近视的主要原因。  相似文献   
2.
Monitoring is indispensable for the optimization and simulation of biotechnological processes. Hairy roots (hr, plant tissue cultures) are producers of valuable relevant secondary metabolites. The genetically stable cultures are characterized by a rapid filamentous growth, making monitoring difficult with standard methods. This article focuses on the application of laser speckle photometry (LSP) as an innovative, non‐invasive method to characterize Beta vulgaris (hr). LSP is based on the analysis of time‐resolved interference patterns. Speckle interference patterns of a biological object, known as biospeckles, are characterized by a dynamic behavior that is induced by physical and biological phenomena related to the object. Speckle contrast, a means of measuring the dynamic behavior of biospeckles, was used to assess the biospeckle activity. The biospeckle activity corresponds to processes modifying the object and correlates with the biomass growth. Furthermore, the stage of the cultures’ physiological development was assessed by speckle contrast due to the differentiation between active and low active behavior. This method is a new means of monitoring and evaluating the biomass growth of filamentous cultures in real time. As a potential tool to characterize hairy roots, LSP is non‐invasive, time‐saving, can be used online and stands out for its simple, low‐cost setup.  相似文献   
3.
In this study, we use dual‐wavelength optical imaging‐based laser speckle technique to assess cerebral blood flow and metabolic parameters in a mouse model of acute hyperglycemia (high blood glucose). The effect of acute glucose levels on physiological processes has been extensively described in multiple organ systems such as retina, kidney, and others. We postulated that hyperglycemia also alters brain function, which in turn can be monitored optically using dual‐wavelength laser speckle imaging (DW‐LSI) platform. DW‐LSI is a wide‐field, noncontact optical imaging modality that integrates the principles of laser flowmetry and oximetry to obtain macroscopic information such as hemoglobin concentration and blood flow. A total of eight mice (C57/BL6) were used, randomized into two groups of normoglycemia (control, n = 3) and hyperglycemia (n = 5). Hyperglycemia was induced by intraperitoneal injection of a commonly used anesthetic drug combining ketamine and xylazine (KX combo). We found that this KX combo increases blood glucose (BG) levels from 150 to 350 mg/dL, approximately, when measured 18 minutes post‐administration. BG continues to increase throughout the test period, with BG reaching an average of 463 ± 20.34 mg/dL within 60 minutes. BG levels were measured every 10 minutes from tail blood using commercially available glucometer. Experimental results demonstrated reductions in cerebral blood flow (CBF) by 55%, tissue oxygen saturation (SO2) by 15%, and cerebral metabolic rate of oxygen (CMRO2) by 75% following acute hyperglycemia. The observed decrease in these parameters was consistent with results reported in the literature, measured by a variety of experimental techniques. Measurements with laser Doppler flowmetry (LDF) were also performed which confirmed a reduction in CBF following acute hyperglycemia. In summary, our findings indicate that acute hyperglycemia modified brain hemodynamic response and induced significant changes in blood flow and metabolism. As far as we are aware, the implementation of the DW‐LSI to monitor brain hemodynamic and metabolic response to acute hyperglycemia in intact mouse brain has not been previously reported.   相似文献   
4.
5.
The structure, physiology, and fate of living cells are all highly sensitive to mechanical forces in the cellular microenvironment, including stresses and strains that originate from encounters with the extracellular matrix (ECM), blood and other flowing materials, and neighbouring cells. This relationship between context and physiology bears tremendous implications for the design of cellular micro-or nanotechnologies, since any attempt to control cell behavior in a device must provide the appropriate physical microenvironment for the desired cell behavior. Cells sense, process, and respond to biophysical cues in their environment through a set of integrated, multi-scale structural complexes that span length scales from single molecules to tens of microns, including small clusters of force-sensing molecules at the cell surface, micron-sized cell-ECM focal adhesion complexes, and the cytoskeleton that permeates and defines the entire cell. This review focuses on several key technologies that have recently been developed or adapted for the study of the dynamics of structural micro-and nanosystems in living cells and how these systems contribute to spatially-and temporally-controlled changes in cellular structure and mechanics. We begin by discussing subcellular laser ablation, which permits the precise incision of nanoscale structural elements in living cells in order to discern their mechanical properties and contributions to cell structure. We then discuss fluorescence recovery after photobleaching and fluorescent speckle microscopy, two live-cell fluorescence imaging methods that enable quantitative measurement of the binding and transport properties of specific proteins in the cell. Finally, we discuss methods to manipulate cellular structural networks by engineering the extracellular environment, including microfabrication of ECM distributions of defined geometry and microdevices designed to measure cellular traction forces at micron-scale resolution. Together, these methods form a powerful arsenal that is already adding significantly to our understanding of the nanoscale architecture and mechanics of living cells and may contribute to the rational design of new cellular micro-and nanotechnologies.  相似文献   
6.
唇皮层小泡1-4层,在光镜和透射电镜下均具5种形态,由外及内,小泡内颗粒直径逐渐减少。在H.E染 色中,动物极低纬度区和精孔器附近的卵膜和质膜之间,具少量均匀的着色非常深的紫色斑点,与Ⅰ型皮层小泡内 容物形态结构相似,在透射电镜下,这些斑点和卵膜、质膜有明显的界限,其外没有包被膜相结构,我们称之皮层反 应引发斑,这是在鱼类受精卵中发现的一个新的结构。扫描电镜下,引发斑成絮状。引发斑对皮层反应的引发具 有重要作用。皮层反应可分为潜伏期、始发期、高潮期、衰退期四个时期,潜伏期没有皮层反应发生,始发期只是位 于受精卵外围的少量皮层小泡释放,高潮期为多个皮层小泡相互融合形成一个大的泡状体,泡状体再与质膜接触、 融合后,随后破裂,释放内容物,可分为两个阶段,衰退期释放Ⅴ型皮层小泡和其他残存的皮层小泡以及未完全降 解卵黄颗粒碎屑;皮层反应是由Ⅰ型皮层小泡和引发斑诱导的爆发性的链式反应,卵子外侧的皮层反应可以诱导 内侧皮层反应。皮层反应有两个起始区域,在受精后35s开始于动物极低纬度区,稍后出现在精孔器前庭附近,随 后在这两个始发区向四周扩散,并在前庭以外的区域愈合、打通。皮层小泡分批多次释放,质膜多次重组。精子入 卵位点附近没有皮层小泡,不发生皮层反应,这提示皮层反应对鱼类多精受精的抑制效应有限。  相似文献   
7.
张婷  骆清铭   《激光生物学报》2002,11(5):358-363
利用CCD显微成像技术和激光散斑技术,对局部加热(41℃-54℃,30min)下大鼠小肠肠系膜微血管的管径(直径约15μm-50μm)和血流速率的变化进行实时,在体监测,并由二者计算血流量的变化。结果表明:41℃,43℃,45℃,46℃各温度点30min的加热过程中,血流速度变化平缓,血管管径和血流量明显增加,最终均逐渐趋趋于恒定。49℃时,血流速率仅在前12min内增加,30min时已降至低于初始值,血管管径及血流量在14min时达最大后开始减小,加热停止时仍旧高于初始值。温度高于49℃时(51℃,54℃)血流速率,管径,血流量呈现先升高后下降的变化趋势,在30min时,三者均低于初始值,由此可知,加热时间为30min,大鼠肠系膜微血管的临界温度为49℃;在相同的时间条件下,热损伤速率随温度升高而增加。  相似文献   
8.
We demonstrate the use of the near‐infrared attenuation coefficient, measured using optical coherence tomography (OCT), in longitudinal assessment of hypertrophic burn scars undergoing fractional laser treatment. The measurement method incorporates blood vessel detection by speckle decorrelation and masking, and a robust regression estimator to produce 2D en face parametric images of the attenuation coefficient of the dermis. Through reliable co‐location of the field of view across pre‐ and post‐treatment imaging sessions, the study was able to quantify changes in the attenuation coefficient of the dermis over a period of ~20 weeks in seven patients. Minimal variation was observed in the mean attenuation coefficient of normal skin and control (untreated) mature scars, as expected. However, a significant decrease (13 ± 5%, mean ± standard deviation) was observed in the treated mature scars, resulting in a greater distinction from normal skin in response to localized damage from the laser treatment. By contrast, we observed an increase in the mean attenuation coefficient of treated (31 ± 27%) and control (27 ± 20%) immature scars, with numerical values incrementally approaching normal skin as the healing progressed. This pilot study supports conducting a more extensive investigation of OCT attenuation imaging for quantitative longitudinal monitoring of scars.

En face 2D OCT attenuation coefficient map of a treated immature scar derived from the pre‐treatment (top) and the post‐treatment (bottom) scans. (Vasculature (black) is masked out.) The scale bars are 0.5 mm.  相似文献   

9.
目的:探讨超声二维斑点追踪成像技术(2DSTI)评价主动脉瓣狭窄(AS)患者左室功能早期改变的临床价值。方法:选取我院自2012年4月至2012年12月左室射血分数(LVEF)正常的AS(中-重度)患者30例(AS组),正常对照组30例。获取心尖位左室长轴观、二腔观和四腔观各节段收缩期纵向峰值应变(SL),并计算左室基底段、中间段、心尖段SL平均值及左室整体纵向应变值(GLS)。结果:AS组与对照组的左室射血分数差异无统计学意义(P0.05),AS组与对照组的主动脉瓣瓣口面积及平均压差具有统计学意义(P0.05);AS组患者整体、基底段、中间段、心尖段的GLS均低于对照组(P0.05)。结论:超声二维斑点追踪成像技术能够评价主动脉瓣狭窄左室心肌收缩功能的早期异常改变。  相似文献   
10.
In this study, we made use of dual‐wavelength laser speckle imaging (DW‐LSI) to assess cerebral blood flow (CBF) in the BTBR‐genetic mouse model of autism spectrum disorder, as well as control (C57Bl/6J) mice. Since the deficits in social behavior demonstrated by BTBR mice are attributed to changes in neural tissue structure and function, we postulated that these changes can be detected optically using DW‐LSI. BTBR mice demonstrated reductions in both CBF and cerebral oxygen metabolism (CMRO2), as suggested by studies using conventional neuroimaging technologies to reflect impaired neuronal activation and cognitive function. To validate the monitoring of CBF by DW‐LSI, measurements with laser Doppler flowmetry (LDF) were also performed which confirmed the lowered CBF in the autistic‐like group. Furthermore, we found in vivo cortical CBF measurements to predict the rate of hippocampal neurogenesis, measured ex vivo by the number of neurons expressing doublecortin or the cellular proliferation marker Ki‐67 in the dentate gyrus, with a strong positive correlation between CBF and neurogenesis markers (Pearson, r = 0.78; 0.9, respectively). These novel findings identifying cortical CBF as a predictive parameter of hippocampal neurogenesis highlight the power and flexibility of the DW‐LSI and LDF setups for studying neurogenesis trends under normal and pathological conditions.   相似文献   
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