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91.
CO2 exchange components of a temperate semi-desert sand grassland ecosystem in Hungary were measured 21 times in 2000–2001 using a closed IRGA system. Stand CO2 uptake and release, soil respiration rate (R
s), and micrometeorological values were determined with two types of closed system chambers to investigate the daily courses of gas exchange. The maximum CO2 uptake and release were –3.240 and 1.903 mol m–2 s–1, respectively, indicating a relatively low carbon sequestration potential. The maximum and the minimum R
s were 1.470 and 0.226 mol(CO2) m–2 s–1, respectively. Water shortage was probably more effective in decreasing photosynthetic rates than R
s, indicating water supply as the primary driving variable for the sink-source relations in this ecosystem type. 相似文献
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An automatic gas exchange system was used to continuously measure water and carbon fluxes of attached shoots of Scots pine trees (Pinus sylvestris L.) grown in environment-controlled chambers for a 3-year period (1998-2000) and exposed to either normal ambient conditions (CON), elevated CO2 (+350 micro mol mol-1; EC), elevated temperature (+2-6 degrees C; ET) or a combination of EC and ET (ECT). EC treatment enhanced the mean daily total carbon flux per unit projected needle area (Fc.d) by 17-21 %, depending on the year. This corresponds to a 16-24 % increase in light-use efficiency (LUE) based on incident photosynthetically active radiation. The EC treatment reduced the mean daily total water flux (Fw.d) by 1-12 %, corresponding to a 13-35 % increase in water-use efficiency (WUE). The ET treatment increased Fc.d by 10-18 %, resulting in an 8-19 % increase in LUE, and Fw.d by 48-74 %, resulting in a reduction of WUE by 19-34 %. There was no interaction between CO2 and temperature elevation in connection with either carbon or water fluxes, as the carbon flux responded similarly in both ECT and EC, while the water flux in the ECT treatment was similar to that in ET. Regressions indicated that the increase in maximum LUE was greater with increasing air temperature, whereas changes in WUE were related only to high vapour pressure deficit. Furthermore, changes in LUE and WUE caused by ECT treatment displayed strong diurnal and seasonal variation. 相似文献
93.
Naoto Sugiura 《Plant Species Biology》2017,32(2):173-178
Pollination biology in Gastrodia elata was investigated on Rebun Island, Japan. The flowers have an urceolate perianth chamber whose opening is constricted by the column and labellum. This structure plays a crucial role in the selection of small‐bodied bees from flower visitors of various body sizes. In addition, the furrow on the ventral side of the column possibly contributes to the admission of sweat bee pollinators, whose thoracic widths match the width of the furrow. Sweat bees receive the pollinarium on their thorax while escaping head first from the chamber. No pollinator rewards, such as previously reported harvestable spongy tissue, are likely to be produced by the orchid. The flowers, however, have a glossy area reminiscent of nectar secreted into the chamber that likely acts as a deceptive signal for pollinators. Fruit‐set ratios were found to vary spatiotemporally; the values were higher under bright light conditions, probably reflecting the presence of sweat bees for sunny places. 相似文献
94.
Turhan A Tsuda A Konerding MA Lin M Miele L Lee G Mentzer SJ 《In vitro cellular & developmental biology. Animal》2008,44(10):426-433
A central feature of intussusceptive angiogenesis is the development of an intravascular pillar that bridges the opposing
sides of the microvessel lumen. In this report, we created polydimethyl siloxane (PDMS) microchannels with geometric proportions
based on corrosion casts of the colon microcirculation. The structure of the PDMS microchannels was a bifurcated channel with
an intraluminal pillar in the geometric center of the bifurcation. The effect of the intraluminal pillar on particle flow
paths was investigated using an in vitro perfusion system. The microchannels were perfused with fluorescent particles, and
the particle movements were recorded using fluorescence videomicroscopy. We found that the presence of an intravascular pillar
significantly decreased particle velocity in the bifurcation system (p < 0.05). In addition, the pillar altered the trajectory of particles in the center line of the flow stream. The particle
trajectory resulted in prolonged pillar contact as well as increased residence time within the bifurcation system (p < 0.001). Our results suggest that the intravascular pillar not only provides a mechanism of increasing resistance to blood
flow but may also participate in spatial redistribution of cells within the flow stream.
Supported in part by NIH Grants HL47078, HL75426, HL054885, HL070542 and HLO74022. 相似文献
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Vozzi F Mazzei D Vinci B Vozzi G Sbrana T Ricotti L Forgione N Ahluwalia A 《Biotechnology and bioengineering》2011,108(9):2129-2140
To develop in vitro models of cells, tissues and organs we have designed and realized a series of cell culture chambers. Each chamber is purpose designed to simulate a particular feature of the in vivo environment. The bioreactor system is user friendly, and the chambers are easy to produce, sterilize and assemble. In addition they can be connected together to simulate inter-organ or tissue cross-talk. Here we discuss the design philosophy of the bioreactor system and then describe its construction. Preliminary results of validation tests obtained with hepatocytes and endothelial cells are also reported. The results show that endothelial cells are extremely sensitive to small levels of shear stress and that the presence of heterotypic signals from endothelial cells enhances the endogenous metabolic function of hepatocytes. 相似文献
99.
Partha Prateem Choudhury Vivek Chaturvedi Saibal Mukhopadhyay Jamal Yusuf 《Indian pacing and electrophysiology journal》2014,14(4):217-222
A 58 year old male, known case of type 2 diabetes and hypertension, had undergone implantation of a dual chamber pacemaker(DDDR) in 2007 for complaints of recurrent syncope and trifascicular block with a normal ejection fraction andnormal coronaries. His post implantation parameters were normal at that time.He now presented to our pacemaker clinic where his ECG done showed two types o fpaced complexes. The first few complexes were consistent with atrial sensed right ventricular apical pacing with left superior axis. Later complexes showed loss of atrial sensing with pacing from right ventricular outflow tract(inferior axis) with subtle oscillation in it''s axis. On application of magnet, two pacemaker spikes were visible withinterspike interval of 120 ms and paced complexes with inferior axis starting from the first spike suggesting that the atrial lead was responsible for RVOT depolarization. On interrogation of the pacemaker, atrial EGM showed sensed activity from atrium followed by large sensed ventricular complex. Fluoroscopy confirmed that the atrial lead was dislodged and was intermittently prolapsing into the RVOT. Since the patient was asymptomatic, he refused any intervention and subsequentlyhis atrial lead was switched off by telemetry. The above case signifies that asymptomatic lead dislodgement is no talways manifested as loss of capture and even subtle variation of the axis o fthe paced complexes can provide us with a clue that can be confirmed by telemetry of the pacemaker and fluoroscopy. 相似文献
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