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Comparison between graticule and image capture assessment of lower tear film meniscus height.

PURPOSE: To compare graticule and image capture assessment of the lower tear film meniscus height (TMH). METHODS: Lower tear film meniscus height measures were taken in the right eyes of 55 healthy subjects at two study visits separated by 6 months. Two images of the TMH were captured in each subject with a digital camera attached to a slit-lamp biomicroscope and stored in a computer for future analysis. Using the best of two images, the TMH was quantified by manually drawing a line across the tear meniscus profile, following which the TMH was measured in pixels and converted into millimetres, where one pixel corresponded to 0.0018 mm. Additionally, graticule measures were carried out by direct observation using a calibrated graticule inserted into the same slit-lamp eyepiece. The graticule was calibrated so that actual readings, in 0.03 mm increments, could be made with a 40x ocular. RESULTS: Smaller values of TMH were found in this study compared to previous studies. TMH, as measured with the image capture technique (0.13+/-0.04 mm), was significantly greater (by approximately 0.01+/-0.05 mm, p=0.03) than that measured with the graticule technique (0.12+/-0.05 mm). No bias was found across the range sampled. Repeatability of the TMH measurements taken at two study visits showed that graticule measures were significantly different (0.02+/-0.05 mm, p=0.01) and highly correlated (r=0.52, p<0.0001), whereas image capture measures were similar (0.01+/-0.03 mm, p=0.16), and also highly correlated (r=0.56, p<0.0001). CONCLUSIONS: Although graticule and image analysis techniques showed similar mean values for TMH, the image capture technique was more repeatable than the graticule technique and this can be attributed to the higher measurement resolution of the image capture (i.e. 0.0018 mm) compared to the graticule technique (i.e. 0.03 mm).

Adolescent↗

Catheter ablation guided by termination of postinfarction ventricular tachycardia by pacing with nonglobal capture.

OBJECTIVES: We prospectively investigated the prevalence and value of this criterion for identifying a target site for ablation in patients with postinfarction ventricular tachycardia (VT). BACKGROUND: Termination of postinfarction VT by pacing with nonglobal capture identifies a critical component of the reentrant circuit. METHODS: In a consecutive series of 34 patients with prior infarction (age 67 +/- 10 years, ejection fraction 0.26 +/- 0.1) referred for radiofrequency catheter ablation, mapping was performed in the left ventricle. At sites with abnormal electrograms, pacing was performed during VT. If VT terminated with nonglobal capture during the pacing train, radiofrequency energy was delivered. RESULTS: Sixty-two VTs (cycle length 450 +/- 84 ms) were mapped and targeted for radiofrequency ablation. Concealed entrainment was present at 101 endocardial sites. Among the 101 sites, VT terminated by pacing with nonglobal capture at 5 sites (5%). At 10 additional sites in 10 patients, VT terminated by pacing with nonglobal capture, and concealed entrainment could not be documented at these sites because of reproducible termination of the VT. An application of radiofrequency energy resulted in VT termination at all 15 sites where nonglobal capture was documented and the targeted VTs were no longer inducible after ablation. CONCLUSIONS: Termination of VT by pacing with nonglobal capture can be demonstrated in approximately one third of patients with postinfarction VT and is a specific criterion for identifying a critical component of the reentrant circuit, whether or not concealed entrainment can be documented at that site.

Aged↗

The role of conformation on electron capture dissociation of ubiquitin.

Effects of protein conformation on electron capture dissociation (ECD) were investigated using high-field asymmetric waveform ion mobility spectrometry (FAIMS) and Fourier-transform ion cyclotron resonance mass spectrometry. Under the conditions of these experiments, the electron capture efficiency of ubiquitin 6+ formed from three different solution compositions differs significantly, ranging from 51 +/- 7% for ions formed from an acidified water/methanol solution to 88 +/- 2% for ions formed from a buffered aqueous solution. This result clearly indicates that these protein ions retain a memory of their solution-phase structure and that conformational differences can be probed in an ECD experiment. Multiple conformers for the 7+ and 8+ charge states of ubiquitin were separated using FAIMS. ECD spectra of conformer selected ions of the same charge states differ both in electron capture efficiency and in the fragment ion intensities. Conformers of a given charge state that have smaller collisional cross sections can have either a larger or smaller electron capture efficiency. A greater electron capture efficiency was observed for ubiquitin 6+ that has the same collisional cross section as one ubiquitin 7+ conformer, despite the lower charge state. These results indicate that the shape of the molecule can have a greater effect on electron capture efficiency than either collisional cross section or charge state alone. The cleavage locations of different conformers of a given charge state were the same indicating that the presence of different conformers in the gas phase is not due to difference in where charges are located, but rather reflect conformational differences most likely originating from solution. Small neutral losses observed from the singly- and doubly-reduced ubiquitin 6+ do not show a temperature dependence to their formation, consistent with these ions being formed by nonergodic processes.

Cyclotrons↗

VEX-capture: a new technique that allows in vivo excision, cloning, and broad-host-range transfer of large bacterial genomic DNA segments.

We have developed a novel and easily performed procedure for the targeted excision, cloning, and broad-host-range transfer of large bacterial genomic DNA segments. This procedure, called Vector-mediated excision and Capture (VEX-Capture), represents a new molecular tool for the convenient manipulation and exchange of large (20-40+ kb) bacterial genomic fragments. VEX-Capture utilizes lox/Cre-mediated site-specific recombination for excision of the targeted genomic segment and homologous recombination for cloning of the excised DNA section onto a self-transmissible, broad-host-range IncP plasmid. The "captured" genomic DNA segment can then be transferred to a wide variety of Gram-negative hosts for basic research and bioengineering purposes. To demonstrate the utility and function of VEX-Capture, we have excised and cloned three separate genomic islands from the Salmonella typhimurium chromosome ranging in size from 26.7 to 40.0 kb. To test the ability of these islands to be established in different bacterial hosts, we transferred them to six other Gram-negative species and monitored their establishment via phenotypic and molecular analysis. RT-PCR was used to assay the expression of selected S. typhimurium island genes in the different species. This analysis led to the discovery that an island-encoded master regulator of S. typhimurium virulence functions is expressed in a species-specific manner. Our results demonstrate the potential for VEX-Capture to be used as a convenient genetic technique for fundamental biological applications in a wide variety of bacterial species.

Chromosomes, Bacterial↗

Domains of macaque DC-SIGN essential for capture and transfer of simian immunodeficiency virus.

The C-type lectin DC-SIGN mediates the capture and transfer of simian immunodeficiency virus (SIV) from macaque dendritic cells (DCs) to permissive T-cells. To further identify the determinants in macaque DC-SIGN required for capture and transfer of virus, we created mutants containing deletions or point mutations in the extracellular domains, and tested their ability to capture and transmit SIV. We found that SIV bound to the carbohydrate recognition domain (CRD) of macaque DC-SIGN via the envelope protein. In addition, deleting the C-terminal half of the CRD, or mutating amino acids within this region that contact Ca(2+) or mannose, disrupted virion capture activity. However, an N-terminal CRD deletion mutant was capable of binding SIV, indicating that this region was not necessary for binding. Finally, deletion of the neck domain also reduced the capacity for macaque DC-SIGN to capture SIV. Interestingly, ICAM-3, the cellular ligand for DC-SIGN, did not bind to any of the DC-SIGN mutants, including mutants with amino acid changes in the N-terminal region of the CRD. These data suggest that the binding sites for SIV and ICAM-3 may be distinct but overlapping. Together, the data demonstrate the importance of both the neck and the CRD of macaque DC-SIGN for efficient capture of SIV and binding to ICAM-3.

Animals↗

Neutralizing as well as non-neutralizing polyclonal immunoglobulin (Ig)G from infected patients capture HIV-1 via antibodies directed against the principal immunodominant domain of gp41.

We analyzed the factors influencing the binding of polyclonal immunoglobulin (Ig)G from HIV-infected patients to primary isolates (PI) in capture assays and a potential correlation between this binding and neutralization. The fixation of antibodies (Abs) to viral particles was measured by quantifying the capture of 4 PI by purified IgG immobilized onto a plate or by analyzing the capture of IgG-virus complexes formed in solution. We found that the capture of virus and the formation of immune complexes is mainly achieved by Abs directed against the principal immunodominant domain (PID) of gp41. We have further compared the binding measured by these two methods and the neutralizing activity of our polyclonal IgG and found no correlation. Thus, capture assays, including the immune complex capture assay that is more representative of "physiological" conditions, cannot be used as surrogate method for the investigation of the neutralizing activity of Abs.

HIV Antibodies↗

Capture of visual direction in dynamic vergence is reduced with flashed monocular lines.

The visual direction of a continuously presented monocular object is captured by the visual direction of a closely adjacent binocular object, which questions the reliability of nonius lines for measuring vergence. This was shown by Erkelens, C. J., and van Ee, R. (1997a,b) [Capture of the visual direction: An unexpected phenomenon in binocular vision. Vision Research, 37, 1193-1196; Capture of the visual direction of monocular objects by adjacent binocular objects. Vision Research, 37, 1735-1745] stimulating dynamic vergence by a counter phase oscillation of two square random-dot patterns (one to each eye) that contained a smaller central dot-free gap (of variable width) with a vertical monocular line oscillating in phase with the random-dot pattern of the respective eye; subjects adjusted the motion-amplitude of the line until it was perceived as (nearly) stationary. With a continuously presented monocular line, we replicated capture of visual direction provided the dot-free gap was narrow: the adjusted motion-amplitude of the line was similar as the motion-amplitude of the random-dot pattern, although large vergence errors occurred. However, when we flashed the line for 67 ms at the moments of maximal and minimal disparity of the vergence stimulus, we found that the adjusted motion-amplitude of the line was smaller; thus, the capture effect appeared to be reduced with flashed nonius lines. Accordingly, we found that the objectively measured vergence gain was significantly correlated (r=0.8) with the motion-amplitude of the flashed monocular line when the separation between the line and the fusion contour was at least 32 min arc. In conclusion, if one wishes to estimate the dynamic vergence response with psychophysical methods, effects of capture of visual direction can be reduced by using flashed nonius lines.

Convergence, Ocular↗

Triatoma infestans can be captured under natural climatic conditions using yeast-baited traps.

The effectiveness of a trap for triatomines baited with yeast cultures has been previously demonstrated in laboratory assays. We report results from assays testing yeast-traps for Triatoma infestans performed under natural climatic conditions. All assays were conducted at experimental chicken-coops colonised by bugs, situated at an endemic area for Chagas disease in Argentina. Two different models of traps were tested, for use either on the floor, or attached to walls. The results obtained clearly demonstrate that yeast-baited traps are effective for capturing triatomine bugs. Floor traps, when baited, captured significantly more bugs than their controls (t-test, P = 0.0008, k = 10). In addition, wall traps were also more effective, when compared to their controls (t-test, P = 0.011, k = 10). The maximum capture by a single yeast-trap was 39 bugs in one night, while for the same period the maximum capture by a control-trap was two bugs. Traps captured significantly more bugs at nights when maximum temperature was above 18 degrees C (t-test, P = 0.0002). Results indicate that yeast traps are capable of capturing significant numbers of free insects in one night. The potential use of yeast- traps for the detection of triatomine bugs is discussed.

Animals↗

In vitro evaluation of nanoparticles spleen capture.

After intravenous injection, the main part of nanoparticles trapped by the spleen are concentrated in the marginal zone. The first step of this capture is the adhesion of the particles to the marginal zone macrophages. As classical techniques of cell suspension preparation did not allow to isolate without damage these actively capturing cells, tightly bound to a well-developed reticular meshwork, we designed a tissue slice incubation method, in order to study in vitro the interaction of nanoparticles with these particular macrophages, in conditions close to in vivo. In a serum supplemented medium, this in vitro model was able to give similar uptake profile than after intravenous injection of nanoparticles thus proving its validity. Surprisingly, no significant decrease of nanoparticles capture was observed when the medium was depleted from complement, immunoglobulins or proteins affine for heparin, while substitution of serum by purified albumin allowed a near optimal uptake. Addition of competitive ligands for lectin-like receptors did not show any clear inhibition of spleen capture. On the other hand, the scavenger receptor blocking agents, such as maleylated albumin or polyinosinic acid, induced a strong reduction of the spleen nanoparticles uptake. Thus, this paper proposes an in vitro binding assay as a reliable method to investigate the spleen capture of a large variety of nanoparticulate drug carriers. It is also a useful methodology to highlight the interactions between spleen cells and nanoparticles. The data obtained suggest that capture of nanoparticles depends on a multifactorial and complex phenomenon involving for a part albumin and the scavenger receptor.

Animals↗

Attentional and oculomotor capture by onset, luminance and color singletons.

In three experiments we investigated whether attentional and oculomotor capture occur only when object-defining abrupt onsets are used as distractors in a visual search task, or whether other salient stimuli also capture attention and the eyes even when they do not constitute new objects. The results showed that abrupt onsets (new objects) are especially effective in capturing attention and the eyes, but that luminance increments that do not accompany the appearance of new objects capture attention as well. Color singletons do not capture attention unless subjects have experienced the color singleton as a search target in a previous experimental session. Both abrupt onsets and luminance increments elicit reflexive, involuntary saccades whereas transient color changes do not. Implications for theories of attentional capture are discussed.

Adolescent↗

Use of ultrasound to determine ventricular capture in transcutaneous pacing.

Determining ventricular capture when using transcutaneous pacing (TCP) can be difficult. Our objective was to evaluate the use of ultrasound (US) to determine capture in patients undergoing TCP. We studied 15 patients in a convenience sample. Videotaped US views were obtained during TCP with concurrent electrocardiographic monitoring on the US screen. The treating physician made capture determinations first by using clinical indicators, followed by US images. Two reviewing physicians blinded to the treating physician's findings and to each other determined capture on videotape. Kappa levels of agreement were calculated. A value of kappa = 0.84 was found for agreement of the treating physician's findings through clinical measures and US. Agreement between the first reviewer and the treating physician had kappa =.47 and between the second reviewer and the treating physician was had kappa =.67. All P values were <.05. US and clinical impression of ventricular capture have good to excellent agreement. US may be useful for determining ventricular capture in patients undergoing TCP.

Adult↗

Pupillary capture after combined management of cataract and vitreoretinal pathology.

PURPOSE: To report the incidence, pathogenesis, and management of pupillary capture after combined phacoemulsification with intraocular lens (IOL) implantation and vitreoretinal surgery. SETTING: Oxford Eye Hospital, The Radcliffe Infirmary, Oxford, United Kingdom. METHODS: This retrospective case review comprised 12 patients who developed pupillary capture after combined phacoemulsification, IOL implantation, and pars plana vitrectomy (PPV). Eleven IOLs were implanted in the capsular bag, and 1 was sulcus fixated. All patients had a long-acting gas tamponade and were advised to lie face down postoperatively. All patients subsequently had IOL repositioning using a bimanual technique. RESULTS: The incidence of pupillary capture was 8.95% and occurred a mean of 3.25 weeks postoperatively. At least 6 clock hours of the pupillary margin were captured by the optic except in 1 case in which the pupillary capture was total. Half the patients had posterior capsule opacification that required a neodymium:YAG laser capsulotomy after IOL repositioning. CONCLUSIONS: The incidence of pupillary capture after combined phacoemulsification, IOL implantation, PPV, and injection of long-acting gas was high. This complication can be minimized by creating a smaller capsulorhexis, having the patient maintain a strict face-down position, securing wound closure, and injecting an air bubble into the air chamber to push the iris-lens diaphragm posteriorly.

Adolescent↗

Effects of capture on adrenal steroid and vasopressin concentrations in free-ranging bottlenose dolphins (Tursiops truncatus).

Marine mammals are routinely caught in the wild in an effort to monitor their health. However, capture-associated stress could potentially bias various biochemical parameters used to monitor the health of these wild caught animals. Therefore, the effects of capture were quantified by measuring plasma adrenal steroids and arginine vasopressin (AVP) in free-ranging bottlenose dolphins (Tursiops truncatus) (n=31). Total capture and restraint times were also correlated to hormone concentrations to quantify the effects of capture. Significant, positive correlations between corticosterone and cortisol (R=0.752; P<0.0001), and between corticosterone and aldosterone (R=0.441; P=0.045) were demonstrated. Significant correlations between capture and restraint time and hormone levels were not observed. Animals restrained for less than 20 min exhibited hormone levels similar to those for animals restrained for more than 20 min. The positive correlations among the adrenal steroids suggest that release of these steroids was stimulated by adrenocorticotropin (ACTH). The lack of a correlation between cortisol and AVP indicates that AVP did not influence ACTH-induced cortisol release in this situation. The study suggests that (1) a typical hypothalamic-pituitary-adrenal axis is present in these animals, and (2) the relatively short capture and restraint times did not induce a significant neuroendocrine stress response.

Adrenal Cortex Hormones↗

Red-cell IgM-antibody capture assay for the detection of Mycoplasma pneumoniae-specific IgM.

A red-cell IgM-antibody capture assay has been developed for detecting Mycoplasma pneumoniae-specific IgM, which is based on the adsorption or 'capture' of IgM from patients' sera onto so-called 'inagglutinable' bovine red cells, chemically linked with anti-human mu. When M. pneumoniae antigen is added to the system, the red cells agglutinate in the presence of M. pneumoniae-specific IgM. The test was compared with the mu-capture ELISA described by Wreghitt & Sillis (1985), and was found to give comparable results. The two tests had similar sensitivity and specificity and could detect M. pneumoniae-specific IgM for a similar time (up to 6 months) after proven M. pneumoniae infection. However, the red-cell antibody capture assay is a much more simple and rapid test, taking only 1 h to perform (compared to 24 h for mu-capture ELISA). The red-cell IgM-antibody capture assay is therefore amenable to rapid diagnosis of M. pneumoniae infection and the institution of early appropriate antibiotic therapy.

Antibodies, Bacterial↗

Microfluidic device for electric field-driven single-cell capture and activation.

A microchip that performs directed capture and chemical activation of surface-modified single cells has been developed. The cell capture system is comprised of interdigitated gold electrodes microfabricated on a glass substrate within PDMS channels. The cell surface is labeled with thiol functional groups using endogenous RGD receptors, and adhesion to exposed gold pads on the electrodes is directed by applying a driving electric potential. Multiple cell types can thus be sequentially and selectively captured on desired electrodes. Single-cell capture efficiency is optimized by varying the duration of field application. Maximum single-cell capture is attained for the 10-min trial, with 63 +/- 9% (n = 30) of the electrode pad rows having a single cell. In activation studies, single M1WT3 CHO cells loaded with the calcium-sensitive dye fluo-4 AM were captured; exposure to the muscarinic agonist carbachol increased the fluorescence to 220 +/- 74% (n = 79) of the original intensity. These results demonstrate the ability to direct the adhesion of selected living single cells on electrodes in a microfluidic device and to analyze their response to chemical stimuli.

Animals↗

Electron capture dissociation for structural characterization of multiply charged protein cations.

For proteins of < 20 kDa, this new radical site dissociation method cleaves different and many more backbone bonds than the conventional MS/MS methods (e.g., collisionally activated dissociation, CAD) that add energy directly to the even-electron ions. A minimum kinetic energy difference between the electron and ion maximizes capture; a 1 eV difference reduces capture by 10(3). Thus, in an FTMS ion cell with added electron trapping electrodes, capture appears to be achieved best at the boundary between the potential wells that trap the electrons and ions, now providing 80 +/- 15% precursor ion conversion efficiency. Capture cross section is dependent on the ionic charge squared (z2), minimizing the secondary dissociation of lower charge fragment ions. Electron capture is postulated to occur initially at a protonated site to release an energetic (approximately 6 eV) H. atom that is captured at a high-affinity site such as -S-S- or backbone amide to cause nonergodic (before energy randomization) dissociation. Cleavages between every pair of amino acids in mellitin (2.8 kDa) and ubiquitin (8.6 kDa) are represented in their ECD and CAD spectra, providing complete data for their de novo sequencing. Because posttranslational modifications such as carboxylation, glycosylation, and sulfation are less easily lost in ECD than in CAD, ECD assignments of their sequence positions are far more specific.

Amino Acid Sequence↗

The development of iodine based impinger solutions for the efficient capture of Hg0 using direct injection nebulization-inductively coupled plasma mass spectrometry analysis.

Inductively coupled plasma mass spectrometry (ICP/MS) with direct injection nebulization (DIN) was used to evaluate novel impinger solution compositions capable of capturing elemental mercury (Hg0) in EPA Method 5 type sampling. An iodine based impinger solution proved to be very efficient for Hg0 capture and was amenable to direct analysis by DIN-ICP/MS. Hg0 capture efficiency using aqueous iodine (I3-) was comparable to Hg0 capture using acidified potassium permanganate impinger solutions which were analyzed by cold vapor atomic absorption spectrometry (CVAAS), with greater than 98% capture of Hg0 in the first oxidizing impinger. Using DIN-ICP/MS, it was demonstrated for the first time that iodine can be generated just prior to impinger sampling for efficiently oxidizing Hg0 and retaining it in solution as HgI4(2-). Due to the increased interest in Hg speciation from combustion sources and the potential for using DIN-ICP/MS for multiple metals analyses, an impinger sampling train for gaseous Hg speciation and multiple metals analyses using DIN-ICP/MS analyses is presented. The unique feature of such a sampling train is that each impinger solution in the series is amenable to direct analysis by DIN-ICP/MS. A bituminous coal was combusted in a bench scale coal system, and gaseous Hg species (oxidized and elemental) were determined using the proposed impinger train. The DIN-ICP/MS instrumental detection limit was 0.003 ppb, and MDLs ranged from 0.007 to 0.116 microg/L (ppb) in a variety of impinger solutions used for Hg capture.

Air Pollutants↗

A technical, economic, and environmental assessment of amine-based CO2 capture technology for power plant greenhouse gas control.

Capture and sequestration of CO2 from fossil fuel power plants is gaining widespread interest as a potential method of controlling greenhouse gas emissions. Performance and cost models of an amine (MEA)-based CO2 absorption system for postcombustion flue gas applications have been developed and integrated with an existing power plant modeling framework that includes multipollutant control technologies for other regulated emissions. The integrated model has been applied to study the feasibility and cost of carbon capture and sequestration at both new and existing coal-burning power plants. The cost of carbon avoidance was shown to depend strongly on assumptions about the reference plant design, details of the CO2 capture system design, interactions with other pollution control systems, and method of CO2 storage. The CO2 avoidance cost for retrofit systems was found to be generally higher than for new plants, mainly because of the higher energy penalty resulting from less efficient heat integration as well as site-specific difficulties typically encountered in retrofit applications. For all cases, a small reduction in CO2 capture cost was afforded by the SO2 emission trading credits generated by amine-based capture systems. Efforts are underway to model a broader suite of carbon capture and sequestration technologies for more comprehensive assessments in the context of multipollutant environmental management.

Absorption↗