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Biomedical subjects

C T Chan

Publications and source records attributed to C T Chan.

At least 37 records · Page 2Linked to original sources

Optical properties of nanoparticle-based metallodielectric inverse opals.

Metallodielectric inverse opals were prepared by co-crystallizing silica-coated gold nanoparticles and polymer spheres, followed by removal of the crystal template. The inverse opals exhibit a distinct reflectance peak, which results from Bragg diffraction due to the highly ordered 3D macroporous structure. Photonic band-structure calculations indicate that the characteristic reflectance peaks observed are signatures of the directional gap at the L point. It is demonstrated that the optical properties (the position and magnitude of the electromagnetic bandgaps) of the gold-silica nanocomposite inverse opals can be engineered by varying the nanoparticle morphology (core size and shell thickness) and/or the nanoparticle volume-filling ratio of the composite. The use of metallodielectric nanoparticles to form inverse opals offers a versatile approach to prepare photonic materials that may exhibit absolute bandgaps.

Crystallization↗

Impact of nocturnal home hemodialysis on anemia management in patients with end-stage renal disease.

AIM: Anemia is adversely associated with poor uremia control and is an established cardiovascular risk factor in patients with end-stage renal disease (ESRD). Nocturnal home hemodialysis (NHD) is a novel form of renal replacement therapy that offers superior clearance of uremic solutes and improvements in several cardiovascular outcome parameters. We conducted a retrospective cohort study to test the hypotheses that augmenting the dose and frequency of dialysis by NHD would improve hemoglobin (Hb) concentrations and decrease requirement of erythropoietin (EPO) in ESRD patients. METHODS: In 63 patients (mean age: 46 +/- 2 years) receiving NHD (mean duration: 2.1 +/- 0.2 years), Hb, EPO dose, iron saturation, ferritin were determined before and at six monthly repeated intervals after conversion to NHD. For comparison, 32 ESRD patients (mean age: 57 +/- 3 years) who remained on self-care conventional hemodialysis (CHD) were also studied. RESULTS: There were no differences in baseline Hb concentrations, iron saturation, ferritin, or EPO dose between the two cohorts. After transfer from CHD to NHD, there were significant improvements in Hb concentrations (from 115 +/- 2 to 122 +/- 3 (6 months) and 124 +/- 2 (12 months) g/l, p = 0.03) despite a fall in EPO requirement (from 10,400 +/- 1400 to 8500 +/- 1300 (6 months) and 7600 +/- 1100 (12 months) U/week, p = 0.03). In contrast, CHD cohort had no change in EPO requirement (from 8300 +/- 1100 to 8100 +/- 1300 (6 months) and 8600 +/- 1000 (12 months) U/week, p > 0.05) or Hb concentrations (from 110 +/- 2 to 115 +/- 3 (6 months) and 115 +/- 2 (12 months), p > 0.05). There was a higher percentage of ESRD patients who did not require EPO in the NHD cohort (24% vs. 9.4%, p = 0.01). Lower Hb concentrations were noted in the CHD cohort despite higher iron saturation (0.25 +/- 0.01 (NHD) vs. 0.33 +/- 0.02 (CHD), p = 0.02) at the end of follow-up. CONCLUSIONS: Enhancing uremic clearance by NHD resulted in a rise in Hb and a fall in EPO requirement.

Adult↗

Improvements in phosphate control with short daily in-center hemodialysis.

BACKGROUND: Hyperphosphatemia is an independent risk factor for mortality in hemodialysis (HD) patients. The relative importance of HD frequency and duration for phosphate removal is not clear. Short daily hemodialysis (SDHD) is a form of HD which offers increased treatment frequency. SDHD studies have not been shown to normalize serum phosphate. METHODS: Twenty-one patients were converted from conventional thrice weekly HD (CHD, 4 h/session) to SDHD (2 - 3.75 h/session, 5 - 6 sessions per week). The primary endpoint was the change in predialysis serum phosphate levels after conversion from CHD to SDHD. Changes in serum calcium levels, phosphate binder and vitamin D analogue usage, and serum parathyroid hormone (PTH) levels were measured as secondary endpoints. RESULTS: Mean duration of SDHD was 17.7 +/- 1.9 months. Mean treatment time was 2.63 +/- 0.10 h, and mean frequency was 5.3 +/- 0.1 sessions per week. Predialysis serum phosphate decreased from 1.99 +/- 0.12 mM at three months pre conversion to 1.27 +/- 0.10 mM at six months post conversion to SDHD (p = 0.002). Serum phosphate remained stable between six and 12 months post conversion (1.27 +/- 0.10 mM to 1.38 +/- 0.14 mM, p = 0.8). When patients were grouped according to SDHD sessional frequency (five sessions/week versus six sessions/week) and compared, no significant differences were found in predialysis serum phosphate levels at six or 12 months post conversion. There were no changes in serum calcium. Overall phosphate binder usage did not change pre and post conversion to SDHD. Serum PTH tended to decrease after one year of SDHD (44.2 +/- 13.4 pM to 21.4 +/- 5.9 pM, p = 0.07). CONCLUSION: Conversion to SDHD significantly decreased serum phosphate. There may be a minimum hemodialysis duration below which increases in frequency are not able to compensate to achieve normal phosphate levels. Future studies are necessary to better characterize the relationship between HD duration and frequency with respect to phosphate removal.

Female↗

Lattice dynamics and electron-phonon interaction in (3,3) carbon nanotubes.

We present a detailed study of the lattice dynamics and electron-phonon coupling for a (3,3) carbon nanotube which belongs to the class of small diameter based nanotubes which have recently been claimed to be superconducting. We treat the electronic and phononic degrees of freedom completely by modern ab initio methods without involving approximations beyond the local density approximation. Using density functional perturbation theory we find a mean-field Peierls transition temperature of approximately 240 K which is an order of magnitude larger than the calculated superconducting transition temperature. Thus in (3,3) tubes the Peierls transition might compete with superconductivity. The Peierls instability is related to the special 2k(F) nesting feature of the Fermi surface. Because of the special topology of the (n,n) tubes we also find a phonon softening at the Gamma point.

Journal Article↗

Double-negative acoustic metamaterial.

We show here the existence of acoustic metamaterial, in which both the effective density and bulk modulus are simultaneously negative, in the true and strict sense of an effective medium. Our double-negative acoustic system is an acoustic analogue of Veselago's medium in electromagnetism, and shares many unique consequences, such as negative refractive index. The double negativity in acoustics is derived from low-frequency resonances, as in the case of electromagnetism, but the negative density and modulus are derived from a single resonance structure as distinct from electromagnetism in which the negative permeability and negative permittivity originates from different resonance mechanisms.

Journal Article↗

Focusing of sound in a 3D phononic crystal.

We present a combined experimental and theoretical study of phonon focusing phenomena in a pass band above the complete band gap in a 3D phononic crystal. Wave propagation was found to depend dramatically on both frequency and incident direction. This propagation anisotropy leads to very large negative refraction, which can be used to focus a diverging ultrasonic beam into a narrow focal spot with a large focal depth. The experimental field patterns are well explained using a Fourier imaging technique, based on the 3D equifrequency surfaces calculated from multiple scattering theory.

Journal Article↗

Layer spacings in coherently strained epitaxial metal films.

Laterally resolved measurements of the quantum size effect (QSE) in electron reflectivity are made with low energy electron microscopy on coherently strained Ag films on a W(110) surface. The evolution of the total film thickness with increasing number of atomic layers is determined accurately by dynamical theory analysis of the QSE features. Combined with a model of layer spacings obtained from first-principles calculations, this provides for a novel approach to determine the buried interface layer spacing, which is inaccessible to other methods.

Journal Article↗

Photonic band gap from a stack of positive and negative index materials.

Layered heterostructures combining ordinary and negative refractive index materials are shown to display a new type of photonic band gap corresponding to zero (volume) averaged refractive index. Distinct from band gaps induced by Bragg scattering, the zero-n; gap is invariant upon a change of scale length and is insensitive to disorder that is symmetric in the random variable. A metallic structure that exhibits such a band gap is explicitly designed, and its properties are calculated with accurate finite difference time domain simulations.

Journal Article↗

Optical properties of inverted opal photonic band gap crystals with stacking disorder.

We present a detailed study of the effect of planar stacking disorder on optical properties of inverted opal photonic crystals. Systems with periodic stacking sequences are first studied that include face centered cubic, hexagonal close-packed, and doubly hexagonal close-packed photonic crystals. For the structures with periodic stacking order, we evaluate the band structure followed by calculation of transmission spectrum along the direction perpendicular to the hexagonal close-packing plane of the structures. Inverted opal photonic crystals with random stacking sequences are then studied by calculating average transmittance of the photonic crystal slabs over various random stacking configurations. The position and width of the lowest stop gap along the direction normal to the hexagonal close-packing plane is found to be invariant, regardless of the stacking sequence in the photonic crystal. We show how the propagation properties at higher frequencies are affected by the stacking configurations (both periodic and disordered stacking sequences), particularly those near the edges of the absolute band gap. The obtained results are directly relevant to transmission/reflection experiments on inverted opal photonic crystals with complete band gap.

Journal Article↗

Subwavelength photonic band gaps from planar fractals.

We show by both experiment and theory that a specific class of planar conducting fractals possesses a series of self-similar resonances, leading to multiple gaps and pass bands for electromagnetic waves over an ultrawide frequency range. A double stack of these fractal patterns exhibits polarization-independent absolute gaps over a wide range of incidence angles. These characteristics are retained even when the fractal patterns are significantly subwavelength in all dimensions. In addition, the transmittance can be modulated by an external current source.

Journal Article↗

Ultrasound tunneling through 3D phononic crystals.

We report the study of ultrasound tunneling in 3D phononic crystals, consisting of fcc arrays of close-packed tungsten carbide beads in water. The transmission coefficient, phase velocity, and group velocity were measured along the [111] direction, allowing us to systematically investigate the tunneling of ultrasound at frequencies in the lowest band gap. Our experimental data are interpreted using multiple scattering theory, which provides a good explanation of our results. The effect of absorption and the difference between the tunneling of classical waves and quantum waves are discussed.

Journal Article↗

Polarized absorption spectra of single-walled 4 A carbon nanotubes aligned in channels of an AlPO(4)-5 single crystal.

We report the polarized optical absorption spectra of single-walled 4 A carbon nanotubes arrayed in the channels of an AlPO (4)-5 single crystal. When the light electric field (E) is polarized parallel to the tube direction (c), the spectra display a sharp peak at 1.37 eV, with two broadbands at 2.1 and 3.1 eV. In the E perpendicular c configuration, the tube is nearly transparent in the measured energy region 0.5-4.1 eV. The optical dipole selection rules are discussed, and the absorption bands are assigned to the dipole transitions between the Van Hove singularities. The measured absorption spectra agreed well with the ab initio calculations of band structure based on the local density function approximation.

Journal Article↗

Superconductivity in 4 angstrom single-walled carbon nanotubes.

Investigation of the magnetic and transport properties of single-walled small-diameter carbon nanotubes embedded in a zeolite matrix revealed that at temperatures below 20 kelvin, 4 angstrom tubes exhibit superconducting behavior manifest as an anisotropic Meissner effect, with a superconducting gap and fluctuation supercurrent. The measured superconducting characteristics display smooth temperature variations owing to one-dimensional fluctuations, with a mean-field superconducting transition temperature of 15 kelvin. Statistical mechanic calculations based on the Ginzburg-Landau free-energy functional yield predictions that are in excellent agreement with the experiments.

Journal Article↗

Characterization of a novel insertional mouse mutation, kkt: A closely linked modifier of Pax1.

We describe a novel transgene insertional mouse mutant with skeletal abnormalities characterized by a kinked tail and severe curvature of the spine. The disrupted locus is designated kkt for "kyphoscoliosis kinked tail." Malformed vertebrae including bilateral ossification centers and premature fusion of the vertebral body to the pedicles are observed along the vertebral column, and the lower thoracic and lumbar vertebrae are the most affected. Some of the homozygous kkt neonates displayed two backward-pointing transverse processes in the sixth lumbar vertebra (L6) that resembled the first sacral vertebra, and some displayed one forward- and one backward-pointing transverse process in L6. The fourth and fifth sternebrae were also fused, and the acromion process of the scapula was missing in kkt mice. The skeletal abnormalities are similar to those observed in the mouse mutant undulated (un). The transgene is integrated at the distal end of chromosome 2 close to the Pax1 gene, as revealed by FISH analysis. However, mutation of the Pax1 gene is responsible for the un phenotype, but the Pax1 gene in the kkt mice is not rearranged or deleted. Pax1 is expressed normally in kkt embryos and in the thymus of mature animals, and there is no mutation in its coding sequence. Thus, the skeletal abnormalities observed in the kkt mutant are not due to a lack of functional Pax1. Mouse genomic sequences flanking the transgene and PAC clones spanning the wild-type kkt locus have been isolated, and reverse Northern analysis showed that the PACs contain transcribed sequence. Compound heterozygotes between un and kkt (un(+/-)/kkt(+/-)) display skeletal abnormalities similar to those of un or kkt homozygotes, but they have multiple lumbar vertebrae with a split vertebral body that is more severe than in homozygous un or kkt neonates. Furthermore, the sternebrae are not fused and no backward-pointing transverse processes are detected in L6. It is therefore apparent that these two mutations do not fully complement each other, and we propose that a gene in the kkt locus possesses a unique role that functions in concert with Pax1 during skeletal development.

Animals↗

Characterization of three-dimensional tissue cultures using electrical impedance spectroscopy.

Electrical impedance spectroscopy was used to characterize the cell environment of multilayered cell cultures (MCCs), a culture system in which cells are grown on a permeable support membrane to form a thick disc of cells with tumor-like properties. Cultures were grown using SiHa tumor cells as well as V79 wild-type cells and V79/DOX cells cultivated to exhibit multidrug resistance. Electrical impedance measurements were made on MCCs over a frequency range of 0. 1 kHz to 1 MHz. Data analysis using a simple electrical model for the cell environment yielded estimates for parameters related to the intra- and extracellular resistance and net membrane capacitance, which were then related to MCC thickness. The extracellular fraction and tortuosity of the MCCs were determined in separate experiments where the rate of diffusion and the equilibrium level of C14-inulin, which does not penetrate the cell membrane, was measured within MCCs. Impedance measurements predicted the barrier to diffusion posed by the extracellular space of MCCs to be roughly two times greater than that inferred from the C14-inulin experiments. However, the relative ranking of the three cell types used to grow MCCs was similar for the two methods. Results indicate that impedance spectroscopy is well suited for use in characterizing the MCC cell environment, offering a fast, nondestructive method for monitoring cell culture growth and integrity.

Animals↗

Pleiotropic features of syndromic craniosynostoses correlate with differential expression of fibroblast growth factor receptors 1 and 2 during human craniofacial development.

Mutations in FGFR1, -2, and -3 are linked to five human craniosynostosis syndromes. In addition to premature fusion of cranial sutures, nonskeletal manifestations in skin, and teeth together with CNS abnormalities, reflect widespread effects of these mutations. To understand this pleiotropy, we have assessed craniofacial FGFR1 and -2 expression in the human embryo from 6 wk postfertilization. We found that both genes are expressed in sheets of condensed mesenchyme before overt chondrogenic differentiation and that distinct patterns of expression are established by 8 wk. Thus, FGFR2(BEK) is expressed evenly throughout developing cartilage and bone, whereas FGFR1 transcripts predominate in perichondria and periostea. Complementary patterns of FGFR1 and FGFR2(BEK and KGFR) expression are also observed in the enamel epithelium and papilla mesenchyme of the tooth germ, at a stage when morphogenetic tissue interactions ensue. Both genes are expressed in the cortical layer of the brain, but expression levels vary significantly within the choroid plexus and wall of the fourth ventricle. Similarly, tissue-specific differences in receptor expression are found in both the skin and salivary glands. These expression data are consistent with the pleiotropic manifestations of syndromic craniosynostoses and provide the basis for a new paradigm to explain the associated CNS problems.

Case-Control Studies↗

Intramedullary abscess of the spinal cord in the antibiotic era: clinical features, microbial etiologies, trends in pathogenesis, and outcomes.

We review the clinical features, microbial etiologies, mechanisms of infection, and outcomes of 25 cases of intramedullary abscess of the spinal cord (IASC) reported between 1977 and 1997, the modern era. All patients presented with motor and/or sensory neurological deficits. Back pain and/or radicular pain was common (60%); fever was present in a minority (40%) of patients. Preexisting abnormalities of the spinal cord and/or vertebral column were present in 44% of cases. Contiguous spread of infection through a congenital dermal sinus was the mechanism of infection in 24% of cases. The infection was fatal in 8% of cases; persistent neurological deficits were documented in 70% of patients who survived. To assess the impact of antimicrobial therapy on the pathogenesis and outcomes of IASC, cases reported in the modern era are compared with 42 cases of IASC reported between 1830 and 1944, the preantibiotic era.

Abscess↗

Laboratory evaluation of a dot-blot enzyme immunoassay for serologic confirmation of illness due to Rickettsia conorii.

Of the 169 United States Army soldiers who deployed on a field training exercise to a remote area of Botswana for two weeks in January 1992, more than 30% developed a febrile illness within five days of their return. A diagnosis of South African tick typhus was suggested by soldiers' exposure to ticks, as well as the presence of eschars and vesicles at the site of tick bites, and tender regional lymphadenopathies. This high attack rate, experienced during such a short exposure period, emphasizes the hazard of illness due to Rickettsia conorii to persons visiting endemic areas. A rapid, diagnostic, semiquantitative enzyme immunoassay (DS) for detection of IgG and IgM antibodies to R. conorii was performed on 209 acute and convalescent sera from soldiers in the outbreak and on 75 control sera. For the acute sera from soldiers meeting the probable case definition of having both regional lymphadenopathy and tick bite eschar, as judged by an IgG indirect fluorescent antibody (IFA) test, the resulting sensitivity and specificity of the DS test were 100% and 48%, respectively. In the analysis of the acute sera, the DS test identified as reactive more of the probable cases (62%) than either the IgG (16%) or IgM (55%) IFAs. This simple and rapid diagnostic test could be useful in establishing a preliminary diagnosis of R. conorii rickettsiosis in remote settings when immediate confirmation by IFA is impossible.

Antibodies, Bacterial↗