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Daniel J O'Leary

Publications and source records attributed to Daniel J O'Leary.

14 recordsLinked to original sources

Qualitative and quantitative measurements of hydrogen bond mediated scalar couplings in acyclic 1,3-diols.

[Structure: see text] OH...OH hydrogen bond mediated scalar couplings have been observed in acyclic syn- and anti-1,3-diols using a 2D 1H COSYLR NMR experiment and quantified with an uncertainty of +/-0.02 Hz with a selective-excitation spin-echo NMR experiment. A theoretical investigation confirmed the importance of the hydrogen bond in mediating the spin-spin coupling in these systems.

Hydrocarbons, Acyclic↗

Model compounds of ruthenium-alkene intermediates in olefin metathesis reactions.

The development of a model system to study ruthenium-olefin complexes relevant to the mechanism of olefin metathesis is reported. Upon addition of 1,2-divinylbenzene to (H2IMes)(py2)(Cl)2Ru=CHPh (H2IMes = 1,3-dimesityl-4,5-dihydroimidazol-2-ylidene), two ruthenium-olefin adducts are formed. On the basis of 1H NMR spectroscopy experiments and X-ray crystallographic analysis, these complexes are assigned as side-bound isomers in which the olefin and H2IMes ligands are coordinated cis to each other. The dynamic interconversion of these two ruthenium complexes was determined to have a barrier of 19.1 +/- 0.1 kcal/mol.

Alkenes↗

Direct assignment of the relative configuration in acyclic 1,3-diols by 1H NMR spectroscopy.

[chemical reaction: see text]. Using an operationally simple deuterium isotopic perturbation method, the relative configuration of 1,3-diols can be determined directly using 1H NMR spectroscopy. A comparison of the OH chemical shifts for OH/OH and OH/OD isotopomers provides a reliable assessment of the relative configuration of the diol; anti-1,3-diols within polyacetate and polypropionate frameworks have upfield isotope shifts of 2-16 ppb, whereas syn-1,3-diols show upfield isotope shifts of 20-33 ppb.

Alcohols↗

Accommodation functions: co-dependency and relationship to refractive error.

We assessed the extent to which different accommodative functions are correlated and whether accommodative functions predict the refractive error or the progression of myopia over a 12 month period in 64 young adults (30 myopes and 34 non-myopes). The functions were: amplitude of accommodation; monocular and binocular accommodative facility (6 m and 40 cm); monocular and binocular accommodative response to target distance; AC/A and CA/C ratios, tonic accommodation (dark focus and pinhole), accommodative hysteresis, and nearwork-induced transient myopia. Within groups of related accommodative functions (such as facility measures or open-loop measures) measurements on individuals were generally significantly correlated, however correlations between functions from different groups were generally not significant. Although accommodative amplitude and pinhole (open loop) accommodation were significantly different in myopes than in non-myopes, these functions were unrelated to myopia progression. Facility of accommodation and accommodative lag was independent predictors of myopia progression.

Accommodation, Ocular↗

An isosparteine derivative for stereochemical assignment of stereogenic (chiral) methyl groups using tritium NMR: theory and experiment.

(N-CHDT)-(alpha)-isosparteinium ditosylamide can be used in conjunction with tritium NMR spectroscopy to assign the configuration of an intact stereogenic (chiral) methyl group. The S-CHDT group has a (3)H chemical shift that is 49 ppb downfield of the R-CHDT resonance. The sign and magnitude of this chemical shift difference of these diastereotopic tritium nuclei are found to be in agreement with predictions made via a purely ab initio computational approach. The chemical shift difference is due to an equilibrium isotope effect originating from a novel CH(3)(...)N hydrogen bond. Despite the improved tritium chemical shift dispersion, this method is not useful for determining the enantiopurity of CHDTN(Tos)(2) due to partial racemization that occurs during the derivatization step. Milder methylation conditions are described for reactions using methyl p-toluenesulfonate or methyl-d(3) triflate. These studies suggest that (-)-(alpha)-isosparteine is a potential new reagent for chirality analysis of methyl groups originating from suitably reactive electrophiles.

Journal Article↗

Structure-selectivity relationships and structure for a peptide-based enantioselective acylation catalyst.

Studies of analogues of a recently discovered enantioselective peptide-based catalyst for enantioselective acylation reactions have led to mechanistic insight and improved catalysts. Systematic replacement of each residue within the parent peptide with alanine of the appropriate stereochemistry allows for an unambiguous evaluation of the kinetic role of each amino acid side chain in the catalyst. The results of the alanine scan support a bifunctional catalysis mechanism at the heart of the origin of enantioselectivity. In addition, an experimentally derived solution structure of the peptide-based catalyst is presented that supports a key role for each residue within the peptide chain.

Acylation↗

Effect of positive and negative defocus on contrast sensitivity in myopes and non-myopes.

This study investigated the effect of lens induced defocus on the contrast sensitivity function in myopes and non-myopes. Contrast sensitivity for up to 20 spatial frequencies ranging from 1 to 20 c/deg was measured with vertical sine wave gratings under cycloplegia at different levels of positive and negative defocus in myopes and non-myopes. In non-myopes the reduction in contrast sensitivity increased in a systematic fashion as the amount of defocus increased. This reduction was similar for positive and negative lenses of the same power (p = 0.474). Myopes showed a contrast sensitivity loss that was significantly greater with positive defocus compared to negative defocus (p = 0.001). The magnitude of the contrast sensitivity loss was also dependent on the spatial frequency tested for both positive and negative defocus. There was significantly greater contrast sensitivity loss in non-myopes than in myopes at low-medium spatial frequencies (1-8 c/deg) with negative defocus. Latent accommodation was ruled out as a contributor to this difference in myopes and non-myopes. In another experiment, ocular aberrations were measured under cycloplegia using a Shack-Hartmann aberrometer. Modulation transfer functions were calculated using the second order term for defocus as well as the fourth order Zernike term for spherical aberration. The theoretical maximal contrast sensitivity based on aberration data predicted the measured asymmetry in contrast sensitivity to positive and negative defocus that was observed in myopic subjects. The observed asymmetry in contrast sensitivity with positive and negative defocus in myopes may be linked to the altered accommodative response observed in this group.

Accommodation, Ocular↗

Unequal reduction in visual acuity with positive and negative defocusing lenses in myopes.

Myopes have a reduced accommodative response to negative lenses compared with nonmyopes. Mathematical models predict that the reduced accommodative response is due to a decrease in sensitivity to blur in myopes. We examined the effect of blur induced by positive and negative defocusing lenses on visual acuity in 12 myopes and 12 nonmyopes during cycloplegia for up to +/-3.00 D of defocus in 0.25 D steps. Although nonmyopes showed a symmetrical reduction in visual acuity with positive and negative lenses, the myopic group showed less acuity loss with negative lenses compared with positive lenses. The magnitude of visual acuity loss was lower with negative lenses in myopes compared with nonmyopes. No significant difference in visual acuity with positive lenses was found between myopes and nonmyopes. Residual accommodation (after cycloplegia) was about 0.20 D in both myopes and nonmyopes and was too small to explain the relatively good visual acuity through minus lenses in the myopic group. The reduced accommodative response known to occur in myopes may be due to the relatively small effect that negative lens blur has on their visual acuity.

Accommodation, Ocular↗

Fomenting proton anisochronicity in the CH2D group.

A novel C-D...N interaction promotes an equilibrium isotope effect that causes a large chemical shift difference (43 ppb, 22 degrees C) for the diastereotopic methyl protons in the (N-CH2D)-(-)-isosparteinium cation. The observed chemical shift difference is in surprising agreement with a prediction of 44 ppb based upon an ab initio protocol. These calculations are also shown to reproduce the experimental shift difference in Anet's alpha-deutero-1,2-dimethylpiperidine (theory, 17 ppb; experiment, 14 ppb). The isosparteine-derived system described herein may provide an improved method for assigning the configuration and enantiomeric purity of stereogenic methyl groups (R-CHDT) by tritium NMR spectroscopy.

Journal Article↗

Repeatability and validity of the PowerRefractor and the Nidek AR600-A in an adult population with healthy eyes.

We assessed the repeatability and validity of the PowerRefractor and the Nidek AR-600A autorefractor. This is the first independent study conducted on adults to evaluate the performance of these instruments in a laboratory setting. Fifty subjects (23 males and 27 females) aged 16 to 61 years (mean, 37 +/- 12) participated in the study. The validity of the PowerRefractor and the Nidek autorefractor readings were determined by comparing them to subjective refraction. Measurements of refractive error were obtained from the two instruments on two separate occasions to assess their repeatability. The measured refractive error was converted into a dioptric power matrix for data analysis. No significant difference was found between the measurements obtained with the two instruments and the subjective refraction. The estimate of refractive error given by the two instruments was also found to be repeatable. In addition to measuring the refractive error, the PowerRefractor also offers the facility to measure eye position, pupil size, and dynamics of accommodation. We suggest some improvements to the PowerRefractor measurement technique to standardize its clinical use and to improve accuracy.

Adolescent↗

Using equilibrium isotope effects to detect intramolecular OH/OH hydrogen bonds: structural and solvent effects.

A comparative (1)H NMR study of partially deuterated 1,3- and 1,4-diols has demonstrated that intramolecular hydrogen bonds of different geometry can give rise to equilibrium isotope shifts of opposite sign in hydrogen-bond-accepting solvents such as DMSO-d(6), acetone-d(6), and THF-d(8). The sign inversion is interpreted in terms of the ability of solvent molecules to form competitive intermolecular hydrogen bonds with the diol and in terms of the limiting chemical shifts for the interior and exterior hydroxyl groups. Deuterium is shown to prefer the intermolecular solvent hydrogen bond by 10.9 +/- 0.5 cal/mol for 1,4-diol 3 dissolved in DMSO-d(6) at room temperature. Pyridine-d(5) is shown to be capable of amplifying positive (downfield) isotope shifts measured in DMSO-d(6), in some cases by as much as a factor of 3. Its use is demonstrated for the assignment of the syn or anti relative configuration of 2,4-pentanediol and for the amplification of isotope shifts used to detect intramolecular hydrogen bonds in alpha- and beta-cyclodextrin. Studies in apolar solvents such as CD(2)Cl(2) and benzene-d(6) reveal that the isotope shift is negative (upfield) for all hydrogen bond geometries studied. Larger isotope shifts are measured in benzene-d(6), and a rationale for this amplification is presented. The use of apolar solvents is particularly useful for assigning the syn or anti configuration of 2,4-pentanediol.

Alcohols↗

Undercorrection of myopia enhances rather than inhibits myopia progression.

The effect of myopic defocus on myopia progression was assessed in a two-year prospective study on 94 myopes aged 9-14 years, randomly allocated to an undercorrected group or a fully corrected control group. The 47 experimental subjects were blurred by approximately +0.75 D (blurring VA to 6/12), while the controls were fully corrected. Undercorrection produced more rapid myopia progression and axial elongation (ANOVA, F(1,374)=14.32, p<0.01). Contrary to animal studies, myopic defocus speeds up myopia development in already myopic humans. Myopia could be caused by a failure to detect the direction of defocus rather than by a mechanism exhibiting a zero-point error.

Adolescent↗

Are there age differences in the accommodative response curve between 3 and 14 years of age?

The monocular ocular accommodative responses of 118 emmetropic children, aged from 3 to 14 years, were measured at five different stimulus distances (0, 1, 2, 3, 4 D) from the principal plane of the eye with a Canon Autoref R-1. The change in the accommodative response curve in emmetropic children between 3 and 14 years old was found to be negligible.

Accommodation, Ocular↗