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D C Hood

Publications and source records attributed to D C Hood.

At least 19 recordsLinked to original sources

Disease sequence from mutant rhodopsin allele to rod and cone photoreceptor degeneration in man.

Mutations in the gene encoding rhodopsin, the visual pigment in rod photoreceptors, lead to retinal degeneration in species from Drosophila to man. The pathogenic sequence from rod cell-specific mutation to degeneration of rods and cones remains unclear. To understand the disease process in man, we studied heterozygotes with 18 different rhodopsin gene mutations by using noninvasive tests of rod and cone function and retinal histopathology. Two classes of disease expression were found, and there was allele-specificity. Class A mutants lead to severely abnormal rod function across the retina early in life; topography of residual cone function parallels cone cell density. Class B mutants are compatible with normal rods in adult life in some retinal regions or throughout the retina, and there is a slow stereotypical disease sequence. Disease manifests as a loss of rod photoreceptor outer segments, not singly but in microscopic patches that coalesce into larger irregular areas of degeneration. Cone outer segment function remains normal until >75% of rod outer segments are lost. The topography of cone loss coincides with that of rod loss. Most class B mutants show an inferior-nasal to superior-temporal retinal gradient of disease vulnerability associated with visual cycle abnormalities. Class A mutant alleles behave as if cytotoxic; class B mutants can be relatively innocuous and epigenetic factors may play a major role in the retinal degeneration.

Adult

Root stimulation improves the detection of acquired demyelinating polyneuropathies.

Thirty-one patients with a presentation compatible with an acquired demyelinating polyradiculoneuropathy were prospectively evaluated for proximal conduction block using root stimulation (RS) of cervical and/or lumbar roots. These same techniques were applied to 78 controls (40 pathological). Proximal conduction block was noted in 20/31 cases and none of the controls. Only 7 of 31 cases met published demyelinating criteria. Intravenous immune globulin therapy was completed by 21/31 patients and 20/21 responded. RS is superior to published electrophysiologic criteria for identifying demyelinating polyneuropathies and predicting who will respond to treatment. RS should be performed in all patients suspected of having an acquired demyelinating polyneuropathy when traditional nerve conduction studies criteria are nondiagnostic. RS reliably predicts those likely to respond to immunosuppressive therapy.

Adult

Assessment of local retinal function in patients with retinitis pigmentosa using the multi-focal ERG technique.

To assess local retinal function in patients with retinitis pigmentosa (RP), multi-focal ERGs and local thresholds (static visual fields) were obtained on eight RP patients with visual acuities of 20/25 or better. All eight patients showed multi-focal responses with normal timing within the central 5 deg. However, there were few responses with normal timing in the areas outside the central 7.5 deg, except in the case of the only patient with a 30 Hz full-field response with normal timing. Since full-field ERGs are dominated by responses from the periphery, this finding supplies a foundation for the commonly observed delays in the full-field cone ERGs of patients with RP. With respect to amplitude, only two patients showed multi-focal responses with near normal amplitudes anywhere in the field. The loss of amplitude at any point was not a good predictor of visual sensitivity in the Humphrey visual field. On the other hand, all areas with normal timing had near normal sensitivity. Timing changes appear to be an early indication of local retinal damage to the cone system. Nearly all areas with sensitivity losses greater than 0.5 log unit, and some areas with near normal sensitivity, showed significantly delayed multi-focal ERGs. Finally areas with extreme sensitivity loss show multi-focal responses with a wide range of amplitudes and implicit times across patients, suggesting different mechanisms of disease action in different patients.

Adult

Lower-level visual processing and models of light adaptation.

Before there was a formal discipline of psychology, there were attempts to understand the relationship between visual perception and retinal physiology. Today, there is still uncertainty about the extent to which even very basic behavioral data (called here candidates for lower-level processing) can be predicted based upon retinal processing. Here, a general framework is proposed for developing models of lower-level processing. It is argued that our knowledge of ganglion cell function and retinal mechanisms has advanced to the point where a model of lower-level processing should include a testable model of ganglion cell function. This model of ganglion cell function, combined with minimal assumptions about the role of the visual cortex, forms a model of lower-level processing. Basic behavioral and physiological descriptions of light adaptation are reviewed, and recent attempts to model lower-level processing are discussed.

Adaptation, Ocular

Multifocal rod electroretinograms.

PURPOSE: To assess the feasibility of obtaining reliable multifocal rod electroretinograms (ERGS) and to compare them to full-field ERGs. METHODS: Multifocal rod ERGs were recorded using a stimulus array of 61 hexagons. The minimum number of dark, blank frames between flashes was varied from 0 (a minimum of 13.3 msec between flashes) to 21 (a minimum of 293 msec between flashes). Full-field ERGs were obtained using trains of flashes designed to simulate the multifocal sequences. Flashes were blue (W47B), except in a few cases in which red (W26) was used to check for cone intrusion. Flash intensities varied from -1 to 1.7 log scot td-s. RESULTS: Dark-adapted, multifocal ERGs to blue flashes had a small, early component followed by a larger, late component. The early component showed little change in amplitude with increasing intensity. Comparisons with the full-field ERGs indicated that the early component was the focal response. The larger, late component was the response to stray light, and it can be suppressed with the addition of a surround. The focal response was from a relatively circumscribed retinal region. This is shown by comparing the multifocal rod responses from a patient with retinitis pigmentosa to her behaviorally measured rod visual field. CONCLUSIONS: By choosing conditions (namely, flashes of moderate intensity with a surround) to minimize the effects of stray light, multifocal rod ERGs can be recorded with sufficient localization to be clinically useful. However, the signal-to-noise ratio of these multifocal rod ERGs was poorer than for multifocal cone responses for comparable recording periods because of the need for blank frames and the slower recovery of the rods to successive presentations.

Adult

A 60-year-old woman with weakness, fatigue, and acute respiratory failure: case report and discussion of the differential diagnosis.

A 60-year-old woman with chronic progressive fatigue, diurnal somnolence, proximal muscle weakness, and dyspnea developed acute respiratory failure when given supplemental oxygen. Hypoventilation secondary to neuromuscular dysfunction was suspected by the critical care specialist. Neurologic consultation and supportive laboratory evaluations led to the diagnosis of acid maltase deficiency, which was confirmed by muscle biopsy. The discussion includes a literature review that describes the pathophysiology and treatment of this rare muscle enzyme deficiency disorder. Acid maltase deficiency should be suspected in any adult presenting with hypoxemia, fatigue, and acute respiratory failure.

Acute Disease

A comparison of surgeon's assessment to patient's self analysis (short form 36) after far lateral lumbar disc surgery. An outcome study.

STUDY DESIGN: Between 1984 and 1994, 170 patients had surgery for far lateral discs. Patients were assessed by the surgeon as having poor (no improvement, increased deficit), fair (mild improvement, moderate residual deficit), good (moderate improvement, mild residual deficit) or excellent (marked improvement, no deficit) physical outcomes. The Medical Outcome Trust's SF-36 survey was completed by 76 (45%) patients, using one interviewer. OBJECTIVES: Patient-based outcome studies are becoming increasingly important. A surgeon's assessment of outcome was compared with the patients' self assessment (Short Form 36) after far lateral lumbar disc surgery. SUMMARY OF BACKGROUND DATA: The SF-36 survey provides measures on eight dimensions: physical function, role physical, bodily pain, general health, vitality, social function, role-emotional, and mental health. METHODS: Patients averaged 60.1 years of age, and included 43 men and 33 women. Patients were last examined an average of 9.1 months after their surgery, and were interviewed by telephone an average of 2.8 years later. RESULTS: Patients completing the survey were evaluated on their last visit to the surgeon as having excellent (32 patients), good (24), fair (12), and poor (8) outcomes. Overall correlations between the surgeon's assessment and all 76 patients' SF-36 scores were modest. However, for those patients examined within 4.5 years of the surgeon's assessment (n = 56), correlations were statistically significant for 6 of the SF-36 measures. Only general health and social function showed correlations less than 0.25. CONCLUSIONS: The surgeon's assessment was a particularly good predictor of SF-36 measures if the surgeon assessed the patient within the past 4.5 years. The SF-36 should be useful for large-scale outcome studies.

Aged

Fast and localized event-related optical signals (EROS) in the human occipital cortex: comparisons with the visual evoked potential and fMRI.

Localized evoked activity of the human cortex produces fast changes in optical properties that can be detected noninvasively (event-related optical signal, or EROS). In the present study a fast EROS response (latency approximately 100 ms) elicited in the occipital cortex by visual stimuli showed spatial congruence with fMRI signals and temporal correspondence with VEPs, thus combining subcentimeter spatial localization with subsecond temporal resolution. fMRI signals were recorded from striate and extrastriate cortex. Both areas showed EROS peaks, but at different latencies after stimulation (100 and 200-300 ms, respectively). These results suggest that EROS manifests localized neuronal activity associated with information processing. The temporal resolution and spatial localization of this signal make it a promising tool for studying the time course of activity in localized brain areas and for bridging the gap between electrical and hemodynamic imaging methods.

Adult

Probed-sinewave paradigm: a test of models of light-adaptation dynamics.

Studies of light adaptation have, in general, employed either aperiodic or periodic stimuli. In earlier work, models originally developed to predict the results from one tradition failed to predict results from the other but the models from the two traditions could be merged to predict phenomena from both. To further test these merged models, a paradigm combining both types of stimuli was used. The threshold for a brief flash (the probe) was measured at various phases on a background that was varied sinusoidally in time. The probe threshold depends upon the phase at which it is presented for all background frequencies used, 0-16 Hz. These threshold variations are not well described by a sinewave; the peak threshold is > 180 deg out of phase with the trough threshold. Further, the positions of the peaks and troughs shift fairly abruptly at background modulations of 4-8 Hz. The difference between the peak and trough thresholds varies as a function of temporal frequency in a manner approximating the temporal contrast sensitivity function. The dc level (mean threshold) does not. The peak-trough difference dominates at low frequencies of background modulation, while the dc level dominates for higher frequencies. Existing models of light adaptation do not predict the key features of the data.

Adaptation, Ocular

Evidence for photoreceptor changes in patients with diabetic retinopathy.

PURPOSE: To determine whether the rod and cone photoreceptors are affected in patients with diabetic retinopathy. METHODS: Twelve patients with diabetes and varying levels of retinopathy and nine age-similar control observers participated in this study. Two-color (500 versus 650 nm) dark-adapted thresholds were measured as a function of retinal eccentricity. Full-field flash electroretinograms were obtained using brief, high-intensity flashes. Dark-adapted rod-isolated (Wratten 47B filter) and light-adapted cone-isolated (Wratten 26 filter) electroretinographic responses were measured as a function of flash intensity. The a-wave data were fitted with a model based on photopigment transduction to obtain values for the parameters of Rmax (the maximal response) and log S (sensitivity). Standard clinical 30-Hz flicker electroretinographic responses were also measured. RESULTS: Psychophysically measured dark-adapted thresholds were elevated primarily at eccentricities of 5 degrees and 10 degrees from the fovea. Analysis of rod and cone a-wave data showed that Rmax was normal in most of the patients, but log S was reduced. Analysis of b-wave and oscillatory potential parameters showed rod and cone postreceptoral abnormalities, including changes in the rod-isolated semisaturation constant (log k), cone-mediated 30-Hz flicker, and cone-isolated oscillatory potentials. The electrophysiological results were not significantly correlated with blood glucose or glycosylated hemoglobin level. CONCLUSIONS: The results provide evidence for rod and cone receptoral and postreceptoral deficits in patients with diabetic retinopathy. The photoreceptor changes are primarily in the log S (sensitivity) parameter and are attributed to transduction abnormalities.

Adult

Sites of disease action in a retinal dystrophy with supernormal and delayed rod electroretinogram b-waves.

Delayed rod ERG b-waves in patients with an unusual retinal dystrophy have been attributed by some to an abnormality in receptor cGMP activity. Here the sites of disease action are studied by analyzing rod and cone ERGs using new analytical methods and a wide range of stimulus intensities. Consistent with previous reports, the five patients studied showed rod b-waves that were normal or supernormal in amplitude in response to intense flashes, but smaller than normal and markedly delayed in response to weaker flashes. The cone ERGs, recorded to 29 Hz flicker and to flashes upon a background, were smaller than normal and also showed delays. Models of phototransduction fitted to rod and cone a-waves indicated that the delays in the rod and cone b-waves were not due to the speed or amplification of the transduction process. An analysis of the derived inner nuclear layer (INL) response suggests that the sites of disease action are beyond the outer segment and involve a delay in the activation of INL activity.

Adolescent

Abnormalities of the retinal cone system in retinitis pigmentosa.

Patients with retinitis pigmentosa (RP) show delayed inner retinal responses as measured by the cone ERG response to a 30 Hz stimulus. To determine the extent to which this delay results from abnormalities of cone phototransduction, cone ERGs to single flashes were obtained from 21 patients with RP and a model of cone phototransduction was fitted to the leading edge of the a-waves of these ERGs. Nearly all patients showed an abnormally low sensitivity of cone phototransduction consistent with a reduction in the amplification of transduction. This abnormality can account for part of the delayed 30 Hz response. Analysis of post-receptoral potentials indicated that RP also slows the responses of the inner retina. A combination of these two factors, a sensitivity change at the receptor and a delay in the response of the inner retina, produces the delayed response of the cone flicker ERG in patients with RP.

Adaptation, Ocular

The enhanced S cone syndrome: an analysis of receptoral and post-receptoral changes.

The purpose of the study was to test the hypothesis that the retinae of patients with enhanced S cone syndrome (ESCS) have more S cones than the normal retina and these cones have replaced some of the L and M cones. Standard and spectral full-field electroretinograms, measurements of L, M, and S cone system sensitivities and S cone acuity were obtained from three patients with ESCS. The results were qualitatively consistent with the presence of more S cones and more S cone ganglion cells. To test this hypothesis further, a model of the receptoral and post-receptoral components of the S cone system was used in conjunction with psychophysical measurements of S cone system sensitivity under flashed and steady-state adaptation conditions. Within the context of the model, the data were consistent with an increase in the number of S cones and S - (L + M) ganglion cells and with a decrease in the total L + M cone input to each S - (L + M) ganglion cell.

Adaptation, Ocular

Rod photoreceptor transduction is affected in central retinal vein occlusion associated with iris neovascularization.

Patients with central retinal vein occlusion who later develop iris neovascularization show changes in the amplitude, the timing, and the sensitivity of the electroretinogram beta wave. We determined the extent to which rod photoreceptor dysfunction contributes to these changes by recording single-flash electroretinograms from both eyes of 52 patients with unilateral central retinal vein occlusion and fitting the leading edges of alpha waves with a model of rod phototransduction. Eyes with central retinal vein occlusion showed reductions in photoreceptor gain but no changes in photoreceptor amplitude when compared with the fellow eyes. The reductions were larger in eyes that developed iris neovascularization and were predictive of this complication. Photoreceptor gain reductions accounted for only part of the beta-wave timing delays and sensitive loss; the remainder is attributed to functional loss in the inner nuclear layer.

Adult

Recovery kinetics of human rod phototransduction inferred from the two-branched alpha-wave saturation function.

Electroretinographic data obtained from human subjects show that bright test flashes of increasing intensity induce progressively longer periods of apparent saturation of the rod-mediated electroretinogram (ERG) alpha wave. A prominent feature of the saturation function [the function that relates the saturation period T with the natural logarithm of flash intensity (ln I(f)] is its two-branched character. At relatively low flash intensities (I(f) below approximately 4 x 10(4) scotopic troland second), T increases approximately in proportion to ln I(f) with a slope [delta T/delta (ln I(f)] of approximately 0.3 s. At higher flash intensities, a different linear relation prevails, in which [deltaT/delta(ln I(f) is approximately 2.3 s [Invest. Ophthalmol. Vis. Sci. 36, 1603 (1995)]. Based on a model for photocurrent recovery in isolated single rods [Vis. Neurosci. 8, 9 (1992)], it was suggested that the upper-branch slope of approximately 2.3 s represents tau R*, the lifetime of photoactivated rhodopsin (R*). Here we show that a modified version of this model provides an explanation for the lower branch of the alpha-wave saturation function. In this model, tau E* is the exponential lifetime of an activated species (E*) within the transducin or guanosine 3', 5'-cyclic monophosphate (cGMP) phosphodiesterase stages of rod phototransduction; the generation of E* by a single R* occurs within temporally defined, elemental domains of disk membrane; and Ex, the immediate product of E* deactivation, is converted only slowly (time constant tau Ex) to E, the form susceptible to reactivation by R*. The model predicts that the decay of flash-activated cGMP phosphodiesterase (PDE*) is largely independent of the deactivation kinetics of R* at early postflash times (i.e., at times preceding or comparable with the lifetime tau E*) and that the lower-branch slope (approximately 0.3s) of the a-wave saturation function represent tau E*. The predicted early-stage independence of PDE* decay and R* deactivation furthermore suggests a basis for the relative constancy of the single-photon response observed in studies of isolated rods. Numerical evaluation of the model yields a value of approximately 6.7s for the time constant tau Ex.

Humans

Beta wave of the scotopic (rod) electroretinogram as a measure of the activity of human on-bipolar cells.

The beta wave of the human electroretinogram (ERG) is widely believed to reflect the activation of on-bipolar cells. However, the shape of the beta wave is also influenced by the activity of other cell types. To assess how the activity of on-bipolar cells is reflected in the human ERG, rod ERG's were recorded in the dark and on the steady fields. Derived P2 responses were obtained by computer subtraction of the receptor contribution to the ERG. The light-adapted derived P2 was shown to have properties similar to those predicted from previous studies of on-bipolar activity. This was also true of the dark-adapted derived P2 if a small (less than 10%) contribution from a negative potential was taken into consideration. The derived P2, and under certain conditions the beta wave, can be used to study rod on-bipolar activity.

Dark Adaptation

Phototransduction in human cones measured using the alpha-wave of the ERG.

To study human cone phototransduction, the alpha-wave of the ERG was recorded from color normals, dichromats, and patients with retinitis pigmentosa. A model of the activation phase of phototransduction, previously fitted to responses from single rods and the rod alpha-wave, was modified and fitted to the human cone alpha-wave. The modified model fits the cone alpha-wave well and allows questions about human cone phototransduction to be addressed. In particular, we conclude that: (1) the amplification of the activation phase of human cone transduction is comparable to that of the human rods. (2) Steady lights have relatively little effect on the amplification of cone transduction. (3) The normal alpha-wave elicited by red flashes is dominated by the L cones, consistent with a ratio of L:M cones of > 1. (4) Retinitis pigmentosa caused by mutations of the rhodopsin gene can affect cone phototransduction. Finally, a simpler computational expression is shown to approximate the modified model's responses.

Adult