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A low-cost, accurate method of producing large quantities of digitally filtered images.

We demonstrate how to produce complex image transformations of bitmap files for vision experiments using the Cogimatic Vision Starter Kit (VSK) library of mathematical routines along with Visual Basic, C++, or the Delphi Pascal compiler. Implementing this system on an IBM-compatible PC running Windows 95, 98, or NT4 enables researchers to quickly and economically manipulate images for vision research. The VSK includes a simple stand-alone image-processing application. In addition, VSK has the ability to automate image transformations and to fully integrate image processing into new experimental software on the PC platform.

Costs and Cost Analysis↗

The task of explaining sight: Helmholtz's writings on vision as a test case for models of science popularization.

Studies of Helmholtz's popular lectures on science have concentrated on reconstructing his vision of the scientific enterprise, of its nature, its benefits, and its "civilizing power." This paper offers a different perspective by focusing on Helmholtz's attempts to expose his own scientific work to a wider public. Drawing on recent discussions about how to study science popularization, it analyzes how he made his work on sensory physiology accessible to various audiences. It is argued that the exposition of the theory of vision comprises a complex, multilayered transformation of epistemic messages, which includes the recasting of arguments, recontextualizations, shifting emphasis, and significant changes in style. The popular writings on vision were directed to several different audiences, and, as such, manifest a delicate balance between conflicting agendas. An analysis of the texts indicates that neither the traditional two-step model of science popularization nor the more recent attempt to regard popularization as an "expository continuum" provides appropriate historiographical frameworks to study the popularization of scientific knowledge.

Germany↗

Discrete analysis of spatial-sensitivity models.

The visual representation of spatial patterns begins with a series of linear transformations: the stimulus is blurred by the optics, spatially sampled by the photoreceptor array, spatially pooled by the ganglion-cell receptive fields, and so forth. Models of human spatial-pattern vision commonly summarize the initial transformations by a single linear transformation that maps the stimulus into an array of sensor responses. Some components of the initial linear transformations (e.g., lens blurring, photoreceptor sampling) have been estimated empirically; others have not. A computable model must include some assumptions concerning the unknown components of the initial linear encoding. Even a modest sketch of the initial visual encoding requires the specification of a large number of sensors, making the calculations required for performance predictions quite large. We describe procedures for reducing the computational burden of current models of spatial vision that ensure that the simplifications are consistent with the predictions of the complete model. We also describe a method for using pattern-sensitivity measurements to estimate the initial linear transformation. The method is based on the assumption that detection performance is monotonic with the vector length of the sensor responses. We show how contrast-threshold data can be used to estimate the linear transformation needed to characterize threshold performance.

Humans↗

Effects of increased complexity of visuo-motor transformations on children's arm movements.

The effects of increasing complexity of visuo-motor transformations on movement were examined in 4-, 6-, and 8-year-old children and adults. Participants performed a 'center-out' drawing task under three increasingly complex conditions: (1) Normal transformation: The target, line path and hand position were fully visible, in the horizontal plane, throughout the movement. (2) Aligned transformation: The target and line path were displayed horizontally above the workspace, with vision of the arm/hand occluded. (3) Vertical transformation: The target and line paths were presented on a vertical computer monitor with vision of the arm/hand occluded. Results showed that with increasing age, movements became faster, straighter, and smoother. The 4- and 6-year-old children were more variable in their specification of movement direction than the 8-year-old children and the adults, and were also more affected by the complexity of the transformation. This suggested that besides the complexity of the visual transformation, the familiarity/experienced environment might also play a role in 'sharpening' the transformation maps represented in movement planning.

Adult↗

The integration of palliative care and critical care: one vision, one voice.

As technological advances transform health care and the American population ages, care at the end of life (EOL) assumes ever-greater significance. Nurses in all practice settings and specialties are challenged to integrate quality palliative care into patient care. Today, this imperative is unifying the nursing profession, with help of the Nursing Leadership Academy for End-of-Life Care.

Critical Care↗

Colour vision screening in children: an evaluation of three pseudoisochromatic tests.

We examined 513 children (258 boys and 255 girls), between 3 and 11 years of age, with three pseudoisochromatic tests which involve different visual tasks. These were a selection of numeral designs from the Ishihara test, the Ishihara test for Unlettered Persons and the Velhagen Pfügertrident test. Eighteen children were found to be colour deficient. The symbol designs of the Unlettered Persons test were found to be the quickest and most effective method for examining children under 7 years of age. After 7 years of age the symbol designs of the Unlettered test and the numeral designs of Ishihara test were equally effective. The preferred numeral designs for screening children with the Ishihara plates are listed. Verbal identification always produced the most accurate results. Drawing over the figures or selecting replicas increased the viewing time and assisted children with normal colour vision to see both figures in transformation designs, especially pathway designs. The Velhagen Pfügertrident test was found to be unreliable for colour vision screening and younger children had difficulty performing the figure matching task.

Age Factors↗

Evil by default: the origins of dark visions.

The growing body of literature on transformational change reflects an increasing interest among professionals in understanding epiphany and visionary change. However, we typically assume that such quantum changes are positive and pro-social ones. It is equally possible for an individual to lead a life that is organized around a motivating vision that is destructive to self, others, or both. The author examines the phenomenon of "dark visions," offering some hypotheses as to their origins. The article also offers strategies to minimize the number of individuals who choose dark visions, with all their unfortunate consequences.

Dangerous Behavior↗

Spectral sharpening with positivity

Spectral sharpening is a method for developing camera or other optical-device sensor functions that are more narrowband than those in hardware, by means of a linear transform of sensor functions. The utility of such a transform is that many computer vision and color-correction algorithms perform better in a sharpened space, and thus such a space can be used as an intermediate representation for carrying out calculations. In this paper we consider how one may sharpen sensor functions such that the transformed sensors are all positive. We show that constrained optimization can be used to produce positive sensors in two fundamentally different ways: by constraining the coefficients in the transform or by constraining the functions directly. In the former method, we prove that convexity can be used to constrain the solution exactly. In a sense, we are continuing the work of MacAdam and of Pearson and Yule, who formed positive combinations of the color-matching functions. However, the advantage of the spectral sharpening approach is that not only can we produce positive curves, but the process is "steerable" in that we can produce positive curves with as good or better properties for sharpening within a given set of sharpening intervals. At base, however, it is positive colors in the transformed space that are the prime objective. Therefore we also carry out sharpening of sensor curves governed not by positivity of the curves themselves but of colors resulting from them. Curves that result have negative lobes but generate positive colors. We find that this type of constrained sharpening generates the best results, which are almost as good as for unconstrained sharpening but without the penalty of negative colors. All methods discussed may be used with any number of sensors.

Journal Article↗

The myth of upright vision. A psychophysical and functional imaging study of adaptation to inverting spectacles.

The adaptation to inverting prisms and mirror spectacles was studied in four subjects over periods of six to ten days. Subjects showed rapid adaptation of visuomotor functions, but did not report return of upright vision. The persistence of the transformed visual image was confirmed by the subjects' perception of shape from shading. No alteration of the retinotopy of early visual cortical areas was seen in the functional magnetic resonance images. These results are discussed in the context of previous claims of upright vision with inverting prisms and mirror spectacles.

Adaptation, Psychological↗

From three-dimensional space vision to prehensile hand movements: the lateral intraparietal area links the area V3A and the anterior intraparietal area in macaques.

The posterior parietal cortex is included in the dorsal cortical visual pathway underlying the three-dimensional (3-D) visual recognition of space and objects. The neurons in the lateral intraparietal area (LIP) respond visually to the three-dimensional objects, whereas those in the anterior intraparietal area (AIP) respond to hand movements to grasp them. LIP receives visual inputs from V3A, whereas AIP projects to the premotor areas; however, it is not known whether the neurons in LIP project to AIP. We herein investigated the connectional substrates that underlie the transformation of three-dimensional vision to prehensile hand movements in the Japanese monkey (Macaca fuscata). After identifying the three-dimensional visually responsive region in the posterior part of LIP by the unit recordings, we injected a bidirectional tracer, wheat germ agglutinin conjugated to horseradish peroxidase, into one of the recording sites. We found that LIP receives neuronal projections from V3A and sends axons to AIP. To confirm our findings, we injected several orthograde tracers into V3A and retrograde tracers into AIP in the same hemispheres. We found that the V3A neurons projecting to LIP terminate in the vicinity of the LIP neurons projecting to AIP. The results suggest that the cortical connections of V3A-LIP-AIP in the lateral bank of the intraparietal sulcus play an important role in the visuomotor transformation for prehensile hand movements.

Animals↗

The VA advantage: the gold standard in clinical informatics.

How does a healthcare organization undergo such transformation as described in the lead paper in eight short years? Just imagine being part of an organization that achieved the following transformations: (1) reduction in hospital and long-term-care beds from 92,000 to 53,000 and an increase in outpatient clinics from 200 to 850 (2) a 75% increase in the number of patients treated on an annual basis (from 2.8 million to 4.9 million) with only a 32% cumulative increase in budget (from $19 billion to $25 billion) (3) clinicians who have access to complete medical records for almost all patient visits and all care settings (4) clinicians who willingly enter medication orders 94% of the time (5) patients who are increasingly satisfied with their care, ranking the service consistently higher than the competition (6) improved patient outcomes, achieved at costs 25% less than the competition. Such transformation is impossible to achieve without vision, leadership, talent, teamwork and tools. I will restrict my comments to a discussion of the tools, specifically the VA's clinical information system (VistA, HealtheVet, My HealtheVet. However, it is important to note that the results described in this paper would not be possible without the VA's transformational leadership and dedicated teams of professionals capable of executing the vision.

Decision Support Systems, Clinical↗

Issuing the challenge: creating leadership for health information management.

Fundamental and profound changes are occurring within the health care industry that directly affect and change the roles and functions of health information managers. To meet and survive these changes, the health information management profession must exercise leadership and transform itself. A model of leadership consisting of systems thinking, personal mastery, mental models, shared vision, and team learning to accomplish this transformation is described.

Hospital Administrators↗

Transforming end-of-life care for the 21st century: the hospice vision.

Hospice is recognized as the model for excellence in end-of-life care but its accessibility remains limited. A committee of the National Hospice Organization recently examined the barriers to hospice care and articulated a vision for quality end-of-life care for the 21st century. Its recommendations include public policy changes and other initiatives involving research, the education and practice of health professionals, the engagement of the public, and the operation of hospice programs.

Journal Article↗

Line detection in images through regularized Hough transform.

The problem of determining the location and orientation of straight lines in images is of great importance in the fields of computer vision and image processing. Traditionally the Hough transform, (a special case of the Radon transform) has been widely used to solve this problem for binary images. In this paper, we pose the problem of detecting straight lines in gray-scale images as an inverse problem. Our formulation is based on use of the inverse Radon operator, which relates the parameters determining the location and orientation of the lines in the image to the noisy input image. The advantage of this formulation is that we can then approach the problem of line detection within a regularization framework and enhance the performance of the Hough-based line detector through the incorporation of prior information in the form of regularization. We discuss the type of regularizers that are useful for this problem and derive efficient computational schemes to solve the resulting optimization problems enabling their use in large applications. Finally, we show how our new approach can be alternatively viewed as one of finding an optimal representation of the noisy image in terms of elements chosen from a dictionary of lines. This interpretation relates the problem of Hough-based line finding to the body of work on adaptive signal representation.

Algorithms↗

Visuomotor functions of the posterior parietal cortex.

In this special issue of Neuropsychologia leading experts in the field discuss controversies and advances in the role of the posterior parietal cortex (PPC) in visuomotor control. The papers are wide-ranging in their scope, covering monkey physiology and anatomy, functional imaging in humans and monkeys as well as transcranial magnetic stimulation and lesion studies in humans. The collection provides an important overview of the current state-of the-art in this area of research, including discussions on homologies between monkey and human parietal regions, the role of co-ordinate transformations and intermediate representations from vision to action, and reviews of controversial hot topics in this field.

Animals↗

Achieving results through transformational leadership.

Transformational leaders must balance capable management with transformational skills that create shared vision, inspire others to embrace it, and empower them to lead implementation efforts. This balancing act requires leaders to be grounded in their personal values, live a balanced life, and continuously learn. A case example demonstrates how a former nurse executive, now a chief operating officer of one of the nation's top 100 integrated health systems, puts these concepts into action.

Administrative Personnel↗

Pattern recognition as a nursing intervention with Japanese women with ovarian cancer.

This article explores the process of pattern recognition, contained within Newman's theory of health as expanding consciousness, as a nursing intervention with adults with ovarian cancer. The process of the nurse-client interactive pattern revealed four nonlinear phases: the client-nurse mutual concern, pattern recognition, vision and action potential, and transformation. Most participants found meaning in their lives and experienced personal growth in expanding consciousness.

Adaptation, Psychological↗

Learning in a simple motor system.

Motor learning is a very basic, essential form of learning that appears to share common mechanisms across different motor systems. We evaluate and compare a few conceptual models for learning in a relatively simple neural system, the vestibulo-ocular reflex (VOR) of vertebrates. We also compare the different animal models that have been used to study the VOR. In the VOR, a sensory signal from the semicircular canals is transformed into a motor signal that moves the eyes. The VOR can modify the transformation under the guidance of vision. The changes are persistent and share some characteristics with other types of associative learning. The cerebellar cortex is directly linked to the VOR reflex circuitry in a partnership that is present in all vertebrates, and which is necessary for motor learning. Early theories of Marr, Albus, and Ito, in which motor memories are stored solely in the cerebellar cortex, have not explained the bulk of the experimental data. Many studies appear to indicate a site of learning in the vestibular nuclei, and the most successful models have incorporated long-term memory storage in both the cerebellar cortex and the brainstem. Plausible cellular mechanisms for learning have been identified in both structures. We propose that short-term motor memory is initially stored in the cerebellar cortex, and that during consolidation of the motor memory the locus of storage shifts to include a brainstem site. We present experimental results that support our hypothesis.

Animals↗