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R Loeb

Publications and source records attributed to R Loeb.

At least 19 recordsLinked to original sources

Using cognitive work analysis to design clinical displays.

In today's ICUs clinicians routinely integrate huge numbers of discrete data points to arrive at a coherent picture of their patients' status. Often the clinician must obtain those data elements from many devices, which makes the problem more difficult. Because presenting data visually amplifies cognition by capitalizing on well-known human perceptual capabilities, it is not surprising that a growing body of research is directed at the effective presentation of visual information in clinical displays. However, developing clinical displays that effectively support clinicians' integration and understanding of many discrete data elements in complex, high technology work domains such as ICUs remains elusive. It may be that traditional analysis and design methods simply are inadequate for this kind of complex environment. Vicente has described a new methodology, called "cognitive work analysis" (CWA), which is targeted at the analysis of complex work domains. The analysis differs from traditional analytic methods in significant ways, particularly in its primary focus on analysis of the work domain, but also in its prescription for explicitly collecting information at five levels (the work domain, diagnostic and treatment tasks, diagnostic strategies, socio-organizational, and clinician skills) that place constraints on the ultimate display design. In this model, the order of data collection is also crucial. Because the work domain constraints tend to be the most permanent, they are likely to have the most impact on design, and so analysis starts there. As the analysis proceeds through the subsequent levels, additional design constraints are identified. We recently used CWA to analyze the information needs for interactive graphical displays that will integrate and represent data in structures that help clinicians visualize a patient's physiological status. We found that the analysis was an effective way to identify information needs at multiple levels. Based on our experience, CWA is a generic methodology that is highly applicable to medical informatics.

Algorithms↗

Naso-jugal groove leveling with fat tissue.

One of the causes of a depressed naso-jugal groove is the fixation of the septum orbitale at the level of the inferior-medial portion of the arcus marginalis. To permit the leveling of the groove, it is necessary to liberate the subjacent orbital septum from its fixation to the arcus marginalis. To avoid recurrence of the depression, some fat tissue is properly placed in the undermined space subjacent to the groove. This can be done by free fat grafting or fat pad sliding.

Adipose Tissue↗

Nasolabial fold undermining and fat grafting based on histological study.

When treating nasolabial folds, it is necessary to radically undermine the adjacent tissues before using fat grafts or fat injections in order to place the fat in the proper locations and, thus, prevent placing it inside muscle tissue. The method described here avoids augmenting the volume of the adjacent lip and cheek tissues lateral to the nasolabial fold which can cause poor results.

Adipose Tissue↗

Scleral show.

"Scleral show" is an anatomical condition in which the sclera area is visibly exaggerated due to constitutional, evolutive, or endocrine etiology. It can also occur because of iatrogenies, and is considered one of the most complex blepharoplasty complications. Its evolution and poor response to treatment are questionable. The defect is not always linked to an ectropion, and the basic differences between the two are explained. During blepharoplasties, in order to avoid iatrogenic "scleral show," among other complications, one should take special precautions with the quantity and the exact location of the tarsal portion of orbicularis oculi muscle to be resected.

Diagnosis, Differential↗