PubMed Health⌕ Search

Biomedical subjects

Dennis Lin

Publications and source records attributed to Dennis Lin.

2 recordsLinked to original sources

Predicting masticatory jaw movements from chin movements using multivariate linear methods.

Previously, we have used bivariate correlations of maximum and minimum displacement, velocity and acceleration variables to compare masticatory chin and jaw movements (J. Prosthet. Dent. 81 (1999) 179). This previous study represented a first step in exploring the hypothesis that the chin contained useful information regarding jaw kinematics. The current study extends our understanding of the relationship between masticatory chin and jaw movements by: (1) reconstructing and evaluating a more continuous trajectory of chin and jaw movements, and (2) performing multivariate correlations comparing chin and jaw movements at discrete points along the trajectory in order to gain insight into the coupling of chin and jaw movements during a chewing cycle. Results indicated that chin and jaw movement trajectories were visually similar in the lateral, vertical, and anteroposterior axes. The adjusted R(2) results in the lateral, vertical, and anteroposterior dimensions averaged 0.74, 0.78, and 0.89, respectively. Within chewing cycles, the lowest correlations between chin and jaw movements in the lateral and vertical dimensions occurred when the jaw was relatively closed, whereas the lowest correlations between chin and jaw movements in the anteroposterior dimension occurred while the jaw was opening from a closed position. The results indicated that jaw and chin movements were qualitatively similar and that at least 74% of the variation in jaw movements could be accounted for by multivariate linear models of chin movement.

Adult↗

Advantages of color B-mode imaging with contrast optimization in sonography of low-contrast musculoskeletal lesions and structures in the foot and ankle.

OBJECTIVE: The purpose of this study was to evaluate the utility of color B-mode imaging with contrast optimization in evaluating low-contrast lesions of the foot and ankle (Morton neuromas and plantar fasciitis). METHODS: The sonographic examinations of 49 consecutive patients with a diagnosis of plantar fasciitis or Morton neuroma imaged with both conventional gray scale imaging and color B-mode imaging with contrast optimization (Photopic; Siemens Medical Solutions, Mountain View, CA) were reviewed. In every patient, matched pairs of images obtained with conventional gray and color maps (Photopic) were acquired and stored as DICOM (Digital Imaging and Communications in Medicine) images on a sonographic workstation. Each image was assessed independently by 2 musculoskeletal radiologists trained in musculoskeletal sonography for overall image contrast (lesion to background), conspicuity of regional tissue boundaries, visualization of deep tissue boundaries, and how well the internal characteristics of the structure were visualized. RESULTS: Three-way analysis of variance showed that Photopic imaging resulted in statistically significantly improved overall image contrast, definition of regional soft tissue boundaries, including deep soft tissue boundaries, and depiction of the internal characteristics of the structure being examined. CONCLUSIONS: Color imaging with contrast optimization improves overall image contrast and better defines deep soft tissue boundaries and the internal morphologic characteristics of Morton neuromas and the plantar fascia compared with conventional gray scale imaging.

Analysis of Variance↗