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Biomedical subjects

J Martin Palomo

Publications and source records attributed to J Martin Palomo.

6 recordsLinked to original sources

A comparison of scanned lateral cephalograms with corresponding original radiographs.

INTRODUCTION: Digital cephalometric radiography is gaining popularity in orthodontic practices. However, few studies have compared measurements and superimpositions on analog radiographs with those made on scanned digital images. The objectives of this study were to evaluate distortion associated with scanning lateral cephalograms and printing to hard copy, and to assess the accuracy of digital images for regular cephalometric tasks. METHODS: Pretreatment and posttreatment cephalograms from 30 subjects were selected and 3 groups were created: original, digital, and hard copy. All films had 8 fiducial marks punched and were scanned at 150 dots per inch. The hard copies were created with a laser printer. Twenty-three cephalometric measures and 3 superimpositions were evaluated for distortion, measurement accuracy, and superimposition results. Paired t tests were used to assess statistical significance. RESULTS: Distortion between the original and the scanned image showed 0.8 mm vertical enlargement and 0.4 mm horizontal reduction. Printed radiographs had 1.1 mm vertical and 0.4 mm horizontal enlargement. All differences were statistically significant. Cephalometric comparisons between original and digital images showed statistical differences in Frankfort horizontal (FH)-occlusal plane, maxillary central incisor-FH, facial plane, y-axis, Frankfort plane to mandibular plane angle (FMA), and FH-Naison to point A (NA). Significant differences also were found in facial plane, y-axis, FMA, and FH-NA when comparing the digital and the hard-copy images. All measurements with differences contained the landmarks porion and orbitale. No differences were found between the original and the hard-copy images. Likewise, no significant differences were found between the original and the digital superimpositions. CONCLUSIONS: Although some distortion was found, the relatively small horizontal and vertical discrepancies were deemed clinically insignificant. Landmark identification errors on scanned images contributed to the discrepancies in cephalometric analysis. Therefore, for clinical orthodontic applications, scanned cephalograms can be used. However, caution must be exercised when determining porion and orbitale.

Artifacts↗

Cephalometric changes in overbite and vertical facial height after removal of 4 first molars or first premolars.

INTRODUCTION: The objective of this study was to evaluate the outcome of standard edgewise orthodontic treatment with extraction of 4 first molars (6xT group) or Tweed edgewise treatment with extraction of 4 first premolars (4xT group). MATERIALS AND METHODS: A cephalometric analysis that isolated tipping and bodily tooth movements of the maxillary and mandibular incisors and measured vertical skeletal changes in the anterior region of the maxilla and mandible was used. Thirty subjects treated by 10 practitioners comprised the 6xT group, whereas 31 subjects treated in the Case Western Reserve University orthodontic clinic were used in the 4xT group. Control groups (6xC and 4xC) were selected from untreated subjects enrolled in the Bolton-Brush Growth Study and were matched on age and gender. Data were collected before (T1) and after (T2) treatment. RESULTS: Analysis of the data showed no statistically significant changes between 6xT and 6xC for any of the variables studied. An increase in overbite of 2.1 mm in the 6xT group was the result of small but clinically significant changes in both tipping and extrusion of maxillary and mandibular incisors. In the 4xT group, statistically and clinically significant changes were observed for intrusion of the maxillary and mandibular incisors, resulting in a 4.1-mm decrease in overbite. Importantly, both the 6xT and the 4xT groups showed no increase in mandibular vertical height during treatment. CONCLUSION: Both treatment strategies showed good control of vertical mandibular growth. Bodily intrusion of anterior teeth was the main contributor to correction of deep overbite in the Tweed edgewise sample.

Bicuspid↗

Nonsurgical treatment of a patient with a Class III malocclusion.

A patient with a bilateral Class III molar relationship came to the Department of Orthodontics clinic at Case Western Reserve University. Our first choice for treatment was a combination of orthodontic therapy and orthognathic surgery. The patient, however, opted for a nonsurgical approach that took 34 months and involved the extraction of 4 first premolars and a remaining deciduous tooth, and Class III vertical elastics. Although orthodontic treatment was considered to be a second-line alternative, the results suggest that, for some surgical patients, orthodontic treatment alone might be a better choice because of the favorable cost/benefit ratio.

Adolescent↗

Use of digital photography in the Case orthodontic clinic.

In 2002, the orthodontic clinic at Case Western Reserve University totally converted to digital photography. We want to share the learning curve during this transition with clinicians planning the same change. A system and a protocol were developed for this transition; they have been in use for over a year. This system allows the handling of digital cameras when there are more clinicians than cameras; it can be applied to various specialties or fields.

Equipment Design↗

Gingival enlargement and resolution during and after orthodontic treatment.

Gingival enlargement (GE) is a condition that commonly develops during orthodontic treatment. Thirty adolescent subjects with clinically significant GE were analyzed at pre-orthodontic treatment (T1), when the appliances were removed (T2), and 3 to 12 months after (T3). The mean GE decreased from T2 to T3, but was significantly higher on T3 than T1 (p<.05). It may be concluded that complete resolution of GE developed during orthodontic treatment is not always attained after removal of the fixed appliances.

Adolescent↗