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Biomedical subjects

K P Singer

Publications and source records attributed to K P Singer.

At least 37 records · Page 2Linked to original sources

The effect of hallux valgus correction on chronic plantar ulceration. A case report.

Plantar pressure-measurement technology may provide the clinician with valuable objective information for monitoring the effects of therapeutic intervention on the foot. The use of this technology is described in the preoperative and postoperative assessment of a patient undergoing hallux valgus surgery for the treatment of a chronic neuropathic skin ulcer over the medioplantar aspect of her first metatarsophalangeal joint.

Aged↗

Review of radiographic measurements following Austin bunionectomy.

This study compared preoperative and postoperative results for selected radiographic measurements of 30 patients undergoing the modified Austin bunionectomy procedure for the correction of hallux abducto valgus. Significant reductions in all postoperative radiographic values were demonstrated, including hallux abductus angle, metatarsus primus adductus angle, tibial sesamoid position, and first metatarsal protrusion distance.

Adult↗

Ex vivo estimation of thoracolumbar vertebral body compressive strength: the relative contributions of bone densitometry and vertebral morphometry.

The estimation of vertebral fracture risk in individuals with suspected osteopenia is commonly based on measurements of lumbar spine bone density. The efficacy of vertebral size and deformity, as assessed by vertebral morphometry, in the prediction of fractures has been less studied. In an ex vivo investigation the regional relationships between vertebral size, vertebral deformity, bone density and compressive strength throughout the thoracolumbar spine were examined. In 16 vertebral columns (T1-L5) the bone mineral content (BMC) and bone mineral density (BMD) of each segment were measured using lateral projection dual-energy X-ray absorptiometry, and the vertebral cancellous density (VCD) and mid-vertebral cross-sectional area (CSA) measured using quantitative computed tomography. Vertebral body heights were determined from mid-sagittal CT scans, and vertical height ratios calculated for each segment. The failure load and failure stress of the isolated vertebral bodies were determined using a material testing device. Separate analyses were performed for the upper (T1-4), middle (T5-8) and lower (T9-12) thoracic, and lumbar (L1-5) segments. In all regions, failure load was strongly correlated with BMD (r = 0.82-0.86), moderately correlated with VCD (r = 0.60-0.71) and vertebral height (r = 0.22-0.49), and poorly correlated with the height ratios (r = 0.04-0.33). Failure stress was best predicted by BMD (r = 0.73-0.78) and VCD (r = 0.70-0.78) but was poorly correlated with all morphometric variables (r = 0.01-0.33). The segmental correlations between BMD and VCD ranged form r = 0.49 to r = 0.79. For all regions, BMD and VCD were included in the stepwise regression models for predicting failure load and failure stress. Either the mid-vertebral height or CSA were included in all the failure load models, while mid-vertebral height was included in only one of the failure stress models. The results suggest that vertebral deformity and size (as assessed by vertebral morphometry) make only a minor contribution to the prediction of vertebral strength additional to that provided by bone densitometry alone. The consistent regional relationships between variables appear to support the practice of global fracture risk assessment based on lumbar spine densitometry.

Adult↗

Assisted reach and transfers in individuals with tetraplegia: towards a solution.

The purpose of this study was to investigate the influence of a prototype trunk orthosis to assist an individual with tetraplegia. A single case study (26 year old male, C5 motor complete) using an interrupted time series analysis was conducted to investigate the individual's ability to reach, forward and laterally, and transfer with and without the orthosis. All tasks were performed on an AMTI force platform in the long sitting position, with landmarks of the trunk and limbs recorded using Peak Performances Technologies motion analysis system. After a familiarisation period ten trials were attempted for each phase of the analysis. With the orthosis the subject altered the sitting posture and significantly (F = 9.55, P = 0.003) increased the distance the subject was able to reach. The median frequency of the centre of pressure (COP) displacement during the reaching task was not significantly altered. The ability to displace the COP when attempting to transfer increased from 16.0 (+/-3.4 cm) to 19.6 (+/-2.5 cm), however, this was not statistically significant. The likely user population, the overall functional benefits, the compliance of the users and possible modifications to the device to facilitate use with functional electrical stimulation are all possible directions for future research.

Activities of Daily Living↗

Morphological survey of the cervicothoracic junctional region.

STUDY DESIGN: Vertebral morphology of the cervicothoracic junctional region was studied using the C6 to T4 vertebrae from 51 disarticulated skeletons (26 males and 25 females). OBJECTIVES: Orientation of the facet joint pair relative to the plane of the superior endplate and the sagittal reference was recorded. A vertebral index was developed to compare the superior endplate surface area with the posterior vertebral body height. SUMMARY OF BACKGROUND DATA: Vertebral morphometry was recorded for comparison with the limited published data for this region. METHODS: The disc-facet angle was measured using a zygapophysial endplate protractor and the facet angle recorded from computer-aided digitizing of photographs of each segment. Vertebral dimensions were measured using Mitutoyo digital calipers. RESULTS: A marked change in disc-facet angle from C6 to T1 was recorded, with the incidence of right versus left asymmetry highest at the T1 level. The incidence of facet angle asymmetry greater than 10 degrees was 24% at C6, 18% at C7, and 16% at T1. The vertebral index indicated no significant gender difference. CONCLUSION: Consistent with other junctional regions of the spine, the cervicothoracic transition has significant morphological variations.

Anthropometry↗

Transfer movement strategies of individuals with spinal cord injuries.

The ability to transfer in tetraplegia is a focal point of rehabilitation. Many factors have been associated with independence in transferring, yet the majority of these are anecdotal reports. The purpose of this paper is to report preliminary findings of the study of movement strategies of individuals with spinal cord injury attempting a long sitting transfer. Analyses were made from the lateral and posterior views. Pattern recognition techniques show two distinct movement strategies in both views. These were a lift and forward flexion technique from the lateral perspective and a translatory and rotatory technique when viewed from behind. It would seem that the posterior view provides more discriminative information. It is recommended that intervention techniques, such as Functional Electrical Stimulation or orthotic devices be developed within fundamental motion analysis constructs to optimize functional outcome.

Adult↗

Computer-assisted curvature assessment and Cobb angle determination of the thoracic kyphosis. An in vivo and in vitro comparison.

STUDY DESIGN: A retrospective survey of thoracic spinal curvature compared postmortem radiographs with recent clinical films in 22 cases. OBJECTIVES: This study was performed to determine whether spinal curvature measured from postmortem radiographs is a valid measure of curvature in vivo. SUMMARY OF BACKGROUND DATA: Little quantitative data have been cited on whether sagittal plane thoracic spinal curve characteristics change after death. METHODS: Thoracic kyphosis was measured using the Cobb method and the mean radius of curvature from computer-assisted digitizing of the vertebral contour. Thoracic segments visualized on the chest films were referenced to the postmortem radiograph. RESULTS AND CONCLUSIONS: The in vivo and in vitro measurements strongly correlated (Cobb angle r = 0.95, curvature r = 0.78). Trends decreased slightly in Cobb angle (1.3%, -2.6%) and increased slightly in curvature (10.7 mm, 4.1%). Differences were not significant, however, supporting the use of spinal curvature analysis with postmortem radiographs.

Aged↗

Segmental trends in cancellous bone structure in the thoracolumbar spine: histological and radiological comparisons.

Segmental variations in vertebral body cancellous bone architecture throughout the thoracolumbar spine were examined using histomorphometry and microradiography, and compared to bone mass measured using dual energy X-ray absorptiometry. In six human vertebral columns (T1 to L5) bone mineral content (BMC) and bone mineral density (BMD) of each vertebral body was determined in the lateral projection. Sagittal plane cancellous bone architecture was assessed from two-dimensional surface stained images and microradiographs of two 1 mm thick sections at each vertebral level. Computer-assisted image analysis was used to measure the total bone area (TBA), mean trabecular width (MTW) and trabecular number (TbN) from the stained images, and the skeletonized network length (SNL) from the radiographic images. Consistent segmental trends were observed for all structural parameters across the six columns examined. Higher TBA and TbN values were observed in the upper thoracic segments and decreased caudally. The MTW was relatively constant in the thoracic vertebrae before increasing in the lumbar spine. Pooled correlations between TBA and the bone density measurements were poor (BMC: r = 0.17, BMD: r = 0.25), while the TBA and SNL were only moderately correlated (r = 0.42). In conclusion, histomorphometric and radiological measurements appear to provide different information about cancellous bone structure. Bone structure is poorly correlated to integral measurements of bone mass. The consistent segmental variations in bone architecture appear to reflect a skeletal response to the relative extent of habitually applied loads in different regions of the spine.

Absorptiometry, Photon↗

The relationship between bone mineral density, vertebral body shape and spinal curvature in the elderly thoracolumbar spine: an in vitro study.

Vertebral body geometry, defined by the anterior/posterior (A/P) and mid/posterior (M/P) vertebral body height ratios, was measured in 18 vertebral columns (T1-L5) from sagittal computed tomography scans. For each vertebra, the trabecular density (VTD) and bone mineral density (BMD) were measured using quantitative computed tomography (QCT) and dual-energy X-ray absorptiometry (DXA), respectively. Lateral view radiographs were digitized to measure the thoracic curvature. The segmental correlations between vertebral shape and bone density were poor (r = 0.01-0.31). The mean thoracic BMD and VTD and the mean lumbar VTD were significantly correlated with the mean thoracic A/P ratio (r = 0.55-0.69). The thoracic curvature was significantly correlated with both the mean thoracic and the mean lumbar VTD and BMD (r = 0.55-0.73). In summary, the extent of vertebral wedging and thoracic curvature was moderately indicative of the mean BMD of the thoracic vertebrae, and lumbar spine densitometry is useful to assess the relative severity of osteopenia in individuals with thoracic vertebral deformities.

Absorptiometry, Photon↗

Accuracy of lateral dual energy X-ray absorptiometry for the determination of bone mineral content in the thoracic and lumbar spine: an in vitro study.

Lateral scanning with dual energy X-ray absorptiometry (DXA) was undertaken on 153 thoracic and lumbar vertebral bodies from nine individuals (mean age 67; range 34-92 years) to establish their bone mineral content (BMC). All specimens were subsequently de-fatted and ashed to compare ash weight with BMC of the T1 to L5 segments. Linear regression analysis indicated a higher correlation between BMC and measured ash weights for each vertebral column (range: r = 0.97-0.99), with error for all vertebrae tested showing a standard error of 0.40 g, or 10.8%. For the L2-4 segments the accuracy error was 0.50 g or 7.9%. In both cases there was a mean trend towards underestimation of ash weight. Mean BMC values of the T1 to T5 segments were similar before a progressive increase caudally. These data affirm the utility of DXA for determining bone mineral content in the vertebral column across wide ranges of age, and segmental and bone density.

Absorptiometry, Photon↗

Intra-articular synovial folds of thoracolumbar junction zygapophyseal joints.

Transverse histological sections from T10-11, T11-12, T12-L1, and L1-2 zygapophyseal joints were examined in 32 post-mortem spines, using light microscopy, to record the presence of intra-articular synovial fold inclusions. In addition, three mid-joint sections from each joint were photographed using 35 mm colour film. From these slides, linear dimensions of the extent of intra-articular synovial fold projection between the zygapophyseal joints were measured using computer-aided planimetry. Small, fibrous folds were commonly found at the joint margins extending from the ligamentum flavum and the fibrous joint capsule. Larger, fibro-adipose synovial folds, projecting between the articular surfaces, were also noted, particularly at T12-L1 and L1-2.

Adolescent↗

A comparison of radiographic and computer-assisted measurements of thoracic and thoracolumbar sagittal curvature.

Sagittal plane curve characteristics of the thoracolumbar spine were evaluated from 286 lateral chest radiographs comparing the Cobb technique with a computer-aided digitizer. Thoracic kyphosis and curve apex were measured from the T3 to T11 segments, and in 120 cases, the level of the thoracolumbar curve inflexion point was determined. An age-related increase in curve magnitude was similar for both measurements, although computer generated kyphosis angles were generally larger. The apex of thoracic kyphosis was consistently located near T7 for males compared with greater variability with age for females. The thoracolumbar inflexion point shifted caudally with increasing years, being most marked for females. The computer method was more reliable, producing a coefficient of variation of 1.4% on repeated measurement. The ability to describe quantitatively the thoracolumbar curve characteristics, calculate angles between selected segments, determine points of inflexion and maximum curvature, indicates that radiographic evaluation of sagittal spinal curvature is improved with the use of computer-aided measurement.

Adolescent↗

Accessory ossification centres at the thoracolumbar junction.

A survey of 810 thoracolumbar junction CT scans demonstrated several forms of accessory ossification centres and vestigial ribs associated with the posterior element processes. Four examples of short T12 ribs and 15 L1 ribs were identified, in addition to 8 accessory ossification centres at L1, and 3 at T12. Radiographic features of accessory ossification centres were compared with histologic characteristics from cadaver studies. Accessory ossification centres have occasional clinical significance when they may be confused with fractures at the thoracolumbar junction. Differential diagnosis relies on adequate visualization of their cortical margins to distinguish them from recent fractures of the processes.

Adult↗

Influence of zygapophyseal joint orientation on hyaline cartilage at the thoracolumbar junction.

Hyaline articular cartilage from 102 thoracolumbar junction zygapophyseal joints was examined using light microscopy. One section from the upper, middle and lower third of each joint at the T10-11, T11-12, T12-L1 and L1-2 spinal levels was photographed using 35 mm color film. Hyaline articular cartilage cross-sectional area of the superior and inferior articular processes of each joint pair, at each level, was digitized using computer-aided planimetry. Differences in area were compared with joint orientation (symmetry or tropism) and geometry of each joint pair at each spinal level. Variation in hyaline cartilage cross-sectional area between joint pairs could be attributed to: a) geometric differences, b) the presence of a mortice joint, or c) osteoarthritic changes, with or without tropism. These findings were most frequently demonstrated at the transitional levels of T11-12 and T12-L1.

Adolescent↗

Manual therapy considerations at the thoracolumbar junction: an anatomical and functional perspective.

Anatomically, the human thoracolumbar junction demonstrates considerable resistance to rotary motion in an effort to decrease torsional stress through an area of marked functional transition. Despite this, rotational manipulation and mobilization procedures have been advocated in the treatment of painful mechanical disorders originating from the thoracolumbar junction. The rationale behind vigorous manipulative techniques, particularly those incorporating extension, is challenged in light of cadaveric histological studies of this region, as well as both in vivo and experimental biomechanical investigations. Judicious use of traction and mobilization procedures are recommended.

Adult↗

Vertebral body trabecular density at the thoracolumbar junction using quantitative computed tomography. A post-mortem study.

Quantitative computed tomography was used to assess vertebral trabecular density in 26 post-mortem spines from individuals aged between 14 and 80 years. All vertebrae from T10 to L1 were scanned transversely near the mid-vertebral level with calculations of trabecular density in HUs averaged and referenced to a mineral equivalent phantom. An age-related decline in trabecular density was recorded (r = 0.55, p less than 0.0001). Density measures from the anterior aspect of the vertebral body were significantly greater than from postero-lateral regions. From T10 to L1, there was a significant decrease in trabecular density, whereas density measures multiplied by vertebral body cross-sectional area were constant. Predictions of vertebral compressive strength using quantitative computed tomography may become more accurate by increasing the sampling area per scan and including vertebral body cross-sectional area as part of the radiologic assessment.

Adolescent↗

Radiologic study of the influence of zygapophyseal joint orientation on spinal injuries at the thoracolumbar junction.

The change from coronal to sagittal plane orientation of the zygapophyseal (facet) joints at the thoracolumbar junction, coupled with differences in lumbar and thoracic spine mobility, may predispose the T10 to L2 segments to injury. To test for an association between the level of injury and variations in orientation of the zygapophyseal joints, CT investigations of 44 spinal injured patients were studied. Of these, 28 sustained burst/compression fractures and 16 demonstrated a rotation injury with disruption to one or both zygapophyseal joints. Injuries were examined to determine whether more congruent "mortice" joints localised the segmental level of trauma. The Chi-square statistic was used: to compare the transitional characteristics of 44 clinical cases with a "normal" patient database (n = 630); to examine differences in transition patterns between the "compression" and "rotation" injury groups; and to compare the incidence of mortice joints between the clinical and normal series. A significant difference between the transition patterns of the clinical and normal series (p less than 0.001) appeared to account for the higher frequency of abrupt transitions in the 44 injury cases. No significant differences distinguished the transition patterns of the two injury groups. A higher incidence of mortice joints was demonstrated in the injury group compared with the normal population (p less than 0.02). These findings suggest that individuals with an abrupt transition have a greater predisposition to injuries at the thoracolumbar junction.

Adolescent↗

Variations in zygapophyseal joint orientation and level of transition at the thoracolumbar junction. Preliminary survey using computed tomography.

Variation in zygapophyseal joint orientation at the thoracolumbar transitional junction was investigated using computed tomography (CT). The study population (N = 214) comprised 176 cases of abdominal scans, 9 thoracolumbar junction referrals and 29 cadaveric vertebral columns. Scans through the superior endplates of T11, T12, L1 and L2 were selected and joint angles calculated using a computer aided digitiser. Analysis revealed 29% of cases presented coronally oriented superior and sagittally orientated inferior joint processes at T12. This pattern occurred in 16% of cases at T11 and 0.5% at L1. A gradual transition occurred in 54% of cases and involved the adjacent inter-segmental joints of T11 and T12. Articular tropism (greater than 20 degrees) was most frequent at T11-12 (21%), followed by T12-L1 (9%).

Adolescent↗