The orthopaedist and fracture care.
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Biomedical subjects
Publications and source records attributed to A Sarmiento.
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UNLABELLED: The aim was to study the alterations in mechanosensitivity, gastric emptying, and electrogastrography (E.G.G.) in a population of patients suffering from N.O.D. eighteen controls (9 males, 9 females, mean age 49.33 years old < SEM 3.62, range 24-74) and 32 patients with N.O.D. (22 males, 21 females, mean age 55.72 years old, SEM 2.87, range 17-86) were studied. Gastric mechano-sensitivity with a latex balloon of low compliance inflated "in phasic" was investigated, and intra balloon pressure was recorded. Gastric emptying with a mixed meal marked with 99 Tc in the solid phase, containing 250 Cal, was studied. E.G.G. was studied using two skin surface electrodes Ag-2C1Ag placed on epigastric area following a probalistic antral axe. Only dominant frequency in each block was considered, and % of total abnormalities on total recording time lesser than 2 c.p.m or more than 4 c.p.m. was considered. Recordings were taken during fast time during 30 minutes, and 30 minutes after a meal containing 250 Cal. Analysis with F.F.T, and spectral running. RESULTS: In 67.92% a delay in gastric emptying was observed. 56.3% did not complete 700 ml. of balloon inflation because of pain, Vs 16.8% in controls (p < 0.001) The slopes of intra-balloon pressure were not different in both groups. (Variance, F-NS). Mean E.C.A was 2.99 c.p.m in control, Vs 3.46 in fasting and 3.64 in postprandial period in N.O.D. (p = NS) Differences in fasting and postprandial % of arrhythmias total time recording were significant in N.O.D. ("t". 0.02 > p 0.01). Twenty percent of controls showed isolated tachygastria, but dominant frequencies never were higher than 6 c.p.m and never last more than 8% of the total recording time. Sixty eight point seventy five percent of N.O.D. showed arrhythmias. 48% of tachygastrias were in the range 30-60% of total recording time. No differences in gastric emptying between patient presenting pain with = < 700 ml. and < 700 ml. of balloon inflation were seen. Patients with sensorial threshold = < 700 ml. showed less frequent tachygastria (0.01 < p < 0.01). Patients with delayed gastric emptying showed more frequent tachygastria (94.7%, 0.05 < p < 0.02) CONCLUSIONS: a) E.G.G. abnormalities would more frequent in "motor" subpopulation; b) No association between abnormalities in gastric emptying, abnormal thresholds in mechanosensitivity and/or E.G.G. and any clinical subtype of Dyspepsia can be showed; h) although gastric arrhythmia was more frequent in motor than in sensorial abnormalities, it may represents a more generalized disturbance in central modulation in afferents and efferents inputs and outputs.
A computerized motion sensor was used to record the three-dimensional components of interfragmentary motion during healing in three patients with closed, low-energy fractures of the tibial diaphysis treated with functional braces. At the first measurement session 2 weeks after fracture, the patients applied approximately 15 kg to the injured limb. Although this produced 1-4 mm of translation of the fragments, this was recovered when the load was removed. The maximum rotational and angulatory displacements often occurred as the patients rose from the chair with no weight applied to the limb and frequently were reduced as the 15 kg of load was applied. Under load, the maximum axial rotation was 3 degrees and the maximum angular displacement was 1 degree. As with the translations, the initial rotational and angulatory positions of the fragments were recovered when the load was removed and the patient returned to the seated position. At 8 weeks, the patient applied full body weight, producing a maximum interfragmentary translation of 0.5 mm and maximum axial rotation or angulation of 0.5 degrees. Abundant peripheral callus formed in all three fractures, and they healed by 15 weeks through typical gradual consolidation and mineralization of the callus, accompanied by a corresponding reduction in interfragmentary motions.
A simplified three-dimensional finite element model of the femoral component of a cemented total hip prosthesis was used to investigate whether partial debonding at the stem-cement or bone-cement interfaces propagates in a stable or unstable manner, and to assess the resultant variation of the stresses within the cement layer. The likelihood of unstable debonding under tensile failure mode was assessed both by a conventional monotonic strength criterion and by a fracture mechanics approach that took into account debonding due to fatigue loading. The model predicted that partial debonding at the cement interfaces would be stable and would not precipitate complete debonding. Among the various bonding conditions that were investigated, the maximum tensile stress within the cement layer was least with a small amount of debonding rather than with complete bonding. These results were consistent with clinical observations of nonprogressive or slowly progressive separation at cement interfaces in cemented femoral components that were otherwise well functioning and asymptomatic.
OBJECTIVE: We studied the MR imaging characteristics of the articular muscle of the knee, an important but seldom recognized structure of the distal thigh and knee. SUBJECTS AND METHODS: We used a 1.5-T system to prospectively evaluate the articular muscle of the knee in five healthy volunteers (10 knees); then we retrospectively studied the knee examinations of 24 patients (30 knees). One reader made duplicate readings to prospectively assess the sagittal proton density-weighted and axial T1-weighted images of the healthy volunteers. Three independent readers retrospectively evaluated the sagittal proton density-weighted images of the 24 patients. RESULTS: The articular muscle of the knee was identified in 100% of prospective studies (10/10) and in 83% of retrospective studies (25/30). For the prospective study group, measurements (mean +/- SEM) were as follows: number of bundles, 2.4 +/- 0.68 (range, 1-4); length of uppermost bundle, 47.2 +/- 4.06 mm; width of origin, 8.6 +/- 0.79 mm; angle of origin, 11.4 degree +/- 1.29 degree; and cross-sectional bundle width, 19.8 +/- 2.05 mm2. CONCLUSION: The articular muscle of the knee can usually be identified by MR imaging as an independent entity, separate from the great (vastus) muscle group.
UNLABELLED: Electrogastrography allows to determinate the dominant frequency of gastric E.C.A. (electrical control activity). The aim was to investigate the gastric E.C.A. in a population of patients suffering from non-organic dispepsia (N.O.D.). Eighteen controls (9 males, 9 females, mean age 46.4 years old, SEM 3.72, range 24-72) and 52 dyspeptic patients (18 males, 34 females, mean age 54.19 years old, SEM 2.38, range 17-86) were studied. Two skin surface electrodes Ag-2ClAg were placed on epigastric area following a probabilistic antral axe. Reference electrode was placed on the right quadrant skin. In 5 patients, recordings with needle and cutaneous electrode were compared. Analogic waves were filtered, digitalized and processed. Signals were analyzed using F.F.T. (Fast Fourier Transformated) Only the predominant frequency in each block was considered, and percentage of total abnormalities on total recording time lesser than 2 c.p.m. or more than 4 c.p.m. was accepted. Recording were taken in fast time during 30 minutes, and 30 minutes after a meal containing 230 Cal. Running spectral analysis with F.F.T. In 43 non-selected patients the gastric emptying time of a mixed meal marked with 99 Tc in the solid phase was studied. RESULTS: 60.45% showed delayed gastric emptying. Mean of fast E.C.A. was 2.99 c.p.m. in controls, Vs 3.34 c.p.m. in dispeptic patients (p > 0.001). In the post-prandial period, mean of E.C.A. was 3.53 c.p.m. in N.O.D., and these differences were not significatives ("t", NS). 22% of controls showed isolated periods of tachygastria, but never more than 8% of the total recording time. It was seen seven six and forty five percent of arrhythmias were observed (71.15% tachygastria, 4.76% bradygastria, and 19.23% mixed) during post prandial recording in N.O.D. 48% of tachygastrias were between the range 30-60% of the time recording. Ninety six and one percent of patients with abnormal gastric emptying had gastric arrhythmias (0.05 > p > 0.02) Vs 50% in patients with normal gastric emptying. Needle recording increased about 200-300% the signal power. It would be the better choice in cases of hairy abdominal skin. CONCLUSIONS: a) More than 76% of patients with N.O.D. had abnormal recording of E.C.A. beyond these observed in controls; b) tachygastria was the more frequent abnormality observed; c) the more severe clinical cases were associated with bradygastria; d) No association between symptoms and abnormal gastric emptying was found; e) E.G.G. abnormalities were seen in 96% of patients with abnormal gastric emptying, Vs 50% in normal gastric emptying; f) Needle electrodes let a better recording of E.G.G. signal; g) No association was found between abnormalities in gastric emptying and/or E.G.G., and clinical subtypes of Dyspepsia.
Thirteen adult female rabbits underwent unilateral osteotomy of the proximal tibia. In nine animals, 30 degrees of valgus angulation was created; in four animals, osteotomy without angulation was performed. After a 12-week survival period, the knee joints were processed for histology by staining with hematoxylin and eosin and safranin O. Additionally, the chondroitin sulphate epitopes 3-B-3(-) and 7-D-4 were evaluated immunohistochemically as markers of osteoarthritis. Changes of the articular surface of the tibia were visualized by scanning electron microscopy. Light microscopic evaluation by the Mankin et al. scoring system revealed mild or moderate damage of the cartilage in the lateral compartment of angulated extremities when compared with the control side. Immunohistology with the monoclonal 3-B-3 and 7-D-4 antibodies showed no increased expression of these epitopes in the lateral compartments of the knee. Scanning electron microscopic evaluation of the tibial surfaces revealed slight surface damage localized to the central, weight-bearing portion of the lateral tibial plateau of angulated extremities. Angulation of 30 degrees led to only mild degenerative changes of the cartilage. These results indicate that, in the short term, cartilage has considerable capacity to withstand the effects caused by severe angulation of the limb.
The microscopic morphology of worn polyethylene surfaces was compared with that of the associated polyethylene particles for acetabular cups tested in a wear simulator and for cups worn in vivo, using scanning electron microscopy. In the absence of significant third-body abrasive damage, the articulation of the ball in the cup produced a visually polished surface on the polyethylene. On a micron scale, the morphology of the worn polyethylene from in vitro and in vivo wear included nodules and fibrils consistent with adhesive, abrasive, and microfatigue wear mechanisms. Larger wear features, such as deep scratches or pits measuring in 10s of microns, that were seen in the in vivo cups were attributed to third-body wear. The polyethylene particles isolated from the serum lubricants of the wear tests and from the periprosthetic tissues were primarily submicron in size, were either rounded or elongated, and were consistent with the submicron wear features seen on the cup surfaces. It is the submicron particles that are associated with inflammatory periprosthetic bone loss in total hip replacement. Although the mean dimensions of the particles generated in vitro were slightly smaller than those of the in vivo particles, the overall morphologies were very comparable, suggesting that the same lubrication and wear processes were acting in the simulator as in vivo.
One thousand consecutive closed diaphyseal tibial fractures, treated with prefabricated functional below-knee braces, were analyzed by statistical methods to determine factors predictive of final fracture outcome. Neither the age of the patient nor the location of the fracture influenced the speed of healing. In 95% of the fractures, the final shortening was < or = 12 mm. The mean final shortening was 4.28 mm, compared with mean initial shortening of 4.25 mm. This confirmed the authors' long-held hypothesis, that, in general, for closed, diaphyseal tibial fractures treated with functional bracing and graduated weightbearing ambulation, the final shortening does not increase beyond the initial one. Final angulatory deformity in any plane was < or = 6 degrees in 90% of patients. The presence of an intact fibula was a relative contraindication for functional fracture bracing because angulatory deformity was more likely to develop. The incidence of nonunion was 1.1%. The high union rate and low morbidity associated with functional bracing of closed tibial fractures suggest that the routine use of more expensive surgical treatments is difficult to justify. A clear understanding of the rationale of functional bracing, its indications and contradictions, and its clinical application protocol are essential for the attainment of satisfactory results.
Bone healing was investigated histologically in a rat fibular osteotomy model subjected to microgravity (shuttle flight STS-29) and the tail suspension microgravity simulation model. Exposure to microgravity or tail suspension occurred during the last 5 days of a 10-day healing period. Periosteal osteogenesis and the development of vascular channels in both experimental groups were similar to that observed in a weightbearing control group. Chondrogenesis was more advanced in weightbearing rats than in either flight or tail-suspended rats. Angiogenesis in the osteotomy gap was more advanced in weightbearing and tail-suspended rats than in the flight group. These findings suggest that bone healing may be impaired during space travel. Interpretation of the findings is complicated by observations that flight and suspended rats lost weight during the flight period and that suspended rats consumed less water than control rats. Tail suspension did not produce the same pattern of healing as spaceflight; therefore, long-term studies of bone healing, conducted entirely in the microgravity environment, are needed to distinguish metabolic from mechanical influences and to determine whether effective fracture consolidation will occur in the absence of gravitational forces.
We describe a new technique to produce a closed fracture of the rabbit tibia with reproducible location and shape of the fracture. The hindlimb of a New Zealand White rabbit was enclosed in a bivalved cast, a 1.5 mm diameter hole was drilled through the lateral tibial cortex, and the tibia was fractured by loading in three-point bending in an arbor press. The cast protected the soft tissues from being crushed while it concentrated the bending moment at the intended fracture site. The cortical hole functioned as a stress riser and fracture initiation site, such that the influence of the loading rate on the fracture characteristics was minimized. Transverse fractures or oblique fractures at any desired angle could be produced by variations of the position of the cortical drill hole relative to the central loading point. Thirty-four tibial fractures (18 transverse and 16 oblique) were produced. The rabbits were killed immediately, and the fracture angle and the extent of tissue damage were evaluated radiographically, as well as macroscopically. This method produced a consistent location of the fracture, with 88% reproducibility of the fracture angle and only minor damage to the adjacent soft tissues.
The correlation between the thickness of the cement mantle, the medullary canal fill, and the orientation of the stem and the long-term radiographic outcome of 836 cemented femoral components in patients who had a primary total hip replacement was assessed with use of survival analysis over a twenty-one-year follow-up period. The femoral stems of hips that had a two to five-millimeter-thick cement mantle in the proximal medial region had a better outcome than stems implanted with a thicker or thinner cement mantle. Stems in femora with less than two millimeters of proximal medial cancellous bone had a better outcome than stems in femora with thicker cancellous bone. Stems that filled more than half of the medullary canal had better radiographic results than those that filled half or less. Progressive loosening, fracture of the cement, and radiolucent lines at the stem-cement or bone-cement interfaces were more likely to develop in stems that were oriented in more than 5 degrees of varus than in those in neutral or valgus. The noted correlations were true whether the stem was made of titanium alloy or of stainless steel. The results of this study emphasize the importance of careful preoperative planning in total hip arthroplasty done with cement and provide guidelines for the selection of the shape, size, and position of the stem.
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It is widely believed that excessive angulation of the tibia may predispose the ankle and knee to osteoarthritic degeneration. There is no general agreement, however, regarding the acceptable limits of angulation. The authors used cadaver models to measure the contact areas for the cartilage in the ankle, as well as the contact areas and pressures for the cartilage in the knee, as a function of the level and magnitude of simulated angular deformities of the tibia. The quantitative relationships between fracture angulation and joint contract conditions developed in these experiments may help in the formation of more specific guidelines for the treatment of tibial fractures.
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