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Biomedical subjects

L Westbury

Publications and source records attributed to L Westbury.

6 recordsLinked to original sources

Exercise testing and training of persons with dysvascular amputation: safety and efficacy of arm ergometry.

Recent studies indicate that most persons with dysvascular amputation also have moderate to severe cardiovascular disease with impairment in functional capacity. This may limit the ability to achieve optimal function with their prosthesis because of inadequate conditioning. We developed an exercise testing and training program using arm ergometry in conjunction with standard rehabilitation for persons with acute dysvascular amputation who were profoundly deconditioned after complicated perioperative courses. The program consisted of daily arm ergometry, performed on an interval basis, at an intensity individually optimized through exercise testing. Twenty-five patients, with a mean age of 63 years, completed the inpatient program with pretest and discharge work performance assessment. There was no significant difference between pretest and discharge assessment of baseline or peak heart rate, systolic blood pressure, diastolic blood pressure, or Borg rating of perceived exertion. Peak systolic blood pressure was elevated at discharge compared to admission testing (p less than .04). Heart rate responses were decreased during the early stages of testing when comparing discharge telemetry to admission findings. The duration of exercise increased from 12.6 minutes to 16.3 minutes (p less than .0004), and the maximum work output increased from 17.1 watts to 23.5 watts (p less than .0004). There was no significant morbidity associated with either arm ergometry testing or the exercise program. We conclude that arm ergometry testing and training is a safe and effective method for improving the efficiency of arm work in the patient with acute dysvascular amputation.

Aged↗

Arm ergometry exercise testing in patients with dysvascular amputations.

The purpose of this study was to test the agreement between the heart rate (HR) response and rating of perceived exertion (RPE) on an arm ergometry graded exercise test (GXT) in deconditioned persons with acute dysvascular amputations before and after an inpatient rehabilitation program. Twenty-six men were studied at admission, and 11 were retested after completion of the program. After obtaining resting measurements of HR and systolic and diastolic blood pressures, each patient performed the GXT using an arm ergometer. Patients maintained a cranking rate of 50rpm, which was monitored electronically. The workloads started with a warm-up period of 0 watts (stage 1) and increased by increments of 5 watts. Each stage lasted three minutes-2.5 minutes of exercise and 30 seconds of rest. The RPE was taken five seconds before the end of each exercise stage. During the rest period, HR and blood pressures were recorded. Scatter plots and linear regression analyses revealed no statistically significant relationship, either at early stages of GXT or at peak work, between HR and RPE. The results suggest that RPE cannot be used reliably as a surrogate for direct pulse measurement in exercise training of persons with acute dysvascular amputations.

Aged↗

Ultrastructural study of the attachment of human gingiva to titanium in vivo.

A study was conducted to determine if the behavior of epithelium in vitro is similar to its attachment behavior in vivo by the use of small sections of titanium-coated implants that could be inserted in human gingiva. The size of the implants allowed their insertion in a limited region and enabled the fixation and embedding procedures that are necessary for electron microscopy to be effective. Examination of the thin sections obtained from this material demonstrated that the epithelial cells attached to titanium in a manner similar to that observed in vitro and similar to the way that epithelium attaches to the tooth in vivo (Fig. 2). That is, there was a formation of hemidesmosomes and basal lamina. Because the ability of the oral epithelium to form such an attachment with an implant may be a crucial factor in the determination of clinical success or failure, this study provides further evidence that one reason for the apparent clinical success of titanium dental implants may lie in the firm attachment of epithelial cells to this material.

Adult↗

Dentin matrix gelatin (DMG) as a possible "universal" grafting material in periodontics.

The ideal of periodontal surgery is the total regeneration of the lost periodontal complex. A promising new osseous grafting material is Dental Matrix Gelation (DMG). DMG was prepared by a method similar to that of Conover and Urist (1979). This consisted of sequential extraction in 1:1 chloroform-methanol, 25 degrees C for 1 hour; 0.6 N HCl, 2 degrees C for 24 hours with constant agitation; 2 M CaCl2, 2 degrees C for 1 hour; 0.5 M EDTA pH 7.4, 2 degrees C for 1 hour; washed in distilled water 1 hour. Twelve rats were anesthetized, had heads shaved, midline flaps reflected, and 2 mm holes drilled through the right and left parietal bones. This type of osseous defect normally heals only by fibrous scarring and has been used to define osteoinductive materials. The DMG was cut into pieces about 1 mm square and placed into the right side defect while the left side remained open as a control. The animals were sacrificed on a schedule of two rats every 2 weeks until the 10th week when four rats were killed. The results showed complete osseous closure of the DMG site while the control healed by fibrous scarring. DMG seems to have strong osteoinductive power, and used allogenically has great potential as a commercially viable implant material.

Animals↗