Search PubMed⌕ Search

Biomedical subjects

M B Bennett

Publications and source records attributed to M B Bennett.

At least 19 recordsLinked to original sources

Comparisons between bone and cementum compositions and the possible basis for their layered appearances.

In humans, age estimation from the adult skeleton represents an attempt to determine chronological age based on growth and maturational events. In teeth, such events can be characterized by appositional growth layers in midroot cementum. The purpose of this study was to determine the underlying cause of the layered microstructure of human midroot cementum. Whether cementum growth layers are caused by changes in relative mineralization, collagen packing and/or orientation, or by variations in organic matrix apposition was investigated by subjecting midroot sections of human canine teeth to analysis using polarized light and scanning electron microscopy (SEM). Polarized light was used to examine transverse midroot sections in both mineralized and demineralized states. Mineralized sections were also reexamined following subsequent decollagenization. Polarized light was additionally used in the examination of mineralized sections taken transversely, longitudinally, and obliquely from the same tooth root. From the birefringence patterns it was concluded that collagen orientation does not change with varying section plane. Instead, the mineral phase was most responsible for the birefringence of the cementum. SEM studies suggested that neither collagen packing nor collagen orientation change across the width of the cementum, confirming and validating the results of the polarized light examination. Also, SEM analysis using electron backscatter and the electron probe suggested no changes in the mean atomic number density, calcium, phosphate, and sulfur levels across the width of the cementum. Therefore, we conclude that crystalline orientation and/or size is responsible for the layered appearance of cementum.

Animals↗

Growth hormone is permissive for skeletal adaptation to mechanical loading.

The Lewis dwarf (DW) rat was used as a model to test the hypothesis that growth hormone (GH) is permissive for new bone formation induced by mechanical loading in vivo. Adult female Lewis DW rats aged 6.2 +/- 0.1 months (187 +/- 18 g) were allocated to four vehicle groups (DW), four GH treatment groups at 32.5 microg/100 g body mass (DWGH1), and four GH treatment groups at 65 microg/100 g (DWGH2). Saline vehicle or GH was injected intraperitoneally (ip) at 6:30 p.m. and 6:30 a.m. before mechanical loading of tibias at 7:30 a.m. A single period of 300 cycles of four-point bending was applied to right tibias at 2.0 Hz, and magnitudes of 24, 29, 38, or 48N were applied. Separate strain gauge analyses in 5 DW rats validated the selection of loading magnitudes. After loading, double-label histomorphometry was used to assess bone formation at the periosteal surface (Ps.S) and endocortical surface (Ec.S) of tibias. Comparing left (unloaded) tibias among groups, GH treatment had no effect on bone formation. Bone formation in tibias in DW rats was insensitive to mechanical loading. At the Ec.S, mechanically induced lamellar bone formation increased in the DWGH2 group loaded at 48N (p < 0.05), and no significant increases in bone formation were observed among other groups. The percentage of tibias expressing woven bone formation (Wo.B) at the Ps.S was significantly greater in the DWGH groups compared with controls (p < 0.05). We concluded that GH influences loading-related bone formation in a permissive manner and modulates the responsiveness of bone tissue to mechanical stimuli by changing thresholds for bone formation.

Adaptation, Physiological↗

Toxicologic evaluation of flavor ingredients added to cigarette tobacco: skin painting bioassay of cigarette smoke condensate in SENCAR mice.

Four comparative two-stage SENCAR mouse skin painting bioassays were conducted with cigarette smoke condensate (CSC) preparations to evaluate the effect of common American cigarette flavoring ingredients on tumor promotion. Each independent study employed a unique flavoring combination applied to tobacco at exaggerated levels, and in total resulted in an evaluation of 150 ingredients. Groups of 30-50 female SENCAR mice each were initiated topically with 50 microg of 7,12-dimethylbenz(a)anthracene (DMBA), and promoted thrice weekly for 26 weeks with either 10 or 20 mg of CSC from test cigarettes containing ingredient mixtures. For comparison, separate groups of mice received concurrent treatment with CSC from reference cigarettes prepared without added ingredients. Negative and positive controls were treated with acetone or 12-0-tetradecanoyl-phorbol-13-acetate (TPA) as a promoter, respectively. CSC-only groups served as promotion controls. Tumors developed in > 80% of the TPA-treated mice by study week 11, with a < 3% background tumor formation in the acetone treated controls at termination. Tumor incidence in CSC-only promotion control groups was < 20%, with no apparent difference between reference and test CSC groups. Approximately 70% of the DMBA-initiated mice promoted with 20 mg CSC developed tumors. Tumors first appeared around week 9, with about five tumors/tumor bearing animal. Tumor incidence, latency and multiplicity were CSC dose related, with a lower tumor incidence (approximately 50%), longer latency (12 weeks), and reduced tumor burden (four tumors/tumor bearing animal) at the 10 mg CSC dose level. While tumor incidence, latency and multiplicity data occasionally differed between test and comparative reference CSC groups, all effects appeared to be within normal variation for the model system. Furthermore, none of the changes appeared to be substantial enough to conclude that the tumor promotion capacity of CSC obtained from cigarettes containing tobacco with ingredients was discernibly different from the CSC obtained from reference cigarettes containing tobacco processed without ingredients.

9,10-Dimethyl-1,2-benzanthracene↗

Plasma steroid hormone profiles and reproductive biology of the epaulette shark, Hemiscyllium ocellatum.

Examination of the reproductive biology of the oviparous epaulette shark, Hemiscyllium ocellatum, was conducted on a wild population. Male sharks were found to reach maturity at between 55-60 cm total length (TL) and female sharks mature around 55 cm TL. Blood samples collected from mature male and female sharks were analyzed for sex steroid hormones to examine seasonal hormone patterns. Plasma samples were analyzed via radioimmunoassay techniques with female samples measured for estradiol, progesterone, and androgen concentrations, and male samples measured for androgen concentrations. Male androgen concentrations showed a single broad peak from July to October with maximum hormone concentrations (60 ng/ml) occurring in August. Male androgen concentrations were lowest in December-February (<20 ng/ml), and appeared to correlate with reproductive activity and water temperature. Female androgen concentrations were an order of magnitude lower than those for males and showed peaks in June (6 ng/ml) and December (8 ng/ml). Estradiol concentrations in females peaked during the months of September-November (0.5 ng/ml) coinciding with the egg laying period. Progesterone concentrations ranged up to 0.5 ng/ml prior to the mating season. Observations of ova size and egg production showed eggs develop in pairs and ova are ovulated at a size of 25-27 mm. Females lay eggs from August to January. Males were observed with swollen claspers from July through December, with the highest amount of sperm storage in the epididymis occurring between August through November. Our observations indicate that epaulette sharks in the waters near Heron Island mate from July through December. J. Exp. Zool. 284:586-594, 1999.

Androgens↗

The occurrence, distribution and pathology associated with gnathiid isopod larvae infecting the epaulette shark, Hemiscyllium ocellatum.

Gnathiid isopod praniza larvae were found to infect the epaulette shark Hemiscyllium ocellatum. All sharks carried larvae on their external body surface, with the preferred attachment site in both sexes around the cloaca (P<0.05). The claspers were the second site of preference in male sharks. Within the buccal and branchial cavities, about 16% of larvae were attached to the roof and floor of the mouth and 84% attached to the gills. A significant positive correlation existed between larval number and fish size. Histological examination showed that larval attachment in the buccal cavity elicited variable responses, the most severe being a loss of epithelium and compression of underlying tissue. No host cellular response or tissue proliferation was observed. Praniza attached preferentially to the efferent side of gill filaments (relative to blood flow), and caused loss of epithelium, compression of tissue, and a small amount of connective tissue proliferation. Attachment to the gill septum or to the afferent side of the gill filament caused lamellar disruption, a cellular inflammatory response, and connective tissue proliferation. Scanning electron microscopy showed little obvious praniza-induced gill damage, other than localised tissue distortion to form "pockets" around larvae attached between filaments. The results suggest that praniza larvae do not cause sufficient tissue damage to adversely affect the health of this shark species.

Animals↗

Modification of the in vivo four-point loading model for studying mechanically induced bone adaptation.

We modified the noninvasive, in vivo technique for strain application in the tibiae of rats (Turner et al., Bone 12:73-79, 1991). The original model applies four-point bending to right tibiae via an open-loop, stepper-motor-driven spring linkage. Depending on the magnitude of applied load, the model produces new bone formation at periosteal (Ps) or endocortical surfaces (Ec.S). Due to the spring linkage, however, the range of frequencies at which loads can be applied is limited. The modified system replaces this design with an electromagnetic vibrator. A load transducer in series with the loading points allows calibration, the loaders' position to be adjusted, and cyclic loading completed under load control as a closed servo-loop. Two experiments were conducted to validate the modified system: (1) a strain gauge was applied to the lateral surface of the right tibia of 5 adult female rats and strains measured at applied loads from 10 to 60 N; and (2) the bone formation response was determined in 28 adult female Sprague-Dawley rats. Loading was applied as a haversine wave with a frequency of 2 Hz for 18 sec, every second day for 10 days. Peak bending loads were applied at 33, 40, 52, and 64 N, and a sham-loading group was included at 64 N. Strains in the tibiae were linear between 10 and 60 N, and the average peak strain at the Ps.S at 60 N was 2664 +/- 250 microstrain, consistent with the results of Turner's group. Lamellar bone formation was stimulated at the Ec.S by applied bending, but not by sham loading. Bending strains above a loading threshold of 40 N increased Ec lamellar bone formation rate, bone forming surface, and mineral apposition rate with a dose response similar to that reported by Turner et al. (J Bone Miner Res 9:87-97, 1994). We conclude that the modified loading system offers precision for applied loads of between 0 and 70 N, versatility in the selection of loading rates up to 20 Hz, and a reproducible bone formation response in the rat tibia. Adjustment of the loader also enables study of mechanical usage in murine tibia, an advantage with respect to the increasing variety of transgenic strains available in bone and mineral research.

Adaptation, Physiological↗

Sheina orri (Myodocopa: Cypridinidae), an ostracod parasitic on the gills of the epaulette shark, Hemiscyllium ocellatum (Elasmobranchii: Hemiscyllidae).

The cypridinid ostracod, Sheina orri, was found on the gills of healthy epaulette sharks, Hemiscyllium ocellatum, collected from the Great Barrier Reef, Australia. Seventeen of the 28 fish examined had ostracods attached to their gills. Detailed investigation of the gills and ostracods using light microscopy and scanning electron microscopy revealed that ostracods anchor themselves to the gill tissues using their mandibular and maxillular claws. These claws appear to be adapted for this purpose and the process of attachment causes some damage to the host tissues. The observation that ostracods were often located in distinct pockets, formed by local distortion of shark respiratory lamellae, strongly suggests that they had been attached to the gills for considerable time.

Animals↗

Scaling of elastic strain energy in kangaroos and the benefits of being big.

Large kangaroos are unique among mammals in their ability to uncouple aerobic metabolic energy costs from the speed of locomotion, making hopping an economical gait. During the first half of the ground-contact phase, kinetic energy lost from the body is stored as elastic strain energy, predominantly in the hind limbs. The subsequent recoil returns kinetic and potential energy to the body. Here we show that the allometry of structures in the legs and feet of Macropodoidea is different from that of quadrupedal eutherian mammals. The potential for elastic energy storage in hoppers is shown to scale with strong positive allometry. This is a function of the structural properties of muscle-tendon units in the distal hind limbs and the postures adopted by hopping kangaroos. Our findings demonstrate how the use of tissue elasticity is strongly mass dependent and help explain the observed energetic phenomena.

Animals↗

Home chemotherapy. A mobile delivery system.

CareVan Medical Systems specializes in home chemotherapy, differing from other services in its physician involvement. CareVan provides increasing services and advantages to cancer patients receiving treatment at home.

Home Care Services↗

Wing bone stresses in free flying bats and the evolution of skeletal design for flight.

The primary mechanical functions of limb bones are to resist deformation, and hence provide stiff levers against which muscles can act, and to be sufficiently strong to prevent breaking under static or dynamic loads which arise from normal and accidental activities. If bones perform these functions with a minimum amount of material, the energetic costs associated with building, maintaining and transporting the skeleton will be minimized. Appropriate skeletal architecture for minimizing mass while maximizing strength depends on forces imposed on structural elements. In the evolutionary acquisition of flight in the bat lineage, the forelimb skeleton must have come to experience locomotor-forces that differed from those engendered by the terrestrial locomotion of non-flying bat relatives. Here we successfully measure in vivo strain on the wing bones of flying mammals. Our data demonstrate that torsion and shear are unique and crucial features of skeletal biomechanics during flight, and suggest that the evolution of skeletal design in bats and other flying vertebrates may be driven by the need to resist these loads.

Animals↗

The relationship between community resources and state hospital recidivism.

OBJECTIVE: The authors examined the propositions that a revolving state hospital door is an inevitable consequence of deinstitutionalization and that enhancing resources for community-based care can limit this phenomenon. METHOD: They analyzed the recidivism patterns of state hospital patients in a region of Massachusetts where, because of a federal court consent decree, the level of funding for community programs was more than twice as high as it was in other regions in the state and compared the pattern of recidivism in this region with that observed in the other areas of the state. RESULTS: Despite the fact that the average daily state hospital census in the resource-rich region was only half that of the other regions, longitudinal data on hospital use showed that the readmission patterns were similar in all state regions. CONCLUSIONS: The authors suggest that attributes of serious and persistent mental illness may have more effect on hospital readmission patterns than service system variables.

Community Mental Health Services↗

The mechanical properties of the human subcalcaneal fat pad in compression.

The subcalcaneal fat pads of Homo sapiens were subjected to cyclic compressive loading in a materials testing machine. Rates of loading and the absolute loads to which pads were subjected were chosen to simulate the pattern of forces that the pad would be exposed to during the ground contact phase of the running step. Heel pads were found to be resilient, returning approximately 70% of the energy used to deform them. This was modified little by changes in loading frequency. A reduction of temperature from 37 degrees C to 10 degrees C produced a small, but significant, increase in the percentage energy dissipation.

Adipose Tissue↗

Home heparin infusion in the management of deep vein thrombophlebitis.

Feasibility of home Heparin infusion in the management of deep vein thrombophlebitis (DVT) was assessed in 15 patients. Patients with chest pain, dyspnea, bleeding tendencies, immediate postoperative state, and lack of reliable care giver were excluded. Five patients received the entire course of Heparin infusion at home and 10 were initially started on Heparin in the hospital. Regular assessment and monitoring of blood coagulation parameters were performed by a visiting home nurse clinician in consultation with the attending physician. Eleven physicians were involved in this management and made a total of six physician home visits. Results showed improvement in all but one patient, who had advanced malignancy and resistant thrombophlebitis and who eventually died. No complications occurred among the patients studied. Patient and family surveys indicated a high degree of satisfaction and preference for this modality of care. Analysis of cost indicated a 48% savings compared with similar treatment administered in a hospital setting.

Adult↗

Foot strike and the properties of the human heel pad.

Many force-plate records of human locomotion show an impulse (the foot strike) shortly after ground contact. The authors' hypothesis is that this results from the rapid deceleration of a mass (the 'effective foot') under forces which compress the heel pad. The quantitative implications are investigated through an illustrative calculation. The observations used are (a) the peak force reached in foot strike (b) the vertical velocity of the foot immediately before ground contact and (c) the properties of the heel pad in compression. Data for (a) and (b) are available in the literature; measurements for (c) are presented here. The deductions are: (a) the time taken to reach peak force is about 5.4 ms, which agrees with published measurements; (b) the mass of the effective foot is about 3.6 kg. The effective foot thus includes a substantial portion of the leg: this seems reasonable. The models used for the calculations clarify the relationship between the foot strike and the shock wave, which it generates.

Biomechanical Phenomena↗

The value of hospital-based treatment for the homeless mentally ill.

The access of the homeless mentally ill to the benefits of psychiatric hospitalization has been excessively limited by deinstitutionalization, the devaluation of the benefits of inpatient evaluation and treatment, a shortage of public-sector psychiatric beds, and a tendency to regard the homeless mentally ill as untreatable. A pilot program was devised to increase the access of the homeless mentally ill to short-term hospital-based treatment within a public mental health system in which beds are in short supply. The program's usefulness demonstrates the value of hospital-based treatment for this population and suggests that hospital-based treatment is currently underutilized.

Aftercare↗

Afro-American women, poverty and mental health: a social essay.

The experience of poverty can be a risk factor for mental illness. Afro-American women are disproportionately represented among the poor, the majority of whom are single mothers and heads of households who are concentrated in the secondary labor market and the secondary welfare system. These economic and social factors can engender stress and can limit opportunities for its resolution or for the gratification of psychological needs. The consequences can range from mild emotional distresses to severe mental illnesses. Recommendations for improving mental health status include public mental health promotion and education programs, and social, economic and political actions such as increased and better quality employment opportunities and educational system reforms.

Adaptation, Psychological↗

The effects of neurohypophysial hormones on the vascular resistance of the isolated perfused gill of the European eel, Anguilla anguilla L.

Arginine vasotocin (AVT) and oxytocin (OXY), in the dose range of 2 X 10(-13)-2 X 10(-8) mol, were found to be potent vasoconstrictors of the arterioarterial pathway of isolated perfused eel gills. AVT was significantly (P less than 0.05) more potent than OXY, as indicated by the results of both dose- and concentration-response curves. Isotocin (IT) and arginine vasopressin (AVP) were unable to elicit a vascular response at doses of up to 2 X 10(-8) mol. The arteriovenous component of branchial flow was not affected by these four peptides. Results from constant-pressure head and constant-flow preparations yielded similar results.

Anguilla↗