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Biomedical subjects

S Sundararaman

Publications and source records attributed to S Sundararaman.

10 recordsLinked to original sources

Anaerobic sustainability for integrated biomethanation of sugar mill waste and municipal sewage.

The study investigates the viability of biogas generation by integrating the biodegradable waste product of sugar industry viz., pressmud with municipal sewage using biomethanation process. The total solid content of pressmud and sewage mixture was optimized with respect to maximization of biogas yield with continuous monitoring over several operating parameters. Optimum total solid content of 5% found to yield 80 m3 of biogas per ton of pressmud compared to 65m3 per ton of conventional digestion of pressmud alone. It is estimated that 3.4 x 10(8) m3 of biogas can be generated through integrated biomethanation from the potential of4.2 million tons ofpressmud available annually in India.

Bacteria, Anaerobic↗

Therapeutic responses of spontaneous canine malignancies to combinations of radiotherapy and hyperthermia.

The goals of this ongoing Phase III study of adjuvant local hyperthermia with radiotherapy were to evaluate how tumor control and normal tissue complications were related to patient and treatment variables. Canine veterinary patients with localized malignancies were stratified by histology and anatomic site and randomized into three groups. All patients received radiotherapy (60CO) in 3.5 Gy fractions given Mon-Wed-Fri to 14 treatments (49 Gy). One group received radiotherapy alone while the others also received microwave-induced hyperthermia (44 degrees C) for 30 minutes once each week. Hyperthermia followed radiotherapy and was given to one group immediately and delayed 4-5 hours in the other. Adjuvant hyperthermia resulted in a significant (p less than .05) increase in complete response rate, reduction in the frequency of non-responders, and increased persistent local control relative to radiotherapy alone. Hyperthermia increased the complete response rate regardless of histology, site, or volume and with the current sample size control was significantly (p less than .05) greater for sarcomas, tumors of the trunk and extremities, and those with volumes less than 10 cc. Quantitative clinical assessment of the acute response of skin and oral mucosa indicated that hyperthermia significantly enhanced these acute reactions, which required roughly twice the healing time observed with radiotherapy alone. Quantitative histologic scoring of changes seen between pre- and post-therapy skin biopsies indicated that a treatment induced decline in the frequency of dermal blood vessels, sebaceous glands, and hair follicles was enhanced by adjuvant hyperthermia, particularly in the late response evaluation interval. The probability of tumor control and adverse normal tissue responses correlated with several measures of thermal dose. Thermal doses in excess of 120 equivalent minutes at 43 degrees C correlated positively with increased skin reactions and negatively with the complete response rate, and these trends were usually evident during the animals' first treatment.

Animals↗

The modification of specific absorption rates in interstitial microwave hyperthermia via tissue-equivalent material bolus.

Patterns of specific absorption rates generated by interstitial, microwave antenna arrays must be experimentally ascertained and quantified to facilitate their clinical incorporation. Phantom studies involved the use of four single-gap, coaxial antennas oriented in a 2 cm square array. These dipoles were driven in phase by a microwave generator at a frequency of 915 MHz. The inherent limitations in modifying the specific absorption rate patterns were addressed with the addition of bolus to the phantom. These additions of Guy's muscle tissue-equivalent material were made either proximal or distal to the phantom proper. Experiments conducted in the presence and absence of tissue-equivalent material bolus showed the ability to achieve broader bands of 50% power deposition in certain bolus conditions. These heating patterns were sufficiently reproducible and predictable to warrant clinical application of the bolus addition. A through-and-through method of catheter implantation allowed for bolus addition when deemed necessary. Treatments with veterinary and human patients using the bolus method to modify heating patterns yielded augmented patterns of power deposition. The effective length of the antennas that would radiate efficiently was essentially broadened via introduction of a microwave-interacting medium. As a result of the tissue equivalent material's ability to absorb microwave power, it was necessary to interpose minimally-interactive styrofoam spacers to limit heat transfer effects at the tissue-bolus interfaces.

Aged↗