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Biomedical subjects

J L Redd

Publications and source records attributed to J L Redd.

3 recordsLinked to original sources

Microsatellite instability occurs frequently and in both diploid and aneuploid cell populations of Barrett's-associated esophageal adenocarcinomas.

Alterations of microsatellites consisting of extra or missing copies of these sequences occur at relatively high frequencies in sporadic and hereditary colorectal adenocarcinomas, gastric and pancreatic cancers, and at lower frequencies in endometrial, bladder, ovarian, and other carcinomas. We determined the prevalence of microsatellite instability in esophageal adenocarcinoma, Barrett's esophagus, and squamous cell carcinoma of the esophagus. Assays were performed on 105 patients, including 28 subjects with Barrett's metaplasia, 36 with Barrett's-associated adenocarcinoma, and 42 with primary esophageal squamous cell carcinoma. Flow cytometric nuclear sorting based on DNA content was performed on 25 of the adenocarcinomas prior to DNA extraction. Specimens from 11 of the 106 patients (10%) showed instability at 1 or more chromosomal loci. Instability was seen in 2 of 28 patients (7%) with Barrett's metaplasia alone, in 8 of 36 (22%) with adenocarcinoma, and in 1 of 42 (2%) with squamous cell carcinoma. Among the 25 flow cytometrically sorted adenocarcinomas, instability occurred in 8 (32%); sorted diploid nuclei from these tumors showed instability in 4 of 8 cases (50%). These data indicate that microsatellite instability occurs frequently in Barrett's-associated esophageal adenocarcinoma. They also suggest that in esophageal adenocarcinomas, microsatellite instability can develop as an early event in metaplasia and in diploid tumor cells, before aneuploidy occurs.

Adenocarcinoma↗

Reflex sympathetic dystrophy after a minor electric shock.

A 37-year-old right-handed female sustained a minor electric shock to her right hand while changing a bulb in a Kodak Reliant Intelligent Microfilmer 2000. She noted a progressive onset of parasthesias of her right hand that became associated with throbbing pain at rest, as well as swelling and profound weakness of her hand during the next two months. Plethysmography demonstrated arterial vasoconstriction of her right hand. Her reflex sympathetic dystrophy was successfully treated with cervicothoracic sympathetic blocks.

Adult↗

Personal emergency response systems.

A personal response system is a signaling device that summons help during an emergency. Although personal response systems vary widely, there are three components. The first component is the electronic hardware in the home, which consists of portable and installed sensors and the control console. The second component is the emergency response center, which is either provider-based or manufacturer-based. The third component involves the dispatch of appropriate assistance. The primary users of personal response systems are women in their seventies and eighties who live alone and who have cardiac and musculoskeletal problems, which make them prone to falls. The frequency of personal response system use varies from an average of 0.44 to 0.84 emergencies per subscriber per year. Program coordinators believe that personal response systems help to delay institutionalization, reduce admissions to hospitals, substantially shorten hospital stays, and reduce the duration of home attendant services. The most favorable impact of the personal response system has been its psychologic value to the users and their families.

Aged↗