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J Camerlo

Publications and source records attributed to J Camerlo.

2 recordsLinked to original sources

A new pacemaker algorithm for continuous capture verification and automatic threshold determination: elimination of pacemaker afterpotential utilizing a triphasic charge balancing system.

A new pacemaker algorithm designed to automatically verify pacemaker capture and determine pacing threshold by detection of a stimulus evoked potential was studied in 20 patients undergoing permanent pacemaker implantation. To eliminate pacing stimulus afterpotential and detect an evoked response, a hardware feedback circuit and a software template matching algorithm were used to produce a triphasic charge-balanced pacing pulse. After charge balancing the pacing lead, a residual artifact is measured. A capture window is defined as the area integral of the first 24 msec of the evoked depolarization, and a capture threshold as one third the amplitude of the capture window. The maximum allowable residual artifact is one eighth the amplitude of the capture window. Once the stimulus afterpotential is eliminated and the evoked response detected, capture threshold is automatically and continuously determined and the algorithm adds a 0.8-V safety margin to the pacemaker output. This algorithm was run automatically and after simulated loss of capture, produced by manually decreasing pacer output below threshold, in the bipolar (13 patients) and unipolar (20 patients) pacing modes. In each patient loss of capture was immediately detected. The data were consistent (P = NS) between algorithm runs. During unipolar pacing the area integral of the first 24 msec of the evoked response was 412 +/- 137 versus 413 +/- 144 and the residual artifact 5.8 +/- 4.8 versus 8.1 +/- 7.5. The resulting ratio (signal/noise) of the two parameters was 150 +/- 141 versus 145 +/- 181. Automatically determined threshold was 0.69 +/- 0.43 V versus 0.69 +/- 0.42.(ABSTRACT TRUNCATED AT 250 WORDS)

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Prevention of acute GVHD by in vivo use of anti-interleukin-2 receptor monoclonal antibody (33B3.1): a feasibility trial in 15 patients.

Results of allogeneic bone marrow transplantation (BMT) are still impaired due mainly to acute graft-versus-host disease (GVHD). Successful T cell depletion may abolish GVHD but causes increased rates of rejection and relapse. In vivo blocking of the CD25 receptor on T cells induces efficient and selective immunosuppression. We present results of a pilot trial studying the use of a CD25 MoAb (33B3.1) to prevent acute GVHD after allogeneic BMT. Fifteen patients were included in the study; 14 had a fully HLA matched sibling donor. In association with short methotrexate and cyclosporin A post-graft immunosuppression, the patients received 10 mg of 33B3.1 monoclonal antibody daily according to three successive schedules to study toxicity on marrow graft. No major adverse clinical experiences occurred. Engraftment was not delayed; after 4 months, full chimerism was documented in 14/15 studied patients. No human anti-rat antibody was detected during treatment period. No GVHD occurred during the period of antibody administration. Two patients relapsed; seven are alive and well with a median follow-up of 650 days. This study justifies a prospective controlled study to determine the real impact of 33B3.1 on GVHD prophylaxis.

Acute Disease