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Biomedical subjects

P M Carter

Publications and source records attributed to P M Carter.

At least 19 recordsLinked to original sources

Stimulus induced pH changes in cochlear implants: an in vitro and in vivo study.

Large pH changes have been shown to be potentially harmful to tissue. The present study was designed to examine stimulus induced changes in pH for a variety of stimulus parameters both in vitro and in vivo, in order to ensure that stimulation strategies for neural prostheses result in minimal pH change. Stimulation using charge balanced biphasic pulses at intensities both within and well above maximum clinical levels for cochlear implants (0.025-0.68 microC per phase), were delivered to platinum electrodes in vitro [saline, phosphate buffered saline (PBS), or saline with human serum albumin (HSA)], and in vivo (scala tympani). Stimulus rates were typically varied from 62.5 to 1000 pulses per second (pps), although rates of up to 14,500 pps were used in some experiments. The pH level was recorded using a pH indicator (Phenol red) or pH microelectrodes. While electrical stimulation at intensities and rates used clinically showed no evidence of a pH shift, intensities significantly above these levels induced pH changes both in vitro and in vivo. The extent of pH change was related to stimulus rate and intensity. In addition, pH change was closely associated with the residual direct current (dc) level. As expected, stimulation with capacitive coupling induced little dc and a minimal pH shift. Moreover, no pH shift was observed using alternating leading phase pulse trains at intensities up to 0.68 microC per phase and 1000 pps. Saline with HSA or buffered solutions dramatically reduced the extent of pH shift observed following stimulation in unbuffered inorganic saline. Reduced pH shift was also observed following in vivo stimulation. These findings provide an insight into mechanisms of safe change injection in neural prostheses.

Animals↗

Electrical stimulation of the auditory nerve: direct current measurement in vivo.

Neural prostheses use charge recovery mechanisms to ensure the electrical stimulus is charge balanced. Nucleus cochlear implants short all stimulating electrodes between pulses in order to achieve charge balance, resulting in a small residual direct current (DC). In the present study we sought to characterize the variation of this residual DC with different charge recovery mechanisms, stimulation modes, and stimulation parameters, and by modeling, to gain insight into the underlying mechanisms. In an acute study with anaesthetised guinea pigs, DC was measured in four platinum intracochlear electrodes stimulated using a Nucleus C124M cochlear implant at moderate to high pulse rates (1200-14,500 pulses/s) and stimulus intensities (0.2-1.75 mA at 26-200 microseconds/phase). Both monopolar and bipolar stimulation modes were used, and the effects of shorting or combining a capacitor with shorting for charge recovery were investigated. Residual DC increased as a function of stimulus rate, stimulus intensity, and pulse width. DC was lower for monopolar than bipolar stimulation, and lower still with capacitively coupled monopolar stimulation. Our model suggests that residual DC is a consequence of Faradaic reactions which allow charge to leak through the electrode tissue interface. Such reactions and charge leakage are still present when capacitors are used to achieve charge recovery, but anodic and cathodic reactions are balanced in such a way that the net charge leakage is zero.

Analysis of Variance↗

Reduction of psychiatric inpatient stay for older adults by intensive case management.

An intensive case management program was offered for a 5-month period to all older persons admitted to a county inpatient unit. A quasiexperimental design was used for program evaluation with comparison to a preintervention baseline period and to younger adults on the inpatient unit during both baseline and intervention periods. Length of stay was reduced from 27 days during baseline to 12 days during intervention. For the younger patient group, length of stay changed from 11 to 12 days. Contrary to expectation, older patients were the young-old, mostly first admissions, and with mostly functional rather than organic diagnoses. This reduction in length of stay would save about $6,750 per geriatric admission.

Aged↗

The Australian reference preparation of human serum immunoglobulins.

An Australian Reference Preparation of human serum immunoglobulins was prepared from pooled sera of 240 healthy, adult donors. The preparation was calibrated for IgG, IgA and IgM levels by radial immunodiffusion against the 1st International Reference Preparation of Human Serum Immunoglobulins G, A and M (IgG, IgA and IgM) and for IgE by PRIST against the 1st International Reference Preparation of Human Serum Immunoglobulin E (IgE). The following potency values were assigned to the Australian Reference Preparation designated ASPS 78-1 (Lyoph.): 100 IU/vial for IgG and IgE, 102 IU/vial for IgA and 114 IU/vial for IgM.

Australia↗

Evaluation of the Gambro Lundia Major 1.36 m2 disposable parallel plate dialyzer.

The Gambro Lundia Major 1.36 m2 dialyzer was assessed in vivo in ten hemodialysis patients. Urea and creatinine clearances (measured as whole blood values at 60 minutes with a blood flow rate of 200 ml/minute) were 166 +/- 8 m/minute (mean +/- standard error of the mean, n = 9) and 115 +/- 4 ml/minute (n = 11). The creatinine clearance is 15% lower than in vitro data. There was a marked decrease in urea and creatinine clearance with third use of the dialyzer. The ultrafiltration rate was 490 ml/hour/100 mmHg. The priming volume was 125 ml (at a transmembrane pressure of 100 mmHg) and residual blood volume in the dialyzer was 0.57 +/- 0.11 ml (n = 5). The handling, storage and ease of disposal of the dialyzer is better than previous models and its performance characteristics are clinically acceptable.

Adult↗

IgM paraproteins.

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Amyloidosis↗

Lactic acidosis.

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Acidosis↗

Lactic acidosis.

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Acidosis↗