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At least 469 records · Page 26Linked to original sources

Dual-channel telemetry system for recording vocalization-correlated neuronal activity in freely moving squirrel monkeys.

A miniature telemetric system is described which allows simultaneous measurements of neural activity and vocalization in freely moving monkeys within their social group. Single and multi-unit activities were detected with medium impedance electrodes that were fixed to self-made microdrives allowing accurate vertical positioning over a range of 8 mm. Vocalizations were registered by means of a piezo-ceramic device sensing the vocalization-induced skull vibrations. This allowed identification of the vocalizing animal in a larger group and eliminated environmental noise. Neuronal activity and vocalization were transmitted via separate channels of a FM transmitter using different carrier frequencies. The signals were decoded in two conventional FM receivers equipped with an automatic frequency control. The signals were stored for off-line analysis on a HiFi videotape recorder.

Amplifiers, Electronic↗

Use of telemetry to assess vaccine-induced protection against parenteral and aerosol infections of Venezuelan equine encephalitis virus in non-human primates.

Two investigational vaccines, TC-83 (live-attenuated) and C-84 (formalin-inactivated), are currently available to immunize at-risk individuals against Venezuelan equine encephalitis virus (VEE). Ideally, such vaccines should protect against both the natural mosquito-borne route of infection and from aerosol, the most common route of laboratory infection. Whereas considerable data on vaccine efficacy following parenteral challenge are available, the efficacy of these vaccines against disease caused by aerosol exposure is not well established in primates. We compared the immunogenicity and protective capacity of TC-83 and C-84 against either subcutaneous or aerosol routes of infection in cynomolgus monkeys implanted with temperature-monitoring radiotelemetry devices. A single s.c. dose of TC-83, or three s.c. doses (days 0, 7, 28) of C-84, elicited similar serum virus-neutralizing antibody responses. Animals immunized with either TC-83 or C-84 were protected against s.c. infection. In contrast, after aerosol infection, 40% of the animals vaccinated with either TC-83 or C-84 developed signs nearly as severe as those seen in unvaccinated animals. Protection was not entirely consistent with the measured preinfection immune responses: unprotected animals had serum virus-neutralizing antibody titers and lymphoproliferative responses similar to those seen in protected animals. In this study, C-84 (three doses) protected monkeys as well as TC-83 (one dose) against either a s.c. or aerosol VEE challenge.

Aerosols↗

Continuous assessment of multiple vital physiological functions in conscious freely moving rats using telemetry and a plethysmography system.

The general pharmacologist in the pharmaceutical industry is challenged to generate physiologically relevant data on possible safety liabilities or on secondary therapeutic uses as early as possible in drug development. This implies the need for efficient use of usually only small supplies of test article. For this reason, we have developed a new animal model combining various elements to provide a broad spectrum of data focussing on the so-called vital physiological functions: cardiovascular, respiratory, and central nervous system. This system uses rats chronically implanted with transmitters for the measurement of arterial pressure, ECG, and body temperature. Modification of the transmitters also allows for the simultaneous assessment of locomotor activity. Studies are performed with these rats in plethysmographs placed directly over the antenna units thus allowing for the additional assessment of respiratory function in the same studies. Using this system, we can generate simultaneously a wide range of relevant physiological parameters in conscious rats with a modest requirement for test article. Such an approach is highly useful for getting early safety readouts of potential drug development candidates as well as for detecting possible secondary therapeutic actions of a drug.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Video-EEG telemetry can be a crucial tool for neurologists experienced in epilepsy when diagnosing seizure disorders.

We retrospectively reviewed the charts of 121 patients consecutively admitted to our epilepsy-monitoring unit (VET) during the period of 01 July 2001 to 31 December 2002. We excluded patients with a confirmed diagnosis of epilepsy who were admitted for invasive pre-surgical monitoring. Medical records were reviewed to collect demographic and clinical information that lead to the initial referral for VET by neurologists with expertise in epilepsy or by an epileptologist. We identified 29 patients (24%), whose diagnosis changed after VET. Their seizure duration ranged from 1 to 46 years. A diagnosis of epileptic seizures (ES) was made in four of the patients who were initially felt to have nonepileptic seizures (NES). The diagnosis of NES was made in 22 patients who were initially felt to have ES. All of these 29 patients had failed at least two or more antiepileptic drugs (AEDs). A misclassification of epilepsy syndrome was found in three patients. Eleven of the NES patients had risk factors that would increase the likelihood of ES, including significant head injury (n=6), febrile seizures (n=2), meningioencephalitis (n=2), and tumours (n=1). Four of these 11 patients had abnormal interictal EEGs. We conclude that VET is crucial in establishing a diagnosis in patients with seizures. Without VET, patients can be misclassified or receive ineffective treatment, even when being treated by specialists in epilepsy. Thus, VET, can help facilitate the most appropriate type of therapy in difficult to control patients.

Adult↗