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1.
Adv Space Res ; 33(8): 1347-51, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-15803626

RESUMO

ALTEA-MICE will supplement the ALTEA project on astronauts and provide information on the functional visual impairment possibly induced by heavy ions during prolonged operations in microgravity. Goals of ALTEA-MICE are: (1) to investigate the effects of heavy ions on the visual system of normal and mutant mice with retinal defects; (2) to define reliable experimental conditions for space research; and (3) to develop animal models to study the physiological consequences of space travels on humans. Remotely controlled mouse setup, applied electrophysiological recording methods, remote particle monitoring, and experimental procedures were developed and tested. The project has proved feasible under laboratory-controlled conditions comparable in important aspects to those of astronauts' exposure to particle in space. Experiments are performed at the Brookhaven National Laboratories [BNL] (Upton, NY, USA) and the Gesellschaft für Schwerionenforschung mbH [GSI]/Biophysik (Darmstadt, FRG) to identify possible electrophysiological changes and/or activation of protective mechanisms in response to pulsed radiation. Offline data analyses are in progress and observations are still anecdotal. Electrophysiological changes after pulsed radiation are within the limits of spontaneous variability under anesthesia, with only indirect evidence of possible retinal/cortical responses. Immunostaining showed changes (e.g. increased expression of FGF2 protein in the outer nuclear layer) suggesting a retinal stress reaction to high-energy particles of potential relevance in space.


Assuntos
Íons Pesados , Retina/efeitos da radiação , Visão Ocular/efeitos da radiação , Animais , Adaptação à Escuridão , Eletrofisiologia , Camundongos , Camundongos Mutantes , Modelos Animais , Aceleradores de Partículas , Estimulação Luminosa , Doses de Radiação , Projetos de Pesquisa , Voo Espacial
2.
Adv Space Res ; 33(8): 1352-7, 2004.
Artigo em Inglês | MEDLINE | ID: mdl-15803627

RESUMO

The ALTEA project investigates the risks of functional brain damage induced by particle radiation in space. A modular facility (the ALTEA facility) is being implemented and will be operated in the International Space Station (ISS) to record electrophysiological and behavioral descriptors of brain function and to monitor their time dynamics and correlation with particles and space environment. The focus of the program will be on abnormal visual perceptions (often reported as "light flashes" by astronauts) and the impact on retinal and brain visual structures of particle in microgravity conditions. The facility will be made available to the international scientific community for human neurophysiological, electrophysiological and psychophysics experiments, studies on particle fluxes, and dosimetry. A precursor of ALTEA (the 'Alteino' project) helps set the experimental baseline for the ALTEA experiments, while providing novel information on the radiation environment onboard the ISS and on the brain electrophysiology of the astronauts during orbital flights. Alteino was flown to the ISS on the Soyuz TM34 as part of mission Marco Polo. Controlled ground experiments using mice and accelerator beams complete the experimental strategy of ALTEA. We present here the status of progress of the ALTEA project and preliminary results of the Alteino study on brain dynamics, particle fluxes and abnormal visual perceptions.


Assuntos
Encéfalo/efeitos da radiação , Radiação Cósmica , Luz , Retina/efeitos da radiação , Voo Espacial/instrumentação , Percepção Visual/efeitos da radiação , Ausência de Peso , Adaptação à Escuridão , Eletrofisiologia , Desenho de Equipamento , Meio Ambiente Extraterreno , Humanos , Monitorização Fisiológica , Fosfenos , Estimulação Luminosa , Monitoramento de Radiação , Pesquisa
4.
Adv Space Res ; 31(1): 135-40, 2003.
Artigo em Inglês | MEDLINE | ID: mdl-12577986

RESUMO

In this work we present preliminary results of nuclear composition measurements on board space station MIR obtained with SILEYE-2 particle telescope. SILEYE-2 was placed on MIR in 1997 and has been working since then. It consists of an array of 6 active silicon strip detectors which allow nuclear and energetic identification of cosmic rays in the energy range between approximately 30 and 200 MeV/n. The device is attached to an helmet and connected to an eye mask which shields the cosmonaut eyes from light and allow studies of the Light Flashes (LF) phenomenon. In addition to the study of the causes of LF, the device is used to perform real time long term radiation environment monitoring inside the MIR, performing measurements in solar quiet and active days.


Assuntos
Radiação Cósmica , Fosfenos , Monitoramento de Radiação/instrumentação , Atividade Solar , Voo Espacial/instrumentação , Relação Dose-Resposta à Radiação , Desenho de Equipamento , Meio Ambiente Extraterreno , Olho/efeitos da radiação , Dispositivos de Proteção da Cabeça , Humanos , Luz , Estimulação Luminosa , Silício , Astronave/instrumentação
5.
Adv Space Res ; 31(1): 141-6, 2003.
Artigo em Inglês | MEDLINE | ID: mdl-12577991

RESUMO

The ALTEA project participates to the quest for increasing the safety of manned space flights. It addresses the problems related to possible functional damage to neural cells and circuits due to particle radiation in space environment. Specifically it aims at studying the functionality of the astronauts' Central Nervous Systems (CNS) during long space flights and relating it to the peculiar environments in space, with a particular focus on the particle flux impinging in the head. The project is a large international and multidisciplinary collaboration. Competences in particle physics, neurophysiology, psychophysiology, electronics, space environment, data analyses will work together to construct the fully integrated vision electrophysiology and particle analyser system which is the core device of the project: an helmet-shaped multi-sensor device that will measure concurrently the dynamics of the functional status of the visual system and passage of each particle through the brain within a pre-determined energy window. ALTEA is scheduled to fly in the International Space Station in late 2002. One part of the multi-sensor device, one of the advanced silicon telescopes, will be launched in the ISS in early 2002 and serve as test for the final device and as discriminating dosimeter for the particle fluences within the ISS.


Assuntos
Sistema Nervoso Central/efeitos da radiação , Radiação Cósmica , Fosfenos , Monitoramento de Radiação/instrumentação , Voo Espacial/instrumentação , Ausência de Peso , Adaptação Fisiológica , Medicina Aeroespacial/instrumentação , Sistema Nervoso Central/fisiologia , Eletroencefalografia , Desenho de Equipamento , Dispositivos de Proteção da Cabeça , Humanos , Monitorização Fisiológica/instrumentação , Estimulação Luminosa , Doses de Radiação , Retina/fisiologia , Retina/efeitos da radiação
6.
Acta Astronaut ; 50(8): 511-25, 2002 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-11962526

RESUMO

The phenomenon of light flashes (LF) in eyes for people in space has been investigated onboard Mir. Data on particles hitting the eye have been collected with the SilEye detectors, and correlated with human observations. It is found that a nucleus in the radiation environment of Mir has roughly a 1% probability to cause an LF, whereas the proton probability is almost three orders of magnitude less. As a function of LET, the LF probability increases above 10 keV/micrometer, reaching about 5% at around 50 keV/micrometer.


Assuntos
Radiação Cósmica , Olho/efeitos da radiação , Luz , Monitoramento de Radiação/instrumentação , Voo Espacial , Percepção Visual/efeitos da radiação , Medicina Aeroespacial , Astronautas , Íons Pesados , Humanos , Transferência Linear de Energia , Masculino , Fosfenos , Prótons , Radiometria , Silício , Atividade Solar , Fatores de Tempo , Visão Ocular/efeitos da radiação , Ausência de Peso
7.
Phys Med ; 17 Suppl 1: 255-7, 2001.
Artigo em Inglês | MEDLINE | ID: mdl-11776990

RESUMO

The ALTEA project studies the problems related to possible functional damage to the Central Nervous System (CNS) due to particle radiation in space environment. The project is a large international and multi-disciplinary collaboration. The ALTEA instrumentation is an helmet-shaped multi-sensor device that will measure concurrently the dynamics of the functional status of the visual system and the passage of each particle through the brain within a pre-determined energy window. ALTEA is scheduled to fly in the International Space Station in February 2003. One part of the multi-sensor device, one of the advanced silicon telescopes, will be launched in the ISS in early 2002 and serve as test for the final device and as discriminating dosimeter for the particle fluences within the ISS.


Assuntos
Radiação Cósmica , Olho/efeitos da radiação , Luz , Fosfenos , Voo Espacial/instrumentação , Percepção Visual/efeitos da radiação , Medicina Aeroespacial/instrumentação , Adaptação à Escuridão/efeitos da radiação , Eletroencefalografia , Desenho de Equipamento , Meio Ambiente Extraterreno , Humanos , Estimulação Luminosa/instrumentação , Astronave
8.
Adv Space Res ; 25(10): 2075-9, 2000.
Artigo em Inglês | MEDLINE | ID: mdl-11542859

RESUMO

The SilEye experiment aims to study the cause and processes related to the anomalous Light Flashes (LF) perceived by astronauts in orbit and their relation with Cosmic Rays. These observations will be also useful in the study of the long duration manned space flight environment. Two PC-driven silicon detector telescopes have been built and placed aboard Space Station MIR. SilEye-1 was launched in 1995 and provided particles track and LF information; the data gathered indicate a linear dependence of FLF(Hz) ( 4 2) 10(3) 5.3 1.7 10(4) Fpart(Hz) if South Atlantic Anomaly fluxes are not included. Even though higher statistic is required, this is an indication that heavy ion interactions with the eye are the main LF cause. To improve quality and quantity of measurements, a second apparatus, SilEye-2, was placed on MIR in 1997, and started work from August 1998. This instrument provides energetic information, which allows nuclear identification in selected energy ranges; we present preliminary measurements of the radiation field inside MIR performed with SilEye-2 detector in June 1998.


Assuntos
Radiação Cósmica , Luz , Prótons , Voo Espacial/instrumentação , Percepção Visual/efeitos da radiação , Adaptação à Escuridão , Interpretação Estatística de Dados , Humanos , Estimulação Luminosa , Doses de Radiação , Silício , Astronave/instrumentação
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