Finite element analysis of the light distribution of the near infrared probe to assist brain neurosu

来源 :ChineseOpticsLetters | 被引量 : 0次 | 上传用户:wcf333
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Finite element analysis is used to study the near infrared light distribution in brain tissue. The diameter of the light beam varies from 100 microns to 1 mm. The researching results indicate that the near infrared light distribution in brain tissue gets wider with rising of the beam diameter, and the distribution fields are 0.05-0.2 mm below the probe, respectively. At last, the results of finite element analysis are verified by Monte-Carlo simulation, which prove the feasibility of using near infrared light in brain surgical guidance.
其他文献
期刊
Electro-optic Pockels cell are important opto-electronic devices for conduction of optical switching, optical modulation, where an electrical biasing signal acts on a polarized light passing through the system. Since last few decades lots of works are rep
期刊
We present a novel photonic Doppler velocimetry (PDV) design for laser-driven shock-wave experiments. This PDV design is intended to provide the capability of measuring the free-surface velocity of shocked opaque materials in the terapascal range. We pres
期刊
A structure which consists of photoresist film sandwiched by Ag nano-particle and metal film is proposed to modify localized hotspot both in transversal and longitudinal direction. It shows that there is strong plasmonic coupling between Ag nano-particle
采用射频磁控溅射法在蓝宝石衬底上制备了Hf∶ZnO (HZO)薄膜,研究了氧气流速和退火温度对薄膜微观结构和光电性能的影响。为了提高薄膜的结晶性,将制备的薄膜在800 ℃下退火30 min,并自然冷却到室温。测试、分析了退火后薄膜的微观结构和光电性能。研究发现,随着氧气流速从0增加到0.6 mL/min,薄膜的致密度逐渐增大,电阻率逐渐降低,而当氧气流速继续增大到0.8 mL/min时,薄膜的结晶性恶化,电阻率突然升高。氧气流速为0.6 mL/min时制备的薄膜光电性能最佳,利用傅里叶红外光谱仪和霍尔测试
1967年2月6~7日,苏修科学院在莫斯科举行了年会,在苏修科学院院长凯耳迪什的开幕词及主席团秘书彼维的报告中,都谈到了苏修1966年在激光领域中的进展。现将有关部分摘译如下。
期刊
以前我们报导了用调Q激光器淀积薄膜的研究。表明了,尽管相应于激光沉淀方法的高速凝结,但是在衬底的温度、仍然是确定所获得层的完善程度的主要参量之一。在烧热的NaCl和云母的衬底上观察到了厚度为几百埃的Bi2Te3薄膜的外延法生长。利用有序脉冲激光,可以在保持沉淀薄膜表面高质量的情况下提高脉冲后凝结层的厚度。但是比较厚(几个微米)的《激光凝结》的定向结晶研究对于实际问题是有意义的。
期刊
期刊
期刊