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Skull Impact on the Ultrasound Beam Profile of Transcranial Focused Ultrasound Stimulation

机译:颅骨对经颅聚焦超声刺激超声束轮廓的影响

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Transcranial focused ultrasound stimulation (tFUS) is a promising noninvasive neuromodulation tool for targeting brain regions with millimeter-scale spatial resolutions. In conventional tFUS studies, a focused ultrasound beam generated by an external ultrasound transducer is delivered to the neural target. In tFUS, ultrasound should travel through the skull that features large attenuation and different acoustic impedance compared with the soft tissue, thereby resulting in acoustic impedance mismatch and reflections. In this paper, we study the impact of the rat skull on the ultrasound beam profile generated by both focused and unfocused (but with a natural focus) transducers at a wide sonication frequency (fp) range of 0.5-9.5 MHz. At different axial and lateral distances from the transducers, we measured ultrasound intensity profiles of three transducers operating at fps of 0.5 MHz, 1.2 MHz and 9.5 MHz with and without the skull. Our results showed that ultrasound beam profiles were significantly distorted by the skull. The transmission factor due to skull attenuation was measured 0.79,0.34 and 0.03 at fps of 0.5 MHz, 1.2 MHz and 9.5 MHz, respectively, when the skull was close to transducers focal zones.
机译:经颅聚焦超声刺激(tFUS)是一种有前途的无创神经调节工具,可用于以毫米级空间分辨率为目标的大脑区域。在传统的tFUS研究中,由外部超声换能器产生的聚焦超声束被传递到神经目标。在tFUS中,超声应穿过具有较大衰减和与软组织不同的声阻抗的颅骨,从而导致声阻抗失配和反射。在本文中,我们研究了大鼠头骨对在宽超声频率(f)下聚焦和未聚焦(但具有自然聚焦)换能器产生的超声束轮廓的影响。 p )0.5-9.5 MHz的范围。在距换能器的轴向和横向距离不同的情况下,我们测量了在f下工作的三个换能器的超声强度分布 p 带有和不带有头骨的0.5 MHz,1.2 MHz和9.5 MHz的信号。我们的结果表明,头骨的超声束轮廓明显失真。在f处测得的因颅骨衰减而引起的传播因子为0.79、0.34和0.03 p 当头骨靠近换能器聚焦区时,分别为0.5 MHz,1.2 MHz和9.5 MHz。

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