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Microbubbles are the most commonly used imaging contrast agent in ultrasound. However, due to their size, they are limited to vascular compartments. These microbubbles can be condensed or formulated as perfluorocarbon nanodroplets (PFCnDs) that are small enough to extravasate and then be triggered acoustically at the target site. These nanoparticles can be further enhanced by including an optical absorber such as near infrared organic dye or nanoparticles (e.g., copper sulfide nanoparticles or gold nanoparticles/nanorods). Optically tagged PFCnDs can be vaporized through laser irradiation in a process known as optical droplet vaporization (ODV). This process of activation enables the use of high boiling point perfluorocarbon cores, which cannot be vaporized acoustically under the maximum mechanical index threshold for diagnostic imaging. Higher boiling point cores result in droplets that will recondense after vaporization, resulting in "blinking" PFCnDs that briefly produce contrast after vaporization before condensing back into nanodroplet form. This process can be repeated to produce contrast on demand, allowing for the background free imaging, multiplexing, super-resolution, and contrast enhancement through both optical and acoustic modulation. This article will demonstrate how to synthesize optically-triggerable, lipid shell PFCnDs utilizing probe sonication, create polyacrylamide phantoms to characterize the nanodroplets, and acoustically modulate the PFCnDs after ODV to improve contrast.
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http://dx.doi.org/10.3791/62814 | DOI Listing |
Animal display behaviors, such as advertisement songs, are flashy and attention grabbing by necessity. In order to balance the costs and benefits of such signals, individuals must be able to assess both their own energetic state and their social environment. In this study, we investigated the role of leptin, a hormonal signal of high energy balance, in regulating the vocal advertisement display of Alston's singing mouse ( ).
View Article and Find Full Text PDFeNeuro
September 2025
Institute for Environmental Design & Engineering, University College London, London WC1H 0NN, United Kingdom.
When compared to nature sounds, exposure to mechanical sounds evokes higher levels of perceptual and physiological arousal, prompting the recruitment of attentional and physiological resources to elicit adaptive responses. However, it is unclear whether these attributes are solely related to the sound intensity of mechanical sounds, since in most real-world scenarios, mechanical sounds are present at high intensities, or if other acoustic or semantic factors are also at play. We measured the Skin Conductance Response (SCR), reflecting sympathetic nervous system (SNS) activity as well as the pleasantness and eventfulness of the soundscape across two passive and active listening tasks in (N = 25; 14 females, 11 males) healthy subjects.
View Article and Find Full Text PDFJ Am Acad Audiol
September 2025
The spectral and temporal components of the acoustic signal are processed in the central auditory system and contribute to speech and language processing. This study aimed to assess the spectral and temporal auditory processing skills in children with a history of speech and language delay in early childhood. The following tests were conducted to address our purpose: frequency following response test, temporal modulation transfer function test, spectral temporally modulated ripple test, and speech intelligibility in noise test.
View Article and Find Full Text PDFPLoS One
September 2025
Department of Otolaryngology-Head and Neck Surgery, Medical University of South Carolina, Charleston, South Carolina, United States of America.
This study examined individual differences in how older adults with normal hearing (ONH) or hearing impairment (OHI) allocate auditory and cognitive resources during speech recognition in noise at equal recognition. Associations between predictor variables and speech recognition were assessed across three datasets that each included 15-16 conditions involving temporally filtered speech. These datasets involved (1) degraded spectral cues, (2) competing speech-modulated noise, and (3) combined degraded spectral cues in speech-modulated noise.
View Article and Find Full Text PDFMil Med
September 2025
Aerospace Medicine and Vestibular Research Laboratory, Mayo Clinic Arizona, Scottsdale, AZ 85259, United States.
Introduction: In military settings, ear-worn communication systems and hearing protection have equal importance, but opposite purposes. It is crucial to provide clear communication signal free of noise that may also be hazardous to hearing. Electrical auditory stimulation is a mode of transmitting high fidelity speech information with an amplitude modulated electromagnetic signal that is sent transcutaneously through electrodes.
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