Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

This study proposes a novel diagnostic system for the early detection of cutaneous melanoma based on morphological and biochemical changes during tumor formation. The methods used in this system are acoustic microscopy and infrared (IR) spectroscopy. The former identifies the anatomical parameters of the developing tumor, whilst the latter identifies its biochemical features, both at the micron scale. To implement this diagnostic method, an animal model that mimics human melanoma was developed. The results of this investigation show that using high-frequency (>20 MHz) acoustic microscopy in conjunction with spectroscopic images provides useful information about distinct features of melanoma tumors' 3D structures. The structures and cytoarchitecture of the tumors were assessed using conventional histology, and their malignant nature was confirmed using histological and immumohistochemical analysis. The proposed approach may provide an invaluable tool in diagnostic dermatology, as it is noninvasive and produces highly detailed and accurate data about the early appearance and development of melanoma tumors.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12345681PMC
http://dx.doi.org/10.3390/cancers17152599DOI Listing

Publication Analysis

Top Keywords

acoustic microscopy
12
diagnostic system
8
system early
8
microscopy infrared
8
melanoma
5
diagnostic
4
early situ
4
situ melanoma
4
melanoma detection
4
detection acoustic
4

Similar Publications

Transcranial ultrasound localization microscopy of the rat brain with ray theory-based aberration correction.

Ultrasonics

August 2025

College of Biomedical Engineering, Fudan University, Shanghai 200438, China; State Key Laboratory of Integrated Chips and Systems, Fudan University, Shanghai 200438, China; Poda Medical Technology Co., Ltd., Shanghai 200433, China. Electronic address:

Transcranial ultrasound localization microscopy (t-ULM) is faced with challenges posed by the skull, including acoustic attenuation and phase aberrations. There is a significant request for an efficient aberration correction method achieving a great balance between computational complexity and accuracy. In this study, the ray theory is first applied to in-vivo transcranial imaging to calculate the traveltime table in the inhomogeneous medium model of the imaging region.

View Article and Find Full Text PDF

Phase-shift droplets undergoing acoustic droplet vaporization (ADV) offer a promising approach for ultrasound-mediated drug delivery, enabling the spatiotemporally controlled release of therapeutic payloads. A comprehensive understanding of their behavior, through both optical and acoustic methods, is essential for optimizing the therapeutic efficacy. In this study, we investigated the effects of driving pressure, pulse duration, and bulk boiling point of perfluorocarbon droplets on ADV dynamics, payload release, and acoustic emissions.

View Article and Find Full Text PDF

PET imaging for non-invasive monitoring of Zr-Talidox delivery to the brain following focused ultrasound-mediated blood-brain barrier opening.

J Control Release

September 2025

Research Department of Imaging Chemistry and Biology, School of Biomedical Engineering & Imaging Sciences, King's College London, London, United Kingdom. Electronic address:

The blood-brain barrier (BBB) significantly hinders the treatment of central nervous system (CNS) disorders and brain tumors with intact BBB by restricting the entry of most therapeutic agents, including small-molecule drugs and particularly larger macromolecules. Liposomal formulations, such as PEGylated liposomes with long blood half-lives, high drug-carrying capacity, and reduced off-site toxicity, can be useful for brain drug delivery, but their large size often limits BBB penetration. A novel liposomal doxorubicin formulation(Talidox®) with a smaller size (~36 nm, determined by TEM), increased blood circulation half-life (median reported half-life 96 h), and better stability than previous clinical formulations, can be a suitable choice for brain delivery.

View Article and Find Full Text PDF

Understanding how nanonutrients influence the growth and physiological processes of cultivable fish can boost fish production efficiency with less management, advancing aquaculture toward global food security. In this study, a 60-day feeding trial was conducted to determine the effects of a nanonutrient complex (NNC) on the growth performances and physiology of Asian catfish, . Nanoparticles (NPs; Zn, Cu, and Fe) were synthesized from their metallic salts using an established acoustic method and characterized via scanning electron microscopy.

View Article and Find Full Text PDF

Surficial sediments are highly susceptible to physical, biological, and chemical processes, which can create significant heterogeneity, affecting the transmission and scattering of elastic waves. Non-invasive medical shear wave elastography (SWE) can potentially resolve shear speed heterogeneity in this delicate surficial layer. Samples were extracted from two mudflats in New Hampshire, USA, where sound speed and attenuation were measured 1 cm below the water-sediment interface using the core and resonance logger (200 kHz-1 MHz).

View Article and Find Full Text PDF