Background: Under the definition "glomus tumors" are often erroneously enclosed neoplasms that are absolutely unlike for origin, location, and behavior. Glomus tumors (GTs) are small but extremely painful skin tumors of mesenchymal origin. GTs derive from the neuromyoarterial glomus in adults of middle-age and are generally benign. Due to their small size, diagnosis is often difficult and patients harboring these tumors usually consult many physicians, including sometimes neurosurgeons. More familiar to neurosurgeons are neoplasms as glomus jugular, glomus vagale, and glomus tympanicum that instead all belong to the family of paragangliomas (PGs) and for this reason should not be confused with the aforementioned skin tumors.

Method And Results: Here we present a brief review of these two different classes of tumors and also the clarification of any misunderstanding that may derive from an improper use of the terminology. In order to illustrate why skin tumors may interest neurosurgeons, we have reviewed our institutional series of outpatient surgical procedures. Differential diagnosis with other tumors that appear as cutaneous nodules is also discussed. From January 2012 to May 2015, seven patients harboring a GT (six male and one female) were treated. The age ranged from 34 to 71 years (mean, 54.1). The clinical suspect of GT, was validated by ultrasound (US) and, if necessary, by magnetic resonance imaging (MRI). All patients underwent surgery for total tumor removal. Immediate pain relief was obtained in all the patients, and no recurrences were observed during follow-up. Histology confirmed the diagnosis of GT.

Conclusions: Subcutaneous painful nodules, originating from the glomus body, are properly called GTs. Unlikely from other tumors, as schwannomas or neurofibromas, GTs are the cause of pain that is disproportionate to their tiny size and that is not associated to neurological disturbances. Surgical treatment allows a complete regression of pain with significant patient satisfaction. Neoplasms originating from neuroepithelial cells, on the contrary, should not be defined as GTs.

Download full-text PDF

Source
http://dx.doi.org/10.1007/s00701-016-2723-6DOI Listing

Publication Analysis

Top Keywords

tumors
8
skin tumors
8
patients harboring
8
glomus
6
gts
5
skin
4
skin glomic
4
glomic tumors
4
tumors referred
4
referred local
4

Similar Publications

Objective: TRIB3 has been confirmed to participate in and regulate biological metabolic activities in head and neck tumors such as nasopharyngeal carcinoma and oropharyngeal carcinoma, so the purpose of this study was to explore whether there is a correlation between TRIB3 and Laryngeal Squamous Cell Carcinoma (LSCC) and to preliminarily explore the biological characteristics of TRIB3 in LSCC.

Methods: TRIB3 expression in the LSCC was analyzed based on The Cancer Genome Atlas (TCGA) database. CCK-8 assay, Colony Formation Assay, wound healing assay, and Transwell assay were performed to investigate the roles of TRIB3 in the proliferation, invasion and metastasis of LSCC.

View Article and Find Full Text PDF

Crop rotation effects on the population density of soybean soilborne pathogens under no-till cropping system.

Plant Dis

January 2025

USDA-ARS North Central Agricultural Research Laboratory, Brookings, South Dakota, United States;

Soilborne diseases are persistent problems in soybean production. Long-term crop rotation can contribute to soilborne disease management. However, the response of soilborne pathogens to crop rotation is inconsistent, and rotation efficacy is highly variable.

View Article and Find Full Text PDF

Optimizing Transformer-Based Network via Advanced Decoder Design for Medical Image Segmentation.

Biomed Phys Eng Express

January 2025

Shandong University, No. 72, Binhai Road, Jimo, Qingdao City, Shandong Province, Qingdao, 266200, CHINA.

U-Net is widely used in medical image segmentation due to its simple and flexible architecture design. To address the challenges of scale and complexity in medical tasks, several variants of U-Net have been proposed. In particular, methods based on Vision Transformer (ViT), represented by Swin UNETR, have gained widespread attention in recent years.

View Article and Find Full Text PDF

Capacitive-based radiofrequency (Rf) radiation at 27 MHz offers a non-invasive approach for inducing hyperthermia, making it a promising technique for thermal cancer therapy applications. To achieve focused and site-specific hyperthermia, external material is required that efficiently convert Rf radiation into localized heat. Nanomaterials capable of absorbing Rf energy and convert into heat for targeted ablation are of critical importance.

View Article and Find Full Text PDF

The recent development of modular universal chimeric antigen receptor (CAR) T-cell platforms that use bifunctional adaptor intermediates to redirect engineered T-cell effector function has greatly expanded the capabilities of adoptive T-cell therapy, enabling safer and more comprehensive cancer treatment. However, universal CAR receptor systems rely on unstable transient recognition of tag-coupled intermediates for T-cell activation, and the array of targeting intermediates has been limited to antibodies and small molecules. Addressing these shortcomings, we engineered universal CAR T-cell receptors that can be covalently modified with synthetic biomaterials by accelerated SpyCatcher003-SpyTag003 chemistry for cancer-cell targeting.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!