- Abstract
- 10.1016/j.fertnstert.2021.07.1140
A NOVEL USE OF A TISSUE OXYGENATION MONITOR AT TIME OF UTERINE TRANSPLANTATION AND HYSTERECTOMY – A FEASIBILITY STUDY
- Sep 01, 2021
- Fertility and Sterility
- Jeremy Applebaum + 4 more +4
Publications from 2021 to 2026
Showing 4 of 4 papers
A NOVEL USE OF A TISSUE OXYGENATION MONITOR AT TIME OF UTERINE TRANSPLANTATION AND HYSTERECTOMY – A FEASIBILITY STUDY
A prospective pilot clinical trial evaluating the utility of a dynamic near-infrared imaging device for characterizing suspicious breast lesions
IntroductionCharacterizing and differentiating between malignant tumors, benign tumors, and normal breast tissue is increasingly important in the patient presenting with breast problems. Near-infrared diffuse optical imaging and spectroscopy is capable of measuring multiple physiologic parameters of biological tissue systems and may have clinical applications for assessing the development and progression of neoplastic processes, including breast cancer. The currently available application of near-infrared imaging technology for the breast, however, is compromised by low spatial resolution, tissue heterogeneity, and interpatient variation.Materials and methodsWe tested a dynamic near-infrared imaging schema for the characterization of suspicious breast lesions identified on diagnostic clinical ultrasound. A portable handheld near-infrared tissue imaging device (P-Scan; ViOptix Inc., Fremont, CA, USA) was utilized. An external mechanical compression force was applied to breast tissue. The tissue oxygen saturation and hemoglobin concentration were recorded simultaneously by the handheld near-infrared imaging device. Twelve categories of dynamic tissue parameters were derived based on real-time measurements of the tissue hemoglobin concentration and the oxygen saturation.ResultsFifty suspicious breast lesions were evaluated in 48 patients. Statistical analyses were carried out on 36 out of 50 datasets that satisfied our inclusion criteria. Suspicious breast lesions identified on diagnostic clinical ultrasound had lower oxygenation and higher hemoglobin concentration than the surrounding normal breast tissue. Furthermore, histopathologic-proven malignant breast tumors had a lower differential hemoglobin contrast (that is, the difference of hemoglobin concentration variability between the suspicious breast lesion and the normal breast parenchyma located remotely elsewhere within the ipsilateral breast) as compared with histopathologic-proven benign breast lesions.ConclusionThe proposed dynamic near-infrared imaging schema has the potential to differentiate benign processes from those of malignant breast tumors. Further development and refinement of the dynamic imaging device and additional subsequent clinical testing are necessary for optimizing the accuracy of detection.
Read moreComparison of TcPO 2 and StO 2 using the blood oxygen dissociation curve
It is well known that the relation between the partial pressure of oxygen in blood (PO<sub>2</sub>) and the hemoglobin oxygen saturation in blood (SO<sub>2</sub>) is given by the oxyhemoglobin dissociation curve. In this study, we investigate if a similar relation exists in tissue. The PO<sub>2</sub> in tissue was approximated by the transcutaneous partial pressure of oxygen (TcPO<sub>2</sub>) measured by TCM3<sup>TM</sup> Transcutanous pO<sub>2</sub>/pCO<sub>2</sub> Monitoring System; and the SO<sub>2</sub> in tissue (StO<sub>2</sub>) was measured by ODISsey<sup>TM</sup> Tissue Oximeter. The study showed that the TcPO<sub>2</sub> versus StO<sub>2</sub> relation is similar to the dissociation curve in blood, as expected.
Read moreMicrofluidic sorting of mammalian cells by optical force switching
Microfluidic-based devices have allowed miniaturization and increased parallelism of many common functions in biological assays; however, development of a practical technology for microfluidic-based fluorescence-activated cell sorting has proved challenging. Although a variety of different physical on-chip switch mechanisms have been proposed, none has satisfied simultaneously the requirements of high throughput, purity, and recovery of live, unstressed mammalian cells. Here we show that optical forces can be used for the rapid (2-4 ms), active control of cell routing on a microfluidic chip. Optical switch controls reduce the complexity of the chip and simplify connectivity. Using all-optical switching, we have implemented a fluorescence-activated microfluidic cell sorter and evaluated its performance on live, stably transfected HeLa cells expressing a fused histone-green fluorescent protein. Recovered populations were verified to be both viable and unstressed by evaluation of the transcriptional expression of two genes, HSPA6 and FOS, known indicators of cellular stress.
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