Wednesday, June 17, 2020

Hologram technology may help doctors deliver targeted liver cancer treatments

Data from one of the first clinical uses of augmented reality guidance with electromagnetically tracked tools shows that the technology may help doctors quickly, safely, and accurately deliver targeted liver cancer treatments, according to a research abstract presented during a virtual session of the Society of Interventional Radiology's 2020 Annual Scientific Meeting on June 14.

The technology provides a three-dimensional holographic view inside a patient's body, allowing interventional radiologists to accurately burn away tumors while navigating to avoid organs and other critical structures.
Converting traditional two-dimensional imaging into three-dimensional holograms which we can then utilize for guidance using augmented reality helps us to better view a patient's internal structures as we navigate our way to the point of treatment."
Gaurav Gadodia, MD, Study Lead Author and Radiology Resident, Cleveland Clinic
"While conventional imaging like ultrasound and CT is safe, effective, and remains the gold-standard of care, augmented reality potentially improves the visualization of the tumor and surrounding structures, increasing the speed of localization and improving the treating physicians' confidence."
In this initial in-human pilot study, the technology was used to deliver a treatment known as percutaneous thermal ablation of solid liver tumors.

To apply this technology, the physicians use multi-phase CT to record coordinate markers placed on a patient's body. This imaging data is added to a software application that allows for the segmentation of the tumor and nearby structures within the marked coordinate space.

This information is fed into a proprietary augmented reality application, which utilizes Microsoft's HoloLens technology, a virtual reality headset with transparent lenses, to project a segmented hologram of the patient's imaged anatomy directly onto the patient. The hologram is registered to the coordinate markers to ensure the accurate location of the relevant anatomy.

Utilizing electromagnetic tracking, instruments including the ablation probe can also be visualized in the augmented reality space during the procedure, thus allowing for true holographic intraprocedural guidance.

Interventional radiologists can then use the combination of the holographic images of the patient's anatomy and tracking tools to find the tumor in the patient's liver quickly, check for optimal targeting of the tumor by the ablation probe, and avoid key structures.

The study included five patients who were selected for microwave ablation of their liver tumors. For safety during this IRB-approved study, the gold standard of ultrasound was used for primary clinical decision making and probe guidance, with direct comparison to holographic guidance.

Following ablation, images and video from post-procedural sonography, cone beam and multi-detector row CT, and HoloLens recordings were evaluated. In all five cases, intra-procedural holographic guidance was in agreement with the standard ultrasound-based guidance.

Post-procedural imaging showed adequate tumor ablation, and no patients experienced tumor recurrence at the three-month follow-up.

In this early phase pilot study, the authors anecdotally observed that the speed of tumor localization was faster with holographic guidance and that their confidence in optimal ablation and critical structure avoidance was improved over standard imaging guidance.

They are further attempting to quantify these findings as they continue to enroll patients in the study.
Beyond its use during treatments, interventional radiologists also see value in using this tool for clinicians' planning purposes and for improving patient engagement and understanding of the condition and treatment.

"This technique can be used intra-procedurally to check the accuracy and quality of the treatment, as well as pre-procedurally to engage with the patient in their own care," said Charles Martin, III, MD, FSIR, an interventional radiologist at Cleveland Clinic who is the principal investigator of the IRB and the senior author of the study.

"We can change 2D images into holograms of a patient's distinct anatomy so that both the physician and the patient get a better understanding of the tumor and treatment."

Researchers continue to test this technology for ablations in the abdominal area with plans to expand to other types of procedures and in other areas of the body.

The technology has only been tested for feasibility and therefore cannot yet be used as a standalone method for delivering treatment.

This is only for your information, kindly take the advice of your doctor for medicines, exercises and so on.     

https://gscrochetdesigns.blogspot.com. one can see my crochet creations  
https://gseasyrecipes.blogspot.com. feel free to view for easy, simple and healthy recipes    
https://kneereplacement-stickclub.blogspot.com. for info on knee replacement

Labels: , , , , , , , , ,

Tuesday, February 26, 2019

New microfluidics device can detect cancer cells in blood

Researchers have now developed a device that can isolate individual cancer cells from patient blood samples.

The microfluidics device works by separating the various cell types found in blood by their size. The device may one day enable rapid, cheap liquid biopsies to help detect cancer and develop targeted treatment plans.

Speaking about it, corresponding author of the study, said, “This new microfluidics chip lets us separate cancer cells from whole blood or minimally-diluted blood,” adding, “While devices for detecting cancer cells circulating in the blood are becoming available, most are relatively expensive and are out of reach of many research labs or hospitals. Our device is cheap, and doesn’t require much specimen preparation or dilution, making it fast and easy to use.”


The ability to successfully isolate cancer cells is a crucial step in enabling liquid biopsy where cancer could be detected through a simple blood draw. This would eliminate the discomfort and cost of tissue biopsies which use needles or surgical procedures as part of cancer diagnosis.

According to researchers, liquid biopsy could also be useful in tracking the efficacy of chemotherapy over the course of time, and for detecting cancer in organs difficult to access through traditional biopsy techniques, including the brain and lungs.

However, isolating circulating tumour cells from the blood is no easy task, since they are present in extremely small quantities.

For many cancers, circulating cells are present at levels close to one per 1 billion blood cells. “A 7.5-milliliter tube of blood, which is a typical volume for a blood draw, might have ten cancer cells and 35-40 billion blood cells,” said the researcher. “So we are really looking for a needle in a haystack.”

Microfluidic technologies present an alternative to traditional methods of cell detection in fluids. 

These devices either use markers to capture targeted cells as they float by, or they take advantage of the physical properties of targeted cells — mainly size — to separate them from other cells present in fluids.

Researchers developed a device that uses size to separate tumour cells from blood. “Using size differences to separate cell types within a fluid is much easier than affinity separation which uses ‘sticky’ tags that capture the right cell type as it goes by,” he said.

“Affinity separation also requires a lot of advanced purification work which size separation techniques don’t need,” he added.


The device the researchers developed capitalises on the phenomena of inertial migration and shear-induced diffusion to separate cancer cells from blood as it passes through ‘microchannels’ formed in plastic. ”

Researchers ‘spiked’ 5-milliliter samples of healthy blood with 10 small-cell-lung cancer cells and then ran the blood through their device. They were able to recover 93 per cent of the cancer cells using the microfluidic device. Previously-developed microfluidics devices designed to separate circulating tumor cells from blood had recovery rates between 50 per cent and 80 per cent.

When they ran eight samples of blood taken from patients diagnosed with non-small-cell lung cancer, they were able to separate cancer cells from six of the samples using the microfluidic device.

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                    PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/                                                                                                                                                         FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                  https:// kneereplacement-stickclub.blogspot.com/           

                                                                           FOR CROCHET DESIGNS                                                                                                                                                                                                  https://gscrochetdesigns.blogspot.com

Labels: , , , , , , , , , , ,

Thursday, December 06, 2018

Parkinson's disease: Popular western medicine Apomorphine now launched in Bengaluru

In a boon to patients in the middle stages of Parkinson’s Disease, a private hospital in Bengaluru, in association with UK-based specialty pharmaceutical company, has launched Apomorphine for the first time in India. Apomorphine, available both as injections and infusion pumps, has been popular in the West for over 15 years in the management of Parkinson’s, but Indian patients could not benefit from it until now because of a lack of regulatory approvals. Now, it will be given on compassionate grounds to a select number of patients.

This powerful new drug stimulates the production of dopamine by nerve cells in the brain, providing quick and effective relief to patients and improving their quality of life. A Parkinson’s Disease and Movement Disorders Specialist,  where the drug will be available, said, “Currently in India, patients of Parkinson’s have only two options: either oral treatment for the early stages of the disease, or very expensive Deep Brain Stimulation (DBS) surgery for advanced stages. There was no treatment for the middle stages of the disease. Most patients in India cannot afford DBS. This procedure is also not a choice for all ages or stages of Parkinson’s Disease.”
“Introduction of apomorphine in India has given an important medical option to doctors in the middle stages of the management of Parkinson’s Disease,” Dr.  said. Dr.  said once the Drug Controller General of India approves the drug it will be available at other hospitals. The prevalence of Parkinson’s Disease in India is 300-400 out of 100,000, which is expected to double by 2030.

THIS IS ONLY FOR INFORMATION, ALWAYS CONSULT YOU PHYSICIAN BEFORE HAVING ANY PARTICULAR FOOD/ MEDICATION/EXERCISE/OTHER REMEDIES.                                                                                                                                                                                                                                                                                        PS- THOSE INTERESTED IN RECIPES ARE FREE TO  VIEW MY BLOG-                                                                                           https://gseasyrecipes.blogspot.com/                                                                                                                                                                             FOR INFO ABOUT KNEE REPLACEMENT, YOU CAN VIEW MY BLOG-                                                                                                                             https:// kneereplacement-stickclub.blogspot.com/                                                                                       FOR CROCHET DESIGNS                                                                                                                                                                                                                                 https://gscrochetdesigns.blogspot.com

Labels: , , , , , , , , , , , , ,