Augmenting the training space of an epidural needle insertion simulator with HoloLens

Author(s):  
Daniel da Silva ◽  
Cátia Botelho Costa ◽  
Nuno André da Silva ◽  
Isabel Ventura ◽  
Francisca Pais Leite ◽  
...  
2018 ◽  
Vol 67 (12) ◽  
pp. 922-930 ◽  
Author(s):  
H. Bomberg ◽  
N. Paquet ◽  
A. Huth ◽  
S. Wagenpfeil ◽  
P. Kessler ◽  
...  

1995 ◽  
Vol 23 (3) ◽  
pp. 339-341 ◽  
Author(s):  
J. A. Elson ◽  
M. J. Paech

A randomized double-blind study was conducted in 83 women scheduled for elective caesarean section to determine the efficacy of EMLA and lignocaine infiltration for epidural insertion. The patients were randomly allocated to one of three groups: Group A (EM/LIG) received EMLA and intradermal and subdermal 1% lignocaine infiltration, Group B (EM/SAL) EMLA and saline while Group C (PL/LIG) received placebo cream and 1% lignocaine. Assessments using a 100 mm pain score were performed on skin infiltration and after subsequent insertion of a 16 gauge Tuohy needle into the supraspinous ligament. Skin changes under the applied cream and nursing rating of patients’ response were also noted. Statistical analyses were performed using Kruskal-Wallis and Fisher's Exact Tests. Groups were comparable for age, weight, parity and EMLA application time (interquartile range 105-150 minutes) There were significantly higher pain scores for skin infiltration in Group C (PL/LIG) (P<0.01) and for epidural needle insertion in Group B (EM/SAL) (P<0.05). We concluded that in this patient population, the application of EMLA cream for at least 90 minutes plus 1% lignocaine infiltration optimized patient comfort for epidural insertion.


Pain Medicine ◽  
2019 ◽  
Vol 20 (9) ◽  
pp. 1750-1755 ◽  
Author(s):  
Hesham Elsharkawy ◽  
Wael Saasouh ◽  
Rovnat Babazade ◽  
Loran Mounir Soliman ◽  
Jean-Louis Horn ◽  
...  

Abstract Objective The anatomical landmarks method is currently the most widely used technique for epidural needle insertion and is faced with multiple difficulties in certain patient populations. Real-time ultrasound guidance has been recently used to aid in epidural needle insertion, with promising results. Our aim was to test the feasibility, success rate, and satisfaction associated with a novel real-time ultrasound-guided lumbar epidural needle insertion in the transverse interlaminar view. Design Prospective descriptive trial on a novel approach. Setting Operating room and preoperative holding area at a tertiary care hospital. Subjects Adult patients presenting for elective open prostatectomy and planned for surgical epidural anesthesia. Methods Consented adult patients aged 30–80 years scheduled for open prostatectomy under epidural anesthesia were enrolled. Exclusion criteria included allergy to local anesthetics, infection at the needle insertion site, coagulopathy, and patient refusal. A curvilinear low-frequency (2–5 MHz) ultrasound probe and echogenic 17-G Tuohy needles were used by one of three attending anesthesiologists. Feasibility of epidural insertion was defined as a 90% success rate within 10 minutes. Results Twenty-two patients were enrolled into the trial, 14 (63.6%) of whom found the process to be satisfactory or very satisfactory. The median time to perform the block was around 4.5 minutes, with an estimated success rate of 95%. No complications related to the epidural block were observed over the 48 hours after the procedure. Conclusions We demonstrate the feasibility of a novel real-time ultrasound-guided epidural with transverse interlaminar view.


2020 ◽  
Vol 45 (9) ◽  
pp. 746-749
Author(s):  
Hanwool Ryan Choi ◽  
Benjamin Fuller ◽  
Michael Magdy Bottros

IntroductionEpidural blood patch (EBP) is a vital tool in treating postdural puncture headache (PDPH). Traditional interlaminar epidural needle insertion into the epidural space, however, may be challenging due to anatomical variations. As an alternative method, we successfully performed an EBP via transforaminal approach.Case reportA mid-50-year-old male patient with multilevel spinal fusion developed PDPH after a failed spinal cord stimulator electrode placement. A transforaminal EBP was carried out by injecting a total of 8 mL of autologous blood into the neuroforamen at the L1–L2 level bilaterally. Our patient’s positional headache resolved immediately after the procedure.DiscussionTo our knowledge, this is the first case reported of a transforaminal EBP in a patient with diffuse epidural adhesive fibrosis secondary to multilevel laminectomies and spinal fusion. This case report highlights potential risks and benefits of this novel technique and also discusses its therapeutic mechanism of action. We believe that a transforaminal EBP should be considered in patients who are poor candidates for the traditional interlaminar EBP.


Author(s):  
Neil Vaughan ◽  
Venketesh N. Dubey ◽  
Michael Y. K. Wee ◽  
Richard Isaacs

The aim of this study was to measure changing pressures during Tuohy epidural needle insertions for obstetric parturients of various BMI. This has identified correlations between BMI and epidural pressure. Also we investigated links between BMI and the thicknesses and depths of ligaments and epidural space as measured from MRI and ultrasound scans. To date there have been no studies relating epidural pressure and ligament thickness changes with varying Body Mass Indices (BMI). Further goals following measurement of pressure differences between various BMI patients, were to allow a patient-specific epidural simulator to be developed, which has not been achieved before. The trial has also assessed the suitability of our in-house developed wireless pressure measurement device for use in-vivo. Previously we conducted needle insertion trial with porcine for validation of the measurement system. Results showed that for each group average pressures during insertion decrease as BMI increases. Pressure measurements obtained from the patients were matched to tissue thickness measurements from MRI and ultrasound scans. The mean Loss of Resistance (LOR) pressure in each group reduces as BMI increases. Variation in the shape of the pressure graphs was noticed between two epiduralists performing the procedure, suggesting each anaesthetist may have a signature graph shape. This is a new finding which offers potential use in epidural training and assessment. It can be seen that insertions performed by the first epiduralist have a higher pressure range than insertions performed by second epiduralist.


2007 ◽  
Vol 19 (Supplement) ◽  
pp. 186-186
Author(s):  
Tsubasa Hayashi ◽  
Kiyoshi Naemura ◽  
Miyuki Uematsu ◽  
Koki Doi ◽  
Hiroshi Fujimoto ◽  
...  

2012 ◽  
Vol 6 (1) ◽  
Author(s):  
Dennis J. van Gerwen ◽  
John J. van den Dobbelsteen

2019 ◽  
Vol 3 (3) ◽  
pp. 47 ◽  
Author(s):  
Thibault Sénac ◽  
Arnaud Lelevé ◽  
Richard Moreau ◽  
Cyril Novales ◽  
Laurence Nouaille ◽  
...  

Simulators have been traditionally used for centuries during medical gestures training. Nowadays, mechatronic technologies have opened the way to more evolved solutions enabling objective assessment and dedicated pedagogic scenarios. Trainees can now practice in virtual environments representing various kind of patient and body parts including physio-pathologies issues. Gestures, to be mastered, vary according to each medical specialty (e.g., ultrasound probe orientations, or forceps installation during assisted delivery). Hence, medical students need kinesthetic feedback in order to significantly improve their learning capabilities. Gesture simulators require haptic devices with variable stiffness actuators. Existing solutions do not always fit the requirements because of their significant size. Contrary to electric actuators, pneumatic technology is low-cost, available off-the-shelf and offers a better mass–power ratio. However, it presents two main drawbacks: nonlinear dynamics and need for a compressed air supply. During the last decade, we have developed several haptic solutions based on pneumatic actuation (e.g., birth simulator, epidural needle insertion simulator) and, recently, in a joint venture with Prisme laboratory, a pneumatic probe master device for remote ultrasonography. This paper recalls literature scientific approaches on pneumatic actuation developed in the medical context and illustrated with the aforementioned applications to highlight the benefits.


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