A simulated spinal fluid can be prepared by adding red and white blood cells and bovine serum albumin to a commercially available balanced salt solution. Using this preparation as a substitute for actual cerebrospinal fluid enables teachers to provide adequate quantities of microscopically positive fluid, and at the same time eliminates the danger of potential contamination. The appearance of the red and white cells, both in the hemocytometer and in a centrifuged and stained preparation, is realistic. This simulated spinal fluid is useful in teaching not only cell counting and identification techniques, but also total protein and glucose analyses. The method for preparing this solution is simple, inexpensive, and requires only equipment that is readily available to the teaching laboratory.

Download full-text PDF

Source

Publication Analysis

Top Keywords

simulated spinal
12
spinal fluid
12
fluid teaching
8
red white
8
fluid
5
preparation simulated
4
teaching purposes
4
purposes simulated
4
fluid prepared
4
prepared adding
4

Similar Publications

Design and Evaluation of Augmented Reality-Enhanced Robotic System for Epidural Interventions.

Sensors (Basel)

December 2024

Surgical Performance Enhancement and Robotics (SuPER) Centre, Department of Surgery, McGill University, Montreal, QC H3A 0G4, Canada.

The epidural injection is a medical intervention to inject therapeutics directly into the vicinity of the spinal cord for pain management. Because of its proximity to the spinal cord, imprecise insertion of the needle may result in irreversible damage to the nerves or spinal cord. This study explores enhancing procedural accuracy by integrating a telerobotic system and augmented reality (AR) assistance.

View Article and Find Full Text PDF

Acupuncturing the ST36 acupoint can evoke a responding activity in the spinal dorsal root ganglia and generate spikes. In order to identify the responding mechanism of different acupuncture manipulations, in this paper the spike history of neurons is taken as the starting point and the coupling generalized linear model is adopted to encode the neuronal spiking activity evoked by different acupuncture manipulations. Then, maximum likelihood estimation is used to fit the model parameters and estimate the coupling parameters of stimulus, the self-coupling parameters of the neuron's own spike history and the cross-coupling parameters of other neurons' spike history.

View Article and Find Full Text PDF

Background/objectives: An on-board imager on a linear accelerator allows the acquisition of kV-2D images during irradiation. Overlaying specific structures on these images enables the visual verification of movement at regular frequencies. Our aim was to validate this tracking method for the stereotactic treatment of bone metastases.

View Article and Find Full Text PDF

Study Design: This study employed a patient-specific finite element model.

Purpose: To quantify the effect of anterior and posterior surgical approaches on adjacent segment biomechanics of the patient-specific spine and spinal cord.

Overview Of Literature: Adjacent segment degeneration (ASD) is a well-documented complication following cervical fusion, typically resulting from accelerated osteoligamentous deterioration and subsequent symptomatic neural compression.

View Article and Find Full Text PDF

Humans can perform movements in various physical environments and positions (corresponding to different experienced gravity), requiring the interaction of the musculoskeletal system, the neural system and the external environment. The neural system is itself comprised of several interactive components, from the brain mainly conducting motor planning, to the spinal cord (SC) implementing its own motor control centres through sensory reflexes. Nevertheless, it remains unclear whether similar movements in various environmental dynamics necessitate adapting modulation at the brain level, correcting modulation at the spinal level, or both.

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!