ICSI Micromanipulation Dishes

Description

ICSI Micromanipulation Dishes (Standard) are premium, optical-grade laboratory vessels engineered with an ultra-low sidewall profile specifically for Intracytoplasmic Sperm Injection (ICSI) procedures. Molded from pure optical-grade virgin polystyrene, these dishes feature an ultra-flat optical bottom that prevents light refraction and image distortion under high-magnification Hoffman or Differential Interference Contrast (DIC) optics. They provide an unobstructed path for micromanipulation pipettes, making them the ideal vessel for holding micro-droplets of media and polyvinylpyrrolidone (PVP).

Our medical-grade ICSI Micromanipulation Dishes (Standard) are precision-crafted to fulfill the strict mechanical and optical demands of advanced micromanipulation workflows within Assisted Reproductive Technology (ART) laboratories. When performing delicate procedures like Intracytoplasmic Sperm Injection (ICSI), embryologists require an uncompromised field of view and fluid, unhindered mechanical movement. This specialized dish solves common operational hurdles by introducing an ultra-low sidewall profile measuring less than 6mm. This ergonomic design allows injection needles and holding pipettes to approach at steep angles without running into physical obstructions or edge barriers.

Constructed from pure optical-grade virgin polystyrene, the base of the dish is engineered to be ultra-flat. This high-transmittance material eliminates light refraction and image distortion, ensuring flawless performance under polarized light, high-magnification Hoffman modulation contrast, and DIC optical systems. Its primary clinical application is holding the micro-droplets of culture media and polyvinylpyrrolidone (PVP) required to securely stabilize and isolate single spermatozoa during microinjection. To accommodate varying clinical preferences and microinjection setups, the dishes are offered in versatile 50 mm and 90 mm slim options. Every manufacturing batch complies with top-tier cleanroom benchmarks, arriving strictly validated by Mouse Embryo Assay (MEA) and Human Sperm Survival Assay (HSSA) testing to guarantee total embryo safety and cell compatibility.

Product Category: Consumables
  • Pure Optical Grade Virgin Polystyrene Material Structure.
  • Ultra Low Sidewall Profile For Obstruction Free Pipette Approach.
  • Ultra Flat Optical Bottom Surface To Prevent Light Refraction.
  • Distortion Free Performance For Polarized Light And DIC Systems.
  • Strictly Validated Mouse Embryo Assay And Human Sperm Survival Assay Quality Controls.
  • Versatile Fifty Millimeter And Ninety Millimeter Slim Diameter Options.
  • Unobstructed Pipette Access: Features a low-profile sidewall measuring under 6 mm to allow micromanipulation pipettes and needles to enter at steep, optimal working angles.
  • High-Magnification Optical Clarity: Engineered with an ultra-flat optical bottom that successfully prevents light refraction and image distortions.
  • Advanced Microscope Optimization: Distortion-free design ensures perfect compatibility with high-end polarized light, Hoffman modulation contrast, and DIC imaging systems.
  • Pure Virgin Materials: Molded using only pure optical-grade virgin polystyrene to ensure zero chemical leaching and complete specimen safety.
  • Comprehensive Biological Testing: Strictly batch-validated using both MEA and HSSA testing standards to protect sensitive gametes and embryos.
  • Slim Ergonomic Options: Available in 50mm and 90 mm diameters to fit a variety of micromanipulator stages and droplet layout techniques.
  • Material: Pure optical-grade virgin Polystyrene
  • Diameter Options: 50mmor 90 mm slim layouts
  • Sidewall Height: Low-profile  6 mm for easy pipette and needle access
  • Optical Properties: Distortion-free clarity optimized for polarized light and DIC systems
  • Testing Standards: Strictly MEA and HSSA validated
  • Primary Application: Holding micro-droplets of media and polyvinylpyrrolidone (PVP) needed to perform Intracytoplasmic Sperm Injection (ICSI)