Meiosis Model 3D Cell

Meiosis Model 3D Cell

Product Code : SCL-GBP-12032

The Meiosis Model 3D Cell is a multi-stage anatomical replica used for demonstrating the phases of cellular division and chromosome reduction in educational and laboratory environments. Designed for biology teachers and life science students, this model provides a highly visual, tactile training aid that explains genetic recombination and gamete formation.

Product Description

The Meiosis Model 3D Cell by Science Lab Supplies provides an exceptionally detailed, three-dimensional overview of the reduction division process in eukaryotic cells. The model series displays the successive stages of Meiosis I and Meiosis II, capturing key events including chromosome pairing, crossing over, sister chromatid separation, and the ultimate creation of four haploid cells. Fabricated from premium polyvinyl chloride (PVC), this instructional apparatus withstands repeated handling during intense laboratory practicals without cracking or suffering structural degradation.

Each cell stage is meticulously hand-painted with eco-friendly, non-toxic pigments to ensure distinct color separation between maternal and paternal chromosomes, spindle fibers, and centrioles. By providing a clear physical presentation of micro-cellular events, this model resolves common student misconceptions caused by traditional flat textbook diagrams. It stands out as an indispensable addition for institutions aiming to upgrade their foundational inventory of specialized biological didactic models.

Key Features

  • Comprehensive Multi-Stage Sequence: Displays 8 distinct cellular blocks showing Prophase, Metaphase, Anaphase, and Telophase across both meiotic cycles.
  • High Anatomical Precision: Showcases detailed structures of chromatin networks, nuclear membranes, centrioles, and pulling spindle apparatuses.
  • Premium PVC Construction: Manufactured from high-density, impact-resistant polymer materials to guarantee years of reliable classroom service.
  • Vibrant Chromosome Differentiation: Hand-painted using high-contrast, fade-resistant coatings to simplify the tracking of genetic crossover points.
  • Stable Board Configuration: Individual cell phases come fixed onto a large, durable backing board for easy wall mounting or tabletop viewing.
  • Embedded Numerical Coding: Includes integrated numerical labels next to crucial organelles, which correspond directly to the comprehensive learning guide.

Technical Specifications

Specification

Detail

Product Type

Cytological Didactic Model

Cellular Process Shown

Meiosis I and Meiosis II (Reduction Division)

Construction Material

Premium Polyvinyl Chloride (PVC)

Board Dimensions

Approximately 55 cm x 40 cm x 6 cm

Total Product Weight

2.60 kg (including the backing panel)

Mounting Format

Securely mounted horizontally on a rigid polymer display board

Number of Cell Stages

8 individual three-dimensional cell phase blocks

Quality Standard

ISO 9001:2015 certified manufacturing protocols

What's Included in the Kit

  • 1 x Multi-stage Meiosis Model 3D Cell structural display panel
  • 1 x Integrated rigid polymer backing board
  • 1 x Detailed English instructor manual containing labeled anatomical diagrams
  • 1 x Heavy-duty storage box with padded compartments

Applications / Uses

  • Secondary School Genetics: Serves as a primary visual tool for introducing the concepts of heredity, alleles, and cellular replication.
  • University Cytology Lectures: Provides a clear structural baseline for teaching advanced germ cell development, oogenesis, and spermatogenesis.
  • Curriculum Science Kits: Works as the core biological component within multi-subject high school science kits.
  • STEM Laboratory Labs: Delivers physical tracking components for interactive cellular engineering lessons using comprehensive STEM models & kits.

How to Use the Meiosis Model 3D Cell

  1. Position the main display board flat on an even laboratory workbench or stand it vertically against a secure classroom easel.
  2. Follow the cell phases sequentially from top-left to bottom-right to trace the chronological path from a diploid parent cell to haploid daughter cells.
  3. Use the integrated numerical labels to highlight the physical movement of centrioles and the alignment of homologous chromosome pairs along the equatorial plate.
  4. Point out the contrasting color segments on the chromatids to visually demonstrate how genetic material is swapped during crossing over.

Handling Note: Clean the model using only dry methods; avoid spraying water or liquid detergents directly onto the painted cell surfaces to protect the fine structural accents.

Care & Maintenance

  • Dust Control: Clean the three-dimensional cell contours periodically by wiping them with a dry, soft camel-hair brush or micro-fiber cloth.
  • Chemical Precautions: Do not apply industrial solvents, ethanol wipes, or abrasive powders that could strip away the hand-painted labels.
  • Environmental Protection: Store the unit inside a closed storage cabinet away from excessive humidity and direct sunlight to preserve pigment integrity.

Why Choose Science Lab Supplies

Science Lab Supplies is a premier international manufacturer and exporter of robust laboratory instruments, didactic setups, and institutional training gear. Operating under strict ISO 9001:2015 quality control systems, we guarantee that every scientific replica achieves high anatomical accuracy and rugged long-term durability. Our distribution network efficiently services educational buyers worldwide, shipping bulk institutional orders, specialized physics trainers, and elementary mathematics kits safely to your destination.

Frequently Asked Questions

  • How many individual cell phases are depicted on this meiosis board?

The board features 8 separate 3D cell blocks that systematically illustrate the complete progression from initial prophase I through final telophase II.

  • Does the model clearly illustrate the process of genetic crossing over?

Yes, the chromosome models are painted with multi-colored segments to provide clear physical proof of genetic recombination after homologous pairs split.

  • Can the individual 3D cell blocks be detached from the primary backboard?

No, the individual cell stages are permanently affixed to the primary backing panel to maintain their correct chronological sequence and prevent component loss.

  • What type of polymer material is used to build the cell structures?

The entire model is constructed from premium high-density polyvinyl chloride (PVC) which perfectly retains structural mold definitions and resists physical impacts.

  • Is an educational guide manual included with the model?

Yes, each model is accompanied by an detailed English guide sheet that explains every numbered organelle and cell phase step by step.

Browse our extensive online catalog to discover more advanced cytological learning assets, or contact our customer support team today to add this premium Meiosis Model 3D Cell to your classroom's collection of professional didactic models.

   
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Works:Plot No. 448, HSIIDC. Industrial Area Saha, Haryana

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