Sperm morphology is one of the aspects studied in the basic semen analysis or seminogram. Evaluating sperm morphology is used to see how many sperm are found with an abnormal shape and the type of alterations they present.
All men produce abnormally shaped sperm. In fact, in a semen sample considered normal, a large part of the sperm may have an altered morphology.
Despite this, if the seminogram does not find a minimum percentage of sperm with normal morphology, the man is said to have teratozoospermia.
The different sections of this article have been assembled into the following table of contents.
In order to study the morphology of the spermatozoa, a small amount of semen is taken from the total ejaculate of the male. This semen sample is spread, fixed, and stained on a slide to facilitate its observation under the microscope, which implies the death of the spermatozoa. This procedure, therefore, prevents these spermatozoa from being used after evaluation. However, the analysis of this small sample will serve as a proxy for the rest of the semen sample.
To evaluate the morphology of sperm, its three main structures are observed under a microscope: head, midpiece, and tail. Broadly speaking, the characteristics of sperm with normal morphology are the following:
In this way, spermatozoa are evaluated individually, taking into account that a spermatozoon must be normal in all its parts to be considered morphologically normal. It should be noted that this evaluation can be subjective and subject to variation.
Generally, 200 spermatozoa are evaluated, noting whether their shape is normal or not. In addition, this evaluation should be done in duplicate. Subsequently, the percentage of spermatozoa with normal shape is calculated and presented in the seminogram results report.
A high percentage of morphologically abnormal spermatozoa has been related to altered spermatogenesis, as well as to some pathologies of the epididymis.
Sperm with abnormal morphology can present defects in any of its parts (or in several). The following alterations can be found in each of the parts of the sperm:
However, headless or tailless sperm should not be counted, as they are not taken into account in the calculation of sperm concentration.
Abnormal morphology could affect a sperm's ability to fertilize. In addition, abnormal sperm may also have altered DNA.
According to the criteria of the World Health Organization (WHO), a quantity equal to or greater than 4% of spermatozoa with normal morphology is considered normal. If the value of abnormal sperm is greater than 96%, that is, there are less than 4% normal sperm, the man has teratozoospermia.
There is another somewhat stricter morphology analysis criterion. This is the Kruger morphology criterion, according to which the limit of normality is 14%. This means that a sample with more than 86% of its sperm abnormal will be considered teratozoospermic.
Un hombre cuyos espermatozoides muestran una morfología alterada, es decir, padece de teratozoospermia, puede tener mayores dificultades de conseguir el embarazo de forma natural. Aunque la teratozoospermia no es uno de los problemas seminales más graves, es posible que sea necesario recurrir a la reproducción asistida para poder tener hijos propios, especialmente en los casos de teratozoospermia severe.
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In milder cases, sperm morphology could be improved with a proper diet, reducing caffeine intake and avoiding tobacco and drugs.
There are also food supplements rich in antioxidants that prevent damage to sperm DNA caused by oxidative stress. These supplements contain vitamins and minerals necessary for proper male reproductive function. However, their benefits have not been scientifically demonstrated in a robust manner.
This is what Dr. Jose Sánchez says:
The most suitable technique is undoubtedly ICSI or intracytoplasmic sperm injection, which consists of selecting the sperm with the best morphology and introducing them into the cytoplasm of the oocyte.
In milder cases, sperm morphology can be improved with an adequate diet, reducing caffeine consumption, and avoiding tobacco and drugs.
There are also specific food supplements that prevent damage to the DNA produced by free radicals and contain vitamins and minerals necessary for proper sperm production and maturation.
These supplements must be taken for at least 3 months, which is the time it takes for sperm to be produced from scratch and mature.
Sperm morphology is one of the most important determinations and one of the critical parameters in determining a man's ability to fertilize. Sperm morphology evaluates the morphometric characteristics of the sperm head, midpiece and tail.
Normal spermatozoa have an oval head and a long tail. In contrast, abnormal sperm have defects in the head or tail, such as a large or misshapen head or a double or crooked tail.
There are not many known factors that can improve sperm morphology and thus increase the percentage of normal forms.
It has been seen that the time sperm spend stored in the epididymis can be a determining factor in seminal quality; low ejaculatory frequency has been related to increased exposure to the effects of oxidative stress.
The time of sexual abstinence is one of the clinical criteria taken into account during seminal analysis; the interval recommended by the WHO is 2 to 7 days. Some studies have shown that increased ejaculatory frequency has positive effects on different conventional semen parameters, including sperm morphology.
In Assisted Reproduction, when performing IVF, we can improve fertilization results in cases of alterations in sperm morphology with intracytoplasmic sperm injection (ICSI). This technique makes it possible to select the spermatozoa at the time of fertilization also based on morphological criteria.
Yes, abnormal sperm is able to fertilize but most likely will not since those with normal shape move faster and will have it easier to reach the egg.
Depending on how the sperm are altered and how many abnormal sperm there are, the likelihood of pregnancy will be higher or lower.
For example, in spermatozoa without head (no genetic content) or with a small or absent acrosome (necessary to penetrate the egg) fertilization will not take place since they lack an essential part for the process.
That might happen. The altered sperm may have genetic abnormalities that make it difficult or impossible for the embryo to form or develop, so it may not be viable and may stop growing, causing a miscarriage.
Depending on the gene or genes affected, embryonic development would stop at one point or another, depending on when they have to start expressing themselves; in other words, if the gene that is defective is very important in the first few weeks of pregnancy, an early abortion would occur because it does not contain adequate information for its development.
Varicocele is the cause of approximately 40% of male infertility cases. It produces a decrease in sperm production capacity, mainly due to an increase in testicular temperature and free radicals.
Therefore, it decreases both the concentration and the mobility of the spermatozoa and it seems that it is also related to the appearance of anomalies in the sperm morphology such as alterations in the head.
If you want more information about the seminogram, you can visit the following link: What is a basic seminogram and how is it done step by step?
If, on the other hand, you want to know more about antioxidants to improve semen quality, we recommend you read this article: What are antioxidants and how do they affect semen quality?
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van den Hoven L, Hendriks JC, Verbeet JG, Westphal JR, Wetzels AM. Status of sperm morphology assessment: an evaluation of methodology and clinical value. Fertil Steril. 2015 Jan;103(1):53-8.
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World Health Organization (WHO) (2010). WHO laboratory manual for the Examination and processing of human semen. 5th ed. Geneva: WHO Press;2010.